Interactive Transcript
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Hello and welcome to Noon Conference, hosted by MRI Online
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Noon Conference connects the global radiology community
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through free live educational webinars that are accessible
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for all and is an opportunity
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to learn alongside top radiologists from around the world.
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You can access a recording of today's conference
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and previous noon conferences
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by creating a free MRI in online account.
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Today we are honored to welcome Dr. Laura Avery
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for a lectured entitled abdominal trauma.
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Dr. Avery is an emergency radiologist,
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MGH radiology Vice Chair for education
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and director of the Harvard Medical School
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Radiology clerkship.
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She served on numerous committees
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and is a frequent invited speaker for A-U-R-A-S-E-R-R-S-N-A
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and a RRS Passionate about medical student education.
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She has received numerous teaching awards,
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including the RSS NA Honored Educator Award in 2016
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and the HMS Excellence
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and Residency Advising Award at the end of her lecture.
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Please join her in a q
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and a session where she will address questions you may have
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on today's topic.
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Please remember to use the q
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and a feature to submit your questions so we can get to
1:08
as many as we can before our time is up.
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With that, we are ready to begin today's lecture.
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Dr. Avery, please take it from here.
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Oh, thank you so much for inviting me. I am thrilled.
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Uh, and I can take my own screen share. Right.
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Okay, perfect. I think we're up and running.
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Um, thank you so much for inviting me.
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I'm thrilled and delighted to speak on one
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of my favorite topics, abdominal trauma.
1:32
Um, here in Boston.
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Uh, we have six trauma centers in the safest city in
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America, so we're always a little concerned about
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how much trauma we actually have,
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but don't worry, we have plenty of poor, terrible drivers
1:44
and, um, all of those scooters
1:47
and mopeds have been bringing us lots of business.
1:50
So my lecture content will stay relevant, um,
1:53
for now anyway, so I have advance here.
1:58
There we go. I have no disclosures.
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Our learning objectives will to be, uh, today are to be able
2:04
to apply techniques for multi detector CT evaluation
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for injured patients.
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Um, we want the learner to be able to recognize important
2:11
injuries resulting from blunt abdominal trauma.
2:14
This really will be a blunt abdominal trauma talk.
2:17
Um, again, I said safest city in America,
2:19
so I probably just wouldn't have the content for, um,
2:21
for the penetrating uh, injuries.
2:24
And we would like you to become, um,
2:26
better at looking at patterns of injuries
2:28
as they apply to the body.
2:29
Alright, so let's talk about our, um, imaging protocol.
2:33
We use contrast material in all of our, all of our CT scans.
2:37
Um, and we try to image patients in the abdomen at the 72nd
2:40
portal venous delay.
2:41
We also have other opportunities to enhance these studies
2:44
with further delayed images
2:46
or arterial images in an earlier phase and the like.
2:49
We'll go into various opportunities to, um, protocol,
2:53
protocol proper, uh, imaging technique here.
2:56
We do not use oral contrast at all in trauma.
2:59
Um, we're just moving too fast and that would be crazy.
3:02
We, at times we'll use, um, a split bolus technique
3:05
where we inject a patient, uh, at two different times
3:07
with one single acquisition, getting, um,
3:10
images in both the arterial phase of the aorta
3:12
and the parenchymal phase of the abdomen and pelvis.
3:15
This is a nice protocol in that it's very fast and easy.
3:19
I like to refer to it as our Costco protocol
3:21
because like at Costco where if you go
3:24
and buy a marinara sauce,
3:26
you're pretty assured it's a good sauce, right?
3:28
They had to buy 7 billion of that sauce.
3:30
Um, so, uh, they're pretty good at choosing the right thing.
3:33
So I do like a split bolus technique, full body pan scan
3:37
because it will answer most questions that you're looking
3:39
for for trauma and can also be used, um,
3:42
as just a good phishing, uh, expedition for patients
3:46
who need, um, imaging for other reasons.
3:49
Now, we may use our protocols
3:51
and then tailor them to very specific, uh, situations.
3:54
Um, let me see here. Sorry, this is all animating wrong.
3:57
Okay, there we go. Uh,
3:59
so we will use rectal contrast in patients who are stabbed.
4:03
Um, here in Boston. People do enjoy stabbing each other.
4:06
It seems to be our, um, way of showing, uh, dominance.
4:10
Um, and frequently the stabs.
4:11
A gentleman stab or, you know, a a, a friendly stab,
4:15
one might say, um, is to the flank of the patient.
4:18
Um, that's kind of how you do it, like west side story kind
4:20
of around the, around in the back, um, back and up.
4:23
So a lot of those flank stabs will be stopped
4:25
by the large musculature of the back
4:27
or the subcutaneous tissues,
4:29
and very few will actually penetrate into the,
4:30
into the retroperitoneum or peritoneum.
4:33
And in those cases, we would like
4:35
to exclude colonic injury in those patients
4:37
because then they can be discharged
4:40
with just a surface level stab.
4:42
So, um, we will actually use rectal contrast
4:44
for penetrating trauma to the flank in order
4:48
to exclude a colonic injury.
4:49
Here you'll see that the, um,
4:52
that the knife actually did penetrate the colon,
4:54
and now we have extravasation of rectal contrast and air.
4:57
Before this, um, we used to have to observe all patients
5:00
for 24 hours to make sure that they were not, uh,
5:03
did not have a colonic penetrating injury.
5:05
So we have have gone on to use that protocol quite,
5:08
quite avidly.
5:10
We'll also wanna increase, um, and,
5:12
and obtain a arterial phase of the pelvis in patients, um,
5:16
all the way down to the pelvis.
5:18
And patients who have volume increasing fractures
5:20
of the pelvis, meaning that their pelvic, um,
5:23
pelvis is increase in size by fractures.
5:26
Here we have an open book involving, uh,
5:28
and increasing the, the,
5:30
the pelvis increasing the opportunity for arterial
5:32
and venous bleeding into the retroperitoneum
5:35
or the vertical shear fracture here.
5:36
That also increases the volume of, of the pelvis.
5:39
So those are both, um, unstable pelvic fractures
5:43
where we will probably have interventional radiology come in
5:47
and, um, be embolizing vasculature in the retroperitoneum,
5:51
extra peritoneal spaces.
5:52
So we'd like to be able to, um, further, uh,
5:57
elucidate whether or not it's venous or arterial bleeding.
6:00
At times we're concerned about, uh, bladder injuries.
6:04
This is specifically when we see hematuria.
6:06
Almost all bladder injuries are, um, have hematuria.
6:10
So you will actually see red blood in
6:11
the Foley catheter bag.
6:13
We do a, um, dedicated cystogram, a retrograde cystogram
6:17
where we install thir 300 to four hundreds of c 400 ccs
6:21
of contrast through the Foley catheter in order
6:24
to maximally ex to extend the bladder, um, to look
6:27
for either these extra peritoneal bladder raptures,
6:30
which are the base of the bladder, those sheer injuries
6:32
to the base of the bladder, um, that frequently will have,
6:35
uh, pelvic fractures involved with them as well
6:37
and show, uh, contrast material into
6:39
that extra peritoneal space or the less frequent,
6:42
but always exciting intraperitoneal bladder rupture
6:45
where the bladder pops, um,
6:46
from compression on a full bladder
6:48
after somebody has um, been in an accident
6:51
after consuming large amounts of beverages.
6:53
So always empty your bladder before driving.
6:55
Um, and this is a surgical fix
6:57
and we'll see a contrast material going into the peritoneal
7:01
spaces such as the cul-de-sac here.
7:04
So that's another opportunity for fun.
7:06
Um, but in general we're really looking to, uh,
7:10
evaluate the abdomen in that portal venous phase
7:12
where we're going to see the best parenchymal enhancement.
7:15
Where you can see the spleen here has
7:17
multiple splenic lacerations.
7:19
Um, because when you do it too early in the arterial phase,
7:22
ah, this is Gigi, pardon me.
7:25
Um, you can have, uh, that very psychedelic appearance
7:28
of the spleen where it's so heterogeneous, kind of a,
7:31
a zebra look to it, that it's very hard to determine, um,
7:34
any abnormality within the spleen itself.
7:36
So you want that 72nd portal venous delay if possible.
7:40
At times we might even get more delayed studies.
7:43
Obviously the patient has to be safe
7:44
and, uh, stable enough on our table that we're willing to,
7:48
um, uh, have more delayed images.
7:51
But, uh, whenever we have a parenchymal injury,
7:54
we usually will try to get a three to five minute delay
7:56
to see how the contrast, um, and the blood, uh,
7:59
whenever we have extravasation of contrast, uh, during, uh,
8:02
parenchymal injury, we'll get a three to five minute delay
8:05
to see that contrast, um, accumulate.
8:08
You'll see cases of that in a moment.
8:09
And I always say when the ureters in play get delays,
8:12
we will get a five to seven minute delay
8:14
when the ureter is in play.
8:15
Um, whether it's an IR estrogenic, ure ureteral injury
8:18
because, you know, trauma just isn't on the streets,
8:21
that's in the hospital too.
8:23
Um, and
8:24
or if it's a shearing injury where we're concerned about,
8:27
uh, injury to the kidney
8:29
and injury to the renal collecting system.
8:32
So, um, we would see the extravasation of urine, uh,
8:36
on those delayed images.
8:38
Alright, so let's go in, let's start it. Let's do this.
8:41
So we're always gonna get the best images possible.
8:43
We're already optimizing that, that's a given.
8:46
Um, and now we're gonna figure out
8:47
how we're gonna look at these studies.
8:49
So we're always going to look at the abdomen
8:51
and look at where we see fluid, um, trying to find the, uh,
8:55
where the bleeding is from.
8:56
Okay, so you know,
8:58
we have water density fluid at times under 15 housefield
9:00
unit hemoperitoneum ranging from 30 to 70 housefield units,
9:04
depending on if it's the serous portions
9:06
of blood all the way down to those clotty portions of blood.
9:09
Um, with actual contrast being up to 300.
9:12
Mixed density fluid can occur when you have ruptures from
9:15
the glow, bladder, bowel and urinary bladder as well.
9:18
So here we can see an axial image with a large volume
9:21
of hemoperitoneum and even some, uh, active extravasation.
9:24
But when you're going through, you always just wanna check
9:26
for blood in those places where blood will accumulate.
9:28
Similar to if you were doing a fast exam
9:31
or point of care ultrasound, you wanna look anterior
9:35
to the liver here, posterior to the spleen in this location.
9:38
You can see from our splenic laceration there.
9:41
Coming down to Morrison's pouch
9:43
or the hepato renal recess is a really important area.
9:46
Always something you would look
9:47
for on your fast exam coming down the
9:50
paracolic gutters as well.
9:51
And then looking deep within the pelvis in that, um,
9:54
uh, cul-de-sac location.
9:56
For, for blood products, we like
9:59
to talk about the sentinel clot sign
10:00
and this is, um, a sign that we see where the blood
10:04
that is coming from the site
10:06
of bleeding will be denser than the
10:07
remaining blood in the abdomen.
10:09
So on this axial image, um, lean on in, uh, you're gonna see
10:13
that there's blood around the spleen
10:15
and that blood is a little dense.
10:17
It's similar in attenuation, maybe to the lip, to the,
10:20
to the muscle next to it, as opposed
10:22
to the blood here along the liver,
10:24
which is much more similar to the attenuation
10:27
of the gallbladder
10:28
and lower an attenuation when compared to the liver.
10:31
So we would suspect the site
10:32
of bleeding is in the left upper
10:34
quadrant near that dense blood.
10:35
And of course, as we come down, no prizes for this,
10:38
you actually see those lacerations of the spleen.
10:41
So blood in the abdomen acts like it doesn't attest tube
10:45
where the clotty portions of blood that are gonna try
10:47
to stop the bleeding are gonna be denser
10:49
and, you know, attenuate your photons more.
10:52
So they're gonna be higher in attenuation near the site
10:54
of bleeding as opposed to the more serious portions of blood
10:57
or the water, air portions of blood,
10:59
which will spread out more.
11:03
Sometimes we can actually see, um,
11:06
hemoperitoneum again in this case we see that,
11:08
that those measurements
11:10
of 55, 51 hounds field units near the side of bleeding
11:13
as opposed to the more serious portions elsewhere.
11:15
And in this case, we actually had water density, um, uh,
11:18
fluid, which ended up being from a bladder rupture.
11:20
So we're always measuring the fluid, trying to look
11:23
for active extravasation.
11:24
Here's a stab wound to the liver with active extravasation.
11:27
This was actually a pediatric patient who came back
11:29
to our CT scanner, um,
11:31
and people thought he had a surface, you know,
11:33
little surface stab.
11:34
Um, and you can see that it was much deeper and that's
11:36
because pediatric patients can really look very stable
11:39
until they're not.
11:40
So, um, I always have co caution with the pediatric world
11:43
that they can have a larger scale
11:45
injuries than anyone suspects.
11:47
Uh, clinically here is active extravasation from
11:50
the splenic injury.
11:51
So on portal venous phase,
11:53
once we see active extravasation from a contrast from a
11:56
parenchymal injury, we're lucky in our trauma center,
11:59
we're usually at the table with our trauma surgeons.
12:01
I don't know if that's lucky or not,
12:02
'cause they're usually like breathing over your back
12:04
and, um, trying to push you outta the way
12:05
or push you into the CT console.
12:07
Um, either way I feel like it's a, it's,
12:09
it's a little bit much, but it's, you know, part
12:11
of the fun, part of the fun.
12:12
Um, so we're there.
12:13
So we're able to say, okay, let's get a three
12:16
to five minute delay and look at that contrast, accumulate,
12:19
see how that contrast works.
12:21
Why, why might you say?
12:23
And that's because we're always trying
12:24
to exclude the formation of a pseudo aneurysm
12:27
or a, uh, a VF.
12:29
So, um, pseudo aneurysms,
12:31
you're gonna have like a little pool of blood here in the
12:35
spleen and that pool of blood will be similar in attenuation
12:38
to the blood pool of the aorta and wash out on delays
12:41
and may even be present the next day.
12:43
And that's an indication that you have a pseudo aneurysm
12:45
and that that pseudo aneurysm is at risk of delayed rupture.
12:49
You know what, we're gonna see this again
12:51
because the make it stick ideology is that you go back
12:53
and forth to the same thing.
12:54
So looking for pseudo aneurysms is your job.
12:57
That is the biggest part of your job
12:59
because these are the patients who are going to be stable,
13:01
they're gonna look like they're doing fine
13:03
and that's gonna rupture in a delayed fashion
13:05
and cause them, um, to possibly a ate here.
13:08
This one was caught at, at the time of an of, um, imaging
13:12
and the patient went on for, uh, embolization of
13:15
that pseudo aneurysm, which was wonderful.
13:18
Go ir, um, never sleep anyway.
13:21
So, uh, I wanna talk about some other things we
13:23
see in trauma.
13:25
Here is a typical appearance of a patient
13:27
who has periportal edema
13:29
and a patient who's been over fluid resuscitated.
13:31
We do see this not as much as we used to.
13:34
I think that the trauma teams are much more careful about
13:37
using just, um, saline
13:38
and now they use many, many more blood products to, um,
13:41
with a theory that, uh, just, you know,
13:44
saline in your blood wasn't helping you stop the bleeding.
13:46
It was basically making you break your clot.
13:48
So, um, we don't see this as much,
13:50
but we definitely see it sometimes when the patients come in
13:52
from far away, um,
13:54
or that they were in the helicopter
13:56
for longer than expected.
13:57
When we see this, you can tell
13:59
that there's these little halos all
14:01
around the portal venous triads.
14:03
Um, and that's just fluid in that third space.
14:05
So this is third stage fluid.
14:07
Notice how thickened the gallbladder wall is as well.
14:10
That's a sign of third space fluid.
14:12
Um, and this periportal edema, it's pretty dramatic
14:15
as opposed to a patient who has, um, dilated bile ducts,
14:19
which would be on one side of the portal vein as opposed
14:22
to in this potential space around the portal vein
14:25
where we find lymphatics
14:27
and other, um, so other connective tissues.
14:30
So the halos are an indication that you have, uh,
14:33
over fluid resuscitated
14:35
and sometimes you can have a kind of a dramatic amount
14:37
of fluid into the retroperitoneal, especially kind of around
14:40
that periportal region down into the duwan mill region.
14:42
So just be cognizant of, um, that opportunity for fun.
14:48
Alright, so, uh, shock bowel.
14:51
This is something we see our patients are hypotensive.
14:54
They can be hypotensive at the scene.
14:56
They can be on a myriad of pressors
14:57
that are basically inducing chemical shock.
15:00
So we see shock bowel quite frequently.
15:02
Here's a patient who has very, very bright kidneys.
15:04
Do they burn your eyes? Their light bulb
15:06
bright, someone might say.
15:07
So that's an indication that whatever blood is going,
15:11
whatever blood is in their body, is just your contrast.
15:14
Um, so, uh, like 30% of your blood flow goes to your kidney.
15:17
So a large volume of blood is going to those kidneys.
15:20
Um, and they're very, very bright.
15:22
You also have, uh, increased attenuation of the mucosa
15:25
of the bowel and stomach here.
15:27
Very dramatic. It looks like they have oral
15:29
contrast, but they do not.
15:31
Um, and that's because the blood is being
15:33
shunted to the mucosal layers.
15:35
And the mucosal layers, uh,
15:36
are a little bit more purative is a, is a,
15:38
is an ischemic a severe ischemia, right?
15:41
You can also hear, see here
15:42
that the IVC is just nearly collapsed.
15:45
So that's a hypovolemic appearance.
15:47
When I, um, make this even larger, you can see
15:49
that there's some edema around the pancreas.
15:51
That's a typical appearance for shock pancreas, which, um,
15:55
you can actually have increased serologies
15:57
as well in those cases.
15:58
Look at how tiny this aorta is.
16:00
It's doing the best it can to clamp down
16:03
and stop that bleeding.
16:04
As I come down this patient, you'll see that very bright.
16:07
This is windowed a little bit more for your comfort.
16:09
Um, you'll see that very, very bright mucosa there
16:13
of the stomach coming down.
16:15
You even see quite a bit
16:16
of avid enhancement of the gallbladder.
16:18
I always look for that if possible
16:20
'cause I have had a few cases of gallbladder of BULs in
16:23
where the gallbladder has basically just come right off.
16:27
So, um, if I, you know, if I have no enhancement
16:30
of the gallbladder, I always have to question
16:31
that as a possibility.
16:32
Coming down, we have that edema around the pancreas.
16:36
Again, that shock pancreas, those bright kidneys, the, the,
16:39
um, window to bit the tiny, tiny aorta.
16:42
And that collapsed IVC coming down into the pelvis.
16:45
We'll see that this patient has a large amount
16:47
of retroperitoneal bleeding related
16:49
to displaced pelvic fractures
16:51
and a large acetabular fracture there.
16:55
So, um, you just wanna be aware of that appearance of shock,
16:58
bowel shock, uh, shock, body shock, everything.
17:02
Um, you can actually use it to your advantage.
17:03
You know, you might as well figure out whether
17:05
or not you think the bowel iss enhancing,
17:07
and we'll see some cases later of that.
17:09
But let's go into the big players, big players.
17:11
We have the liver and the spleen.
17:14
Our surgeons like to say, the liver's your friend
17:17
and the spleens your enemy.
17:18
And I think after I show you all of these cases,
17:20
you will see why that's a possibility.
17:23
So, um, right upper quadrant injuries, uh,
17:26
it's very preferable to be non, uh,
17:29
surgical if at all possible.
17:30
Um, and the CT scans are really helpful
17:32
because we can identify, uh, the degree
17:35
of which the laceration extends to the capsule,
17:37
how much bleeding there is and the like.
17:39
And we can see if there's any significant deep injuries, um,
17:43
that were really hard surgically back in the day for them
17:46
to evaluate because, uh, those deep injuries going
17:49
to the juxta, hepatic venous system,
17:51
no one wanted to explore that.
17:53
It wasn't fun. So, um, I think we really rely, even in cases
17:58
where they're going straight to the OR packing,
18:00
they come back and we get CT scans to look at the, um,
18:04
at the liver for any deeper injuries.
18:06
So the liver, at least, you know,
18:10
it's a pretty dense organ.
18:12
It's, it's got some solid components to it.
18:14
It's wrapped in a pretty, you know, tight sheet there.
18:17
It's pretty well adhesed to the body.
18:20
It's not, you know, it's, it's, it's solid.
18:22
It's in the right upper quadrant, I'll tell you the
18:25
spleen poorly designed.
18:26
Um, so the liver has, uh, some benefits to it.
18:30
So when we look at the grading system,
18:31
I think this is somewhat reflected in the grading system.
18:34
I always say, Hmm, grading systems, who cares, right?
18:38
I mean, you can Google this and that's really important.
18:42
Do not commit this to memory.
18:43
You don't have the brain cells.
18:45
You're gonna have something else that you like
18:47
to know come out.
18:48
So don't keep this on your iceberg of a brain.
18:51
Like there's only so much space and it's always shrinking.
18:53
But, um, I think it's just good to understand the principles
18:56
and why we grade things.
18:58
So why do we grade?
19:01
Um, you know, communication definitely between surgeons,
19:05
uh, is a huge part of it.
19:07
This is a surgical grading system
19:08
that only recently in 2018 was updated to even include, uh,
19:12
active extravasation and imaging components
19:15
and is still designed by surgeons.
19:17
So it's a bit cockamamie. That's to be expected.
19:20
They're surgeons. Um,
19:22
but it is an important grading system in that it's, it,
19:25
its principles are, um, are helpful again for communication.
19:30
They're also, uh, it's, you have to grade,
19:33
if you're a level one trauma center in America, you have
19:36
to grade your parental entries.
19:37
It's part of the A A ST accreditation system.
19:41
So when they come through
19:42
and they do their audits on your hospital, you actually have
19:45
to have the grades in your reports.
19:47
No, I have ways to hack that as I would,
19:49
but, um, in general, you wanna just Google it, bring it up,
19:52
put those grades in just
19:54
so you don't have to make addendums.
19:55
So let's look at this, um, grading system.
19:58
Uh, grade one is less than a centimeter in size.
20:02
That's quite small. The, um, grade two,
20:06
uh, injury.
20:07
The key here is that it can be a parenchymal depth
20:10
of 10 centimeters, which is a big laceration as long
20:14
as it doesn't go to the capsule.
20:15
Um, and capsular tears, one to three centimeters.
20:18
So that's pretty impressive.
20:19
That's a pretty big intraparenchymal, um, injury
20:22
that still is agreed to.
20:24
So I always wanna highlight that as the fact
20:27
that you can have a big intraparenchymal shearing, stellate
20:32
laceration of your liver, and actually you're gonna do
20:34
pretty good, which pretty good.
20:36
Um, now once you have vascular injury, uh,
20:39
with active bleeding contained in the liver, parma,
20:41
that you're gonna go onto a grade three.
20:43
And once it's into the peritoneum,
20:44
which is quite frequent, then you have four.
20:47
So no grade four is active bleeding into the
20:49
preco, into the peritoneum.
20:50
Now let's go through the various grades. Um, just a moment.
20:53
I do wanna show you the original, the, uh, the, um, images.
20:57
If you end up just googling it
20:59
to the A A ST, this is what you're gonna see.
21:01
And be aware that a grade one injury,
21:05
if you have more than one, you upscale it to a two.
21:07
If you have two, you know, two lacerations, you upscale it
21:10
to a two, two goes to a three,
21:11
and then you stop the upscale.
21:12
But this is a little known thing down here.
21:15
So that actually upgrades our injuries all the time.
21:18
I mean, how many subcapsular, hematomas are less than 10%
21:22
of the surface area or less than a centimeter?
21:24
I can measure everything at a centimeter.
21:25
So I like to call this, um, you know,
21:27
you're not gonna really see it.
21:29
Uh, I don't even start at two.
21:31
I figure why not bring up the drama a little bit.
21:32
I like to bring up the drama, um,
21:34
volume on all of these things.
21:36
So I really kind of start at, uh, at at at two.
21:39
Um, because even in that case, if it's under a centimeter,
21:41
which it's never gonna be, uh,
21:43
once you have multiplicity, you'd be up to it too.
21:45
So let's just start at grade two.
21:47
Um, 'cause we have to know how to
21:48
hack a system more than anything.
21:49
And you can see here that there's a very large
21:51
intraparenchymal tear, uh, or laceration of this liver.
21:55
This is still grade two. There's no active bleeding or cool.
21:58
Now, once you start, again, this is an intraparenchymal, um,
22:01
laceration, less than 10 centimeters.
22:03
No capsular involvement, no hemoperitoneum grade two.
22:07
This is gonna be fine. This could be all good.
22:09
They're gonna do well. Now we're starting
22:11
to get a capsular tear.
22:12
Okay, so here we have a grade three with hemorrhage.
22:16
Um, and we do have a, a big capsular tear here,
22:18
greater than three centimeters.
22:20
So we're, we're moving up in the world.
22:22
Um, and this one has bleeding.
22:24
So there's, there's, there's much more that needs
22:26
to be done here, including blood products for sure.
22:29
I mean, all of 'em need to have blood product stabilization,
22:31
but this is gonna require more blood products
22:33
and possibly even embolization.
22:35
Um, here we have a grade four
22:37
based on parenchymal disruption, which is another asset
22:41
of this grading system.
22:42
So I would say that this, this liver here has, um,
22:46
extensive parenchymal, uh, disruption, probably 25 to 50,
22:50
75% given that it's in the right lobe.
22:53
And, you know, I oftentimes describe these as stellate.
22:56
That's another one. Sometimes you'll see what we see here,
22:58
which is blood going along the periportal regions.
23:01
That's a pretty frequent finding
23:02
and lacerations, um, of the liver as well.
23:06
So this is a lot of parenchymal disruption
23:09
and active bleeding into the peritoneum.
23:10
So at least a grade four there.
23:12
Now, I will say in my collection,
23:15
here's a grade four with active bleeding.
23:17
Yay. Which went on to, again, I like to push
23:20
that IR gets involved.
23:21
I mean, our IR folks are such
23:23
dulls that they're willing to be there.
23:24
Uh oh, which just happened. Oh no, did I just do that?
23:28
I was just trying to close down. Okay, fine. We're back.
23:31
Um, uh, that they come in all night, all times at night
23:36
to help our trauma team out, which is great.
23:39
Um, because I think that being a referring clinician
23:42
where you can do a lot of, um, intervention, that's key.
23:45
Okay? So grade five, grade five is actually
23:47
really hard to find in my collection.
23:48
These are deep, deep lacerations going to the deep vessels
23:53
of the IBC or portal vein.
23:55
I was talking to one of our trauma surgeon, he was like,
23:57
oh yeah, it has to be actively
23:58
bleeding to be considered a five.
23:59
And I was like, well, that seems a little dramatic,
24:00
but, um, I do bring you here, uh,
24:03
active bleeding from a main portal vein,
24:06
that would definitely be a grade five.
24:08
I think it's hard to know how
24:10
to apply this grading system when it comes
24:12
to reading the definition by the, um, by the, uh,
24:16
surgery A A ST
24:17
because it says anything that goes jux to hepatic
24:20
but doesn't necessarily have to be bleeding.
24:22
Our trauma surgeons want it to be bleeding.
24:24
Um, but I would say that's a very minority of cases
24:26
that would make it to our CT scanner if they
24:29
were bleeding from the IVC.
24:30
I don't wanna see you, you're not safe on my CT scanner,
24:33
please bypass me straight to the or.
24:35
Um, so some of those higher level injuries,
24:37
we just don't see a lot.
24:38
Let's talk about some special considerations.
24:41
Now, the liver's in the right upper quadrant,
24:43
and, um, this is very interesting when we have
24:46
that segment seven high posterior lacerations going
24:50
posteriorly here to where the IVC is in the caudate lobe.
24:53
This can be very interesting
24:54
because these may just bleed into the retroperitoneum
24:58
and you can of oftentimes also have, um,
25:01
an adrenal hematoma.
25:03
Uh, why is that? That's
25:04
because, um, well the, the forces are posterior like that,
25:07
and the liver actually can, can choose the, uh,
25:10
adrenal gland or hit the IVC causing increased blood volume
25:13
to the adrenal gland, which is already pretty vascular.
25:15
And that can bleed like crazy.
25:18
But also because that segment seven of the liver is
25:22
that bear area of the liver
25:23
that you may remember from your day of anatomy, um,
25:26
or days of anatomy, pardon me, uh, is, uh,
25:30
is actually con continuous with the retroperitoneum.
25:33
So if you have a laceration to the bear area,
25:36
you'll actually bre bleed into the retroperitoneum
25:39
as opposed to, um, into the peritoneum.
25:42
So be aware of that as an option. All right.
25:46
Should we go on to our friend the spleen?
25:49
All right, the spleen not well designed, right? What is it?
25:53
It's like red and red
25:54
and white pulp kind of wrapped in a thin layer of,
25:59
uh, cellophane here.
26:01
Um, it's on a pedicle.
26:02
It's not well adhesed,
26:03
it doesn't have those peritoneal reflections
26:05
to the retroperitoneum.
26:07
Instead, it's just absolutely mobile is all day.
26:09
So, you know, I was tell my residents, like I say,
26:12
it's trauma, you say spleen, trauma, spleen, trauma, spleen.
26:15
So the spleen is really damaged a lot just
26:18
because it's poorly designed
26:19
and there's not much we can do about that, unfortunately.
26:22
So we're gonna look at the trauma, um, grading system here,
26:25
uh, like we did the other one.
26:27
But note that the parenchymal laceration
26:29
for a grade two is up to three centimeters
26:31
and up to over three centimeters already
26:33
upscales you to a three.
26:34
So much smaller lacerations upscale you
26:38
to a much higher grade.
26:39
And that's because the risk of bleeding, um,
26:41
is much higher again, um,
26:44
because that capsule isn't as strong
26:46
and the capsule will, uh, perforate much easier,
26:49
these large subcapsular hematomas as well.
26:51
We'll see, um, can be a problem.
26:53
And I'll show you cases of that
26:55
and know that, um, the active, uh, bleeding is a grade five.
26:58
So once you're actively bleeding into the peritoneum
27:01
of the spleen, grade five, it was a grade four in liver.
27:05
So, um, it's a, you're bleeding a lot more.
27:08
Again, we have that upgrading for multiplicity
27:12
and we're just gonna start at two.
27:14
'cause I just don't believe in
27:15
anything under one centimeter.
27:16
I'm just not that good. Maybe I should wear glasses.
27:18
Um, but either way, you're going to see here that we have,
27:21
uh, a nice splenic laceration.
27:24
Sorry, I went through that suit so fast, uh,
27:27
that it was hard to see it with, um, hemoperitoneum, uh,
27:31
but no active extravasation of contrast.
27:33
Typical appearance of, um, a grade two, one
27:38
to three centimeter laceration with hemoperitoneum.
27:42
Here we have a grade three laceration.
27:44
These are bigger, this is greater than three
27:46
centimeters for sure.
27:47
No, no active extravasation either.
27:50
We have fairly large lacerations here in this patient.
27:54
Woo, a big subcapsular hematoma.
27:56
Notice I'm gonna call this a subcapsular hematoma,
27:59
not per splenic bleeding
28:00
because of the deformity of the underlying splenic tissue.
28:04
Okay? So if it looked like a normal spleen with just blood
28:07
around it, that's per splenic.
28:09
Once it starts deforming the spleen, then
28:12
that's a subcapsular hematoma.
28:14
That is a ticking time outta my friend
28:16
that is like under pressure.
28:18
I wanna sing the queen song under pressure,
28:20
like it's under the pressure and it can just blow up.
28:23
So these are, um, very dangerous.
28:26
We wanna really like, think of those sub sub hapa, those,
28:29
um, uh, the subcapsular hematomas as a,
28:33
as a real, as a really high end injury.
28:36
Here's a patient who has some bleeding
28:38
just confined to the spleen.
28:39
It took me forever to find this
28:41
because I actually don't think this is that common.
28:43
Um, but you know, I tell you, our surgeons
28:46
who make upgrading systems, they they get creative,
28:48
they get creative, um, unicorns and rainbows.
28:53
Um, here's a more common, once you get to grade five,
28:55
you get, once you get to inter parenchymal
28:57
bleeding, that's the fun.
28:59
Um, that is when you have a grade five
29:01
and you just look at your surgeon, you say grade five,
29:04
you drop the mic, you walk out the door
29:05
and you let them take the patient
29:06
off the table and get out, right?
29:07
Because, you know, that's bad. Um, we like to say that.
29:12
And mo many of those will either go for embolization
29:14
or for, uh, splenectomy.
29:17
This is a grade five
29:18
because, um, there's active extravasation.
29:21
And I would like to say potentially if I stop this, um,
29:25
you would call this shattered, uh,
29:28
that is a non-medical term
29:30
that I've talked to our, our trauma surgeon.
29:32
They're like, what do you mean by shattered?
29:33
They're like, I don't know, when you pick it
29:34
up, it falls through all your fingers.
29:35
And I'm like, oh, well, you know, I'm not doing that.
29:37
Um, so a shattered spleen,
29:39
but it's kind of fun to say shattered in your,
29:41
in your reports just to make it more dramatic.
29:43
Um, so, you know, can we, what can we do?
29:45
Uh, if the patient is stable,
29:46
they will embolize these at times.
29:48
Um, and you'll see, uh, they're able to salvage the spleen,
29:52
which is ideal for the patient.
29:54
Um, but when they're unstable,
29:55
those patients are usually going
29:57
for splenectomy, unfortunately.
29:58
So this is an interesting case here.
30:00
We have a patient who let me get this movie going,
30:04
has some lacerations to the spleen
30:06
and notice that they're all at the splenic hilum, um, loss
30:08
of lacerations and irregularity in the splenic hilum.
30:12
So this is pretty high grade injury.
30:14
Um, and when we look here, you can see
30:15
that there is a little focus of contrast that's irregular.
30:19
It doesn't look like a vessel. It's pretty far this in,
30:21
in the hilum
30:23
where there should just be nice delicate vessels.
30:25
Um, and that little pool of contrast is the same attenuation
30:29
as the aorta here.
30:31
And again, similar to that case I showed you a while ago,
30:34
you can see that it, um,
30:35
it actually has blood revolving in it, in
30:39
that the blood here in this space is the same attenuation
30:43
as blood pool in the aorta.
30:45
And this is a splenic pseudo aneurysm.
30:48
Um, it was, the patient was imaged 24 hours later,
30:50
unfortunately, at the time of interpretation,
30:53
no one really noticed this.
30:54
And they just said multiple splenic lacerations.
30:57
Um, and this patient was discharged, uh, to, um,
31:01
a rehab center where their spleen had delayed rupture.
31:04
And that was a big problem. So this is one
31:07
of those situations where this is our job,
31:09
you know, do your job right.
31:11
Our job is to look for the things that would make a patient
31:16
unstable, which make a patient look stable to a surgeon,
31:20
but we know puts them at future risk of rupture.
31:23
So definitely always look for these pseudo aneurysms.
31:26
And sometimes you don't know when they're gonna happen.
31:27
Here's somebody who just had a pretty high end, a young, uh,
31:30
a young, uh, football player with a high end splenic injury,
31:33
didn't have any extra, extra active extravasation,
31:35
but when they came back a couple of weeks later, um,
31:39
they were imaged with ultrasound
31:40
'cause they were, uh, they were a teenager.
31:43
And you can just see that on this ultrasound clip,
31:46
which is causing me trouble.
31:47
Um, there's just this fluid space.
31:49
Well, our technologists are brilliant
31:51
and they, um, did a beautiful color sweep here
31:54
where you can see that region of koic,
31:59
irregular koic fluid is indeed blood.
32:02
And this is that ying yang appearance,
32:05
that pseudo aneurysm within the splenic parenchyma
32:09
where the blood is going towards the probe and is red
32:12
and the blood going away from the probe, um,
32:14
because it's blood going into this potential space
32:17
and swirling here.
32:19
Um, and this is definitely at risk of rupture.
32:22
We, uh, then repeated it a CT scan where you can see
32:25
that area with the arterial phase and delayed.
32:28
And the patient went on to, um, uh,
32:33
embolization of the pseudo aneurysm
32:35
and they were able to keep their spleen, which was lovely.
32:38
So we're always looking for the splenic aneurysm, right?
32:41
We're always looking for the intraparenchymal pseudo
32:44
aneurysm because that was, is what can rupture.
32:47
Well, let's talk again. All right.
32:49
So, you know, I show you the troubles. Let's do that.
32:51
So here's another patient who had, um,
32:55
who was a sports sports player as they are
32:58
and got a hockey stick.
32:59
'cause we like our hockey here in Boston, um,
33:02
to the left upper quadrant.
33:03
I can tell you as a mom, I'm always
33:05
so glad my kids didn't play hockey too early in the morning.
33:08
Um, if you're, if you played
33:09
hockey, you should love your mom.
33:10
Anyway. Um, you can see here
33:12
that there are some splenic lacerations, small ones.
33:15
I'm gonna make this bigger
33:18
and I think I can convince you that this per splenic blood
33:24
is not per splenic blood.
33:25
It's actually subcapsular blood.
33:27
Notice that the capsule is in continuity
33:30
here with that hematoma.
33:31
So that's different. These small little lacerations would've
33:35
been fairly low grade injury.
33:36
But once you have a big per splenic hematoma,
33:38
you're at least a grade three.
33:40
This patient unfortunately was discharged.
33:42
They were like, oh, they're okay.
33:46
Small, um, splenic lacerations.
33:48
Uh, but because people don't listen to doctors, um,
33:52
this patient decided to go and play hockey the next day.
33:55
And we were lucky that they were close to the hospital
33:57
because this is what happened
33:59
after their conservative management.
34:02
Um, they came back with just a huge ruptured spleen,
34:05
active extravasation of contrast, large volume
34:07
of hemoperitoneum.
34:08
Look at how small the aorta is.
34:10
We have all of the findings of shock in this patient,
34:14
including that collapsed aorta, a large volume of site,
34:17
large volume hemoperitoneum and the like.
34:20
And this patient unfortunately did go on
34:22
for a splenectomy as a result of this.
34:24
So it just breaks up the, brings up the point
34:26
that we in medicine have really moved towards a conservative
34:29
management approach to a lot of, um, entities.
34:33
But that's not a no management approach,
34:37
like conservative management.
34:38
The patient is supposed to be laying flat,
34:40
maybe not playing hockey, um,
34:43
and have serial hematocrits drawn and serial exams.
34:47
Um, and then you can safely manage them for, for a period
34:49
of time until you believe that they have stabilized.
34:51
Also, I think if this had been graded properly based on the
34:55
hematoma, um, they would've been less likely
34:57
to be discharged here.
34:59
So, um, we really have
35:01
to bring up those per splenic hematomas.
35:03
Have I told you this enough?
35:04
You're looking for pseudo aneurysms
35:05
and per splenic hematomas.
35:07
Yes, yes, yes. Those are the ones that cause us trouble.
35:11
This is just fun. This is a patient who came in
35:13
after having had a splenic injury
35:16
and you can just see all of these little dots
35:19
of bright spleen throughout the whole abdomen into the
35:23
paracolic gutters.
35:25
Impressive, right?
35:26
This is stenosis and a patient whose spleen was shattered
35:29
and then just traveled everywhere it wanted to in the body,
35:32
which makes you realize how.
35:34
And they also have appendicitis. That's just an aside.
35:36
Um, how, uh, how, you know,
35:39
the spleen can be like a parasite.
35:41
It's pretty impressive. All the way down into the pelvis
35:43
as well, into the cul-de-sac.
35:45
Um, and can grow wherever it wants to.
35:47
So don't mess with the spleen.
35:48
Here's a little bit of, um, spleen that decided
35:51
to grow in the abdominal wall
35:52
after a s splenectomy that was done
35:53
for a stab wound, I believe.
35:55
So the fun is, um, at times when you see, uh,
35:59
these crazy abdominal cases
36:02
where you think, oh, what could that be?
36:03
Always think, could I be dealing with osis?
36:06
Could I be dealing with endometriosis?
36:08
Those are the two things. Oh, end tuberculosis.
36:10
I'm telling you those three things cause you more trouble
36:13
as a, as a radiologist in life.
36:15
I mean, what do I like to tell my re my medical students?
36:19
Tuberculosis causes everything but pregnancy.
36:21
So, um, you know,
36:23
whenever you're thinking of some weird stuff,
36:25
do you have sp osis endometriosis or tuberculosis?
36:28
But I digress. Let's go on.
36:30
Okay, so now let's talk about some pancreatic trauma.
36:34
Um, this is not as common. This is a rare bird.
36:37
Uh, it's, uh, pretty uncommon to have pancreatic trauma.
36:41
You have to have a pretty deep abdominal blow.
36:44
Um, sometimes from bike riding.
36:46
Bike handle, I think would be your USME question.
36:49
Um, and it's, it's, it's tough to get.
36:52
Uh, also, we like to say about the pancreas.
36:55
Eat when you can sleep with, you can,
36:56
but don't mess with the pancreas.
36:57
So you do not want pancreatic trauma. It is bad.
37:01
Usually takes a deep abdominal blow
37:04
where the pancreas cont chooses against the spine
37:06
and can be quite devastating.
37:08
The mortality is very high from nine to 34%.
37:12
I hate when mortality are like a large variation like that.
37:14
Um, and you know, there can be direct signs of,
37:17
of pancreatic trauma here.
37:19
You can have lacerations, transections, focal enlargement,
37:22
but you can also have indirect signs of pancreatic trauma
37:24
where you just have fluid collections, hematomas, um, and,
37:28
and the likes and stranding.
37:29
So we always wanna take a good close look at the,
37:32
at the pancreas because it is so evil and out to get you.
37:36
Um, I mean any organ that can digest you from inside of you.
37:40
Mm, not the best. Uh, so you wanna be really careful here.
37:45
When we talk about evaluating, we're always gonna evaluate
37:48
for contusions and lacerations.
37:50
The lacerations should be a bit more linear and,
37:52
and in, um, appearance.
37:55
Now pancreatic trauma has a really weird grading system,
37:59
but we're gonna go with it 'cause we can't choose again.
38:01
It's, it's, um, determined by the, uh, the trauma surgeons,
38:05
and I'm gonna go into it, but a lot
38:07
of it is based on the location in the pancreas,
38:10
whether it's in the proximal pancreas, which is defined
38:13
as proximal to the smv, uh, to the portal vein here,
38:16
SMV portal vein axis, that would be the proximal pancreas
38:19
as opposed to the distal pancreas.
38:21
Here, remember that the pancreas lies in the,
38:26
um, anterior pararenal space.
38:29
If we remember our tricompartmental theory of the re of the,
38:32
um, retroperitoneum, which I teach,
38:34
I think in my abdominal imaging course, um,
38:37
I do know that it's in there.
38:38
Uh, so anyway, it's always, you know, you're gonna look
38:41
for fluid in this space that kind
38:42
of just interdigitates posterior to the, um, to the, to the,
38:46
uh, colon here and look in that space.
38:49
This is just a patient with pancreatitis showing you
38:51
that fluid kind of deep in those little,
38:54
that little anterior pararenal space deep
38:57
to the paracolic gutters.
39:00
Okay? So the pancreatic grading system is really based on
39:03
whether or not you can determine if the pancreatic, um,
39:07
injury involves the duct.
39:08
This can be nearly impossible, but we're gonna try.
39:11
Alright, so, um, the, the various, uh,
39:15
locations are really important.
39:16
So we're gonna talk about the low grade injuries
39:19
where they probably don't involve the duct versus the high
39:22
grade injuries where the duct is involved.
39:25
So, um, we're gonna grade them based on location, proximal,
39:29
distal and duct or no duct in involvement.
39:32
And you know what? You're just gonna do the best you can.
39:35
You, the pancreas is hard.
39:36
The pancreas is mean to all of us.
39:38
It's mean to the surgeons, it's mean to the patients.
39:40
It's mean to us as well. So at times you'll just see like a
39:43
grade one where you just have a small peri peri
39:45
pancreatic hematoma.
39:47
Um, and you just have some indistinct ness
39:48
of the pancreatic head as we have here.
39:51
Other times you may see a pancreatic laceration hard
39:54
to determine if it's really to the level of the duct or not.
39:57
Um, I usually try to make, uh, three, uh, curved reformats
40:01
to the actual pancreas to make these images
40:04
or try to determine that.
40:05
I mean, they're pretty everyone. And then I like put my
40:07
name on them to get credit.
40:09
Um, everyone thinks they're really fun
40:10
and exciting during a pancreatic,
40:12
during a trauma conference.
40:13
So that one, maybe it's less than 50%, you'd have to try
40:16
to grade that as is, um, some contusions, which are just,
40:20
uh, focal defects of the pancreatic, um, parenchyma
40:24
and, um, low attenuation regions.
40:27
But, um, you know, this is somebody
40:29
who is a, who is a biker.
40:31
We like to bike in Boston, not the safest place
40:33
to bike, but we do it anyway.
40:34
And they had this contusion so at least we can grade that.
40:37
The patient has a contusion of the pancreas.
40:39
And the important thing about that is,
40:40
although we may not be able to really tell if it's a higher
40:43
low grade, um, injury at that time,
40:46
we will always suggest a 24 hour follow up of all
40:50
of the pancreatic injuries if they're non-operative at the
40:52
time of injury.
40:54
Um, because then here we can see that there's a lot
40:56
of fluid developing over time.
40:57
So probably it does involve the duct in this case
40:59
or has gone on to eat itself into the duct.
41:03
Um, so we will, uh, want pretty early, um,
41:06
intervention there, which is important.
41:09
Uh, here's a, um, again,
41:11
increased fluid at that 24 hour spot.
41:13
This same patient goes on for, um, an endoscopy
41:18
where they can, where you can actually see extravasation
41:20
of contrast from the injured duct, um, outlining the aser,
41:24
uh, formation of the remainder of the tail of the pancreas.
41:27
And they put in a nice duct stent in order to have that, um,
41:31
uh, in that ductal injury heal conservatively.
41:36
So that's an option here, which is, which is quite nice.
41:38
But we usually, if we see any injury,
41:40
you're gonna get a 24 hour follow up if there's increased
41:43
fluid or duct injuries.
41:44
Um, the decision will have to be between going surgically in
41:47
or going in endoscopically and adding a stent.
41:51
Here's one, you know, once you get to to um, grade three,
41:54
you have a duct injury, it's usually a distal injury.
41:56
This is a distal transection
41:58
or deep parenchymal injury as well.
42:00
Here's a patient who, oh, that's our patient who had the one
42:04
that we thought was a grade duke
42:05
but was a grade three with duct injury.
42:07
Now here's a patient who had a snowmobile accident.
42:10
Um, you can tell that it was a pretty dramatic an accident
42:12
from the 3D reformations of the femur
42:14
with bilateral femoral injuries.
42:16
Um, and uh, significant impaction there.
42:19
We have a bunch of small lacerations within the left lobe
42:23
of the liver where the patient, um, again,
42:25
that handlebar injury of a snowmobile might occur.
42:30
And as we come down we're going to, I was gonna show it.
42:35
You're gonna just barely see a pancreatic injury.
42:39
They're subtle, right?
42:41
Um, just a little tiny laceration there.
42:43
But because you know, the patient had these large, um,
42:46
midline, uh, liver lacerations, you're gonna look like
42:50
millimeter by millimeter at the pancreas.
42:52
So that's a beautiful pancreatic injury.
42:54
Grade three distal to the, um, pardon me, distal
42:58
to the SMV access in pretty large grade.
43:02
This is the patient after they were transferred
43:04
that same patient with um,
43:06
a large volume pancreatic ascites.
43:08
Uh, unfortunately, um, let's go on
43:11
to a more interesting one.
43:14
Here's a large transection of the distal pancreas as well
43:17
that also had a kidney injury.
43:19
So that would be kind of a left sided package
43:20
where the patient has significant injury to
43:22
that left upper quadrant causing a, uh, a, um,
43:25
endothelial injury to the vessel as well.
43:29
Okay, so here's your 21-year-old in a bar fight.
43:32
Woke up with some abdominal pain coming down.
43:35
We are in our axial view.
43:37
Again, you're gonna see the pancreas here.
43:38
Pancreatic body, a bit of fluid, not good, not good.
43:41
And then you'll see a large defect
43:43
of the pancreas in the midline here.
43:45
Again, that's the pancreatic body distal to the,
43:47
to the level of the S-M-V-S-M-A with a bunch of blood
43:51
and fluid around that.
43:53
Um, mesenteric root.
43:54
And this is a large, fairly classic pancreatic injury
43:59
where you actually see the defect.
44:00
It's in that location right anterior to the spine from
44:04
just a deep abdominal blow her lower.
44:08
This is how Houdini died.
44:09
He had um, a trick he used to do where he would let people,
44:14
uh, punch him in the stomach
44:15
but he would flex the muscles of his abdominal wall
44:17
and he was able to survive it and someone sucker punched him
44:20
and punched him really hard in the stomach
44:21
and it caused him to have pancreatic laceration,
44:25
um, as a result of that.
44:26
So, um, this is a typical like large scale pancreatic
44:30
injury, which is very, very bad.
44:33
And um, accounts
44:34
for about this pancreatic body location right in front
44:36
of the spine accounts for two thirds of the injuries.
44:39
If you're lucky it can be repaired,
44:40
but it takes quite a bit for the surgeons
44:42
to get this repaired and that they frequently have
44:44
to do a jho, uh, pancreatic aje ostomy here.
44:47
And so off the, um, the other end. So it's pretty dramatic.
44:51
Here's a patient trying to find a grade four.
44:53
It was pretty hard. Um, proximal injury, you know,
44:56
I don't think a lot of these actually come to us,
44:57
but here you can see one where you just have zero
44:59
distinctness of the pancreatic head.
45:01
The patient has a big contusion in that location.
45:03
So we call this a grade four.
45:05
Um, it's not that common and they can be pretty devastating
45:09
'cause you're, you can uh, ul some
45:11
of the more delicate architecture of the um,
45:14
common bile duct and the like, you know, uh,
45:17
grade five haven't seen it.
45:19
Probably you're not hitting me in the,
45:21
you're probably not coming to me if you've got a shattered
45:23
pancreas to be honest, you probably have a
45:24
shattered brain in that case.
45:26
Um, so I like to call it spontaneous human
45:28
combustion 'cause I think it really is.
45:29
Um, once you are combusting your pancreas to that level,
45:34
you are probably combusting.
45:37
Let's move on to some more
45:38
of the deep abdominal injuries here.
45:40
Here's a 19-year-old who got knee by a bouncer.
45:43
We are college tenol.
45:44
Um, so as you come down you're going to see
45:48
this big mixed uh, attenuation lesion here, kind of um,
45:52
uh, fluid and soft tissue.
45:54
This patient did get oral contrast
45:56
'cause it was kind of when we were still
45:57
using a lot of oral contrast.
45:58
And honestly he came in a couple days
46:00
after this injury when he was just, and he was vomiting.
46:04
So, um, I think the thought was
46:06
that he had something else going on.
46:08
But you see this very big, uh,
46:10
large duodenal hematoma right in front of the spine like
46:13
that causing gastric outlet obstruction.
46:15
So this is a big, um, did I say echogenic?
46:18
I didn't mean to say that. Uh, mixed attenuation region
46:21
of this third portion of the duodenum, typical
46:24
for a duodenal hematoma.
46:26
Frequently they will come in with signs
46:28
of gastric outlet obstruction
46:31
and they can even have active bleeding within them.
46:33
Um, they're usually treated conservatively
46:35
'cause if you can just not touch these, you're better off.
46:37
Uh, and they will, um, make the patient NPO uh,
46:41
for a long period of time.
46:42
Sometimes we'll put in a judge ostomy tube, um,
46:44
percutaneous ju ostomy tube, uh, if they have to
46:47
or they'll put you on TPN.
46:48
So it's a pretty dramatic injury.
46:50
Um, kind of classic to that location.
46:52
Here's this, uh, 46-year-old who decided
46:54
to ride his motorcycle through fan hall,
46:55
which is a big tourist destination where we are
46:58
and unfortunately hit the metal chain in his abdomen.
47:01
So let's come on down.
47:02
Um, and that's a deep abdominal blow if I've ever heard one.
47:05
And we have a lot of edema
47:06
and blood around the root
47:08
of the mesentery there coming down.
47:11
Sorry, we're gonna see even more blood in that location.
47:15
And you're actually going to start to see distinctness
47:19
of the second portion of the duodenum, more blood
47:22
and fluid into the retroperitoneum
47:24
and actually a dot of error as well.
47:26
So this is an appearance of, um, the blowout of the second
47:30
to third portion of the duodenum.
47:31
You can see that below here. I'm gonna make it bigger.
47:34
You can see the second portion of the duodenum coming
47:36
over to the third portion.
47:37
And we actually have blown
47:38
through the wall inferiorly at surgery.
47:41
They can see a large laceration.
47:42
Here is the liver, here is the gallbladder
47:44
and that large duodenal blow.
47:46
This is a pretty typical location.
47:48
Let me see if I can bring up the, um, image here.
47:51
So back from Grey's Anatomy, when you have impaction of
47:56
the pylori here
47:59
and this third portion of the duodenum against the, um,
48:02
spine hard for that blow,
48:05
actually the weakest portion according
48:06
to the plus's law would be this
48:08
under surface of the second portion.
48:10
So it just blows out. So it's actually just
48:12
that sudden pressure in the c portion of the duodenum
48:15
that causes this, uh, injury.
48:18
Now what we didn't make on this, on this study,
48:20
and let tell you this surgeon let me know as they do,
48:23
is the fact that there is also an
48:26
avulsion at the ligament of trites.
48:27
And I haven't made that, that, um, mistake again
48:30
because I find it so frequently now.
48:32
Um, and that's basically
48:33
where the duodenum goes from the retroperitoneal more fixed
48:38
location up to the ligament of trites of the jun.
48:40
And that's a relative location of fixation versus mobility.
48:43
And during those are the locations that cause problems
48:46
during, um, during a sudden stop for during your sudden, uh,
48:50
uh, blunt trauma.
48:52
That's the location of sheer injury,
48:54
whether it's your aorta be between, uh, the ESUs
48:57
of your aorta, that's a similar location
48:59
between mobile ascending and relatively fixed descending.
49:03
So the ligament of traits avulsions are to be looked for,
49:06
follow the duodenum all the way into the genome
49:10
'cause you'll just find that they will be discontinuous
49:12
as we see in this surgical situation.
49:14
Here's a 17-year-old, um, definitely injured.
49:18
We have a renal injury there.
49:19
Uh, with uh, devascularization we have a lot of fluid
49:24
in the left upper quadrant.
49:26
I mean the question is do we have a pancreatic injury
49:28
or duodenal injury?
49:29
It can be really hard, but I would say the pancreas looks
49:31
fairly homogeneous and attenuation.
49:34
And as you come down you can actually see defects within
49:36
the jejunum here.
49:38
So if you see fluid interloop fluid in a trauma patient
49:42
in the left upper quadrant, you have a small bowel injury,
49:46
they're not that uncommon.
49:47
Um, other things you wanna look for though,
49:49
when you have these deep abdominal blows,
49:51
these singular deep abdominal blows are injuries
49:54
to the aorta.
49:55
Here's a minimal aortic injury,
49:56
just a tiny endothelial injury that's gonna need to be cared
50:00
for maybe with anticoagulation.
50:01
And here's just a extremely dramatic pseudo aneurysm
50:04
with a focal rupture.
50:06
So something to be aware of.
50:07
Now moving on to instead
50:09
of those high deep abdominal blows from the, um, snowmobile
50:13
or the bike, let's talk more about the motor vehicle
50:17
accident where you have seatbelt injuries.
50:19
Seatbelt injuries tend to be a little lower down.
50:20
You're gonna get that, um, that seatbelt, uh, you know,
50:25
hematoma along the lower abdomen if placed correctly.
50:28
Let's go to this one, lemme play it again
50:31
and you're gonna see that there's hemoperitoneum here.
50:33
Um, but coming down you'll also see that there's a lot
50:36
of blood in the, in the right lower quadrant
50:38
with little tiny, um, regions
50:40
of active extravasation as well.
50:42
And that's from these deep abdominal blows lower down
50:45
where you can have, uh, injuries to the mesentary.
50:49
Um, these mesentary injuries usually have fluid,
50:53
accumulate fluid and fluid
50:55
and blood accumulate in, um, the interloop areas
50:58
of the bowel causing these kind of classic triangles
51:02
of blood in the mesentery.
51:03
So as soon as you see trials of blood, you want to say
51:07
that there's a mesenteric injury
51:08
and a potential bowel injury.
51:10
So let's go on. Um, here again we have mesenteric fluid
51:14
and then we have another finding that we see in the setting
51:16
of these deep abdominal lower abdominal blows,
51:19
which is a traumatic lumbar hernia.
51:21
When you have that just sudden impact on your,
51:24
on your lower abdomen, you can actually blow out
51:27
of the abdominal wall causing a traumatic injury.
51:30
Here, of course it's named as all of the hernias are.
51:34
Um, you know, if only I could get my name on a hernia,
51:37
I'd be so sad, so excited.
51:38
But we just call them traumatic lumbar hernias
51:40
or petit hernias
51:41
and those have a very, very, very high likelihood
51:44
of bowel injuries regardless.
51:46
So you always wanna look for those.
51:47
And in this case it's kind of nice,
51:49
you can use your hyper enhancing bowel from your patient
51:52
who has a bit of shock bowel to tell them
51:54
that there's no enhancement of the ileum here.
51:56
And indeed they went in for surgery
51:57
and it was just completely uls.
51:59
Um, 'cause what happens is during these situations
52:01
that there's a lot of traction
52:03
and, um, traction on the mesentery to the small bowel
52:06
and it can just rip off such as this, it's called a handle,
52:10
uh, bucket handle tear of the mesentery
52:12
and it just devascularize, uh, loops of small bowel
52:15
and they can shear as well.
52:16
You may even see very dramatic cases
52:18
where the entire abdominal wall has um, blown out
52:22
and you have, uh, the bowel contents just kind
52:24
of laying in the subcutaneous tissues as such.
52:27
Small bowel is, you know,
52:28
small bowel injuries can be very difficult.
52:30
Like frequently. We really don't get these small bowel
52:33
injuries where you have extra luminal error.
52:34
Like, that'd be nice. But most
52:36
of the time it's just an indication
52:37
that you have a small bowel injury
52:39
because of the mesenteric fluid that, um,
52:44
that, uh, lumbar hernia or some other secondary signs.
52:48
Now clinically, small bowel uh, injuries
52:52
and colonic injuries usually don't
52:53
present for about 24 hours.
52:55
So those patients will become Perone attic, um,
52:58
regardless in 24 hours.
53:00
But we, we try to make the diagnosis as soon as possible
53:02
so they can be remedied
53:04
before, you know, peritonitis signs in, which is good.
53:07
Um, here's another case that I found very interesting here.
53:09
We had a patient who came in, um, with
53:12
that seatbelt sign clinically
53:14
with the contusions on the flanks.
53:16
Um, we had, uh,
53:17
hematoma in the right lower quadrant in those interloop
53:20
regions and we had that hernia as well.
53:23
So this is an indication
53:24
that the patient had a bowel injury.
53:26
Um, then the patient got a follow up
53:29
for some other reason a week later
53:31
and you could see some very thickened bowel there, which is,
53:34
which is an indication of a problem.
53:35
Now, I met the patient at three month follow up where um,
53:40
they were coming into the ER with,
53:42
with abdominal pain in inability
53:44
to eat and feeling really bad.
53:46
And we saw this, uh, loop of small bowel
53:48
with hyper enhancing mucosa
53:51
and uh, really hypertrophied blood vessels
53:54
to that small bowel loop.
53:55
And, um, everyone seemed to think that the person had, uh,
53:58
Crohn's disease just
53:59
'cause that's a similar appearance of Crohn's disease,
54:02
though it's not in the terminal ileum.
54:04
And it makes you realize that probably Crohn's disease
54:05
really is a microvascular ischemic, uh, process.
54:10
Um, but this indeed,
54:11
because we had the old ones, we were able to say, no, no,
54:13
no, no, no, don't,
54:14
well they didn't believe us and they did it anyway.
54:16
Um, we were like, no, no, no, it's an ischemic, uh,
54:19
stricture related to this bowel injury.
54:21
Probably that bucket handle tear of the mesentery.
54:24
So, um, but they were like, no, we think he has Crohn's,
54:26
his brother has Crohn's
54:27
and they gave him steroid for a couple months.
54:29
And I tell you, I followed this case.
54:31
I followed it, followed it, followed it
54:33
until finally they took him for surgery.
54:35
Um, and uh, it was indeed a chronic ischemic,
54:39
uh, enteritis.
54:41
So, you know, sometimes you have
54:42
to let the surgeons know back that they miss things too.
54:45
Um, and uh,
54:46
but bowel injuries are something that you just have
54:48
to have a really pretty good awareness
54:50
of knowing if they have an upper abdominal in um, injury.
54:53
You really wanna look for those ligament of traits,
54:56
injuries, uh, those are pretty subtle.
54:58
And then the lower injuries,
54:59
you'll have those bucket handle tears
55:01
of the small bowel and colon.
55:03
Um, really highlight that
55:04
as a possibility if you have the hernia
55:07
or the um, triangles of blood.
55:11
Alright, thank you very much. I hope that that was helpful.
55:15
Um, if there are any questions, I'm happy to answer them,
55:18
but I also wanna highlight, uh, the abdominal pro call prep,
55:23
um, course that was put together in the fall
55:25
and finally released now.
55:27
Um, you know, I spent a lot of time on that.
55:29
There was some all-nighters in my fifties, so, um, uh,
55:32
please give feedback on that
55:33
and have a chance to look at that.
55:35
It's not traumatic, um,
55:36
but it has a lot of really good er content as well.
55:39
And thank you so much for inviting me
55:40
and I hope that this was a foray through some
55:43
of the more fun aspects of trauma.
55:46
Thank you so much, Dr. Avery. That was excellent.
55:49
Excellent, excellent. We've got a couple questions
55:51
and then we'll get you outta here.
55:53
Um, how do you differ
55:55
between a pseudo aneurysm para hemal from a heman heman?
56:00
Well, I can't say the word. Uh,
56:01
Heman, Yes, thank you so much.
56:04
Interesting. Um, you know,
56:06
honestly a pseudo aneurysm is just blood.
56:08
The hemangiomas, at least, you know, in the liver
56:10
and like in the spleen too, have
56:12
that peripheral nodular enhancement that comes in slowly.
56:15
So I would say that on your arterial phase you're gonna have
56:18
just a pool of blood that,
56:19
that then just goes straight with blood pool.
56:22
It's not gonna have this centripetal enhancement pattern.
56:25
It'll just be a blood pool arterial and then portal venous.
56:29
Got it. All right. This is a double question.
56:32
If you have a single porter Ven portal venous stays
56:35
of the abdomen and you see contrast extra visitation,
56:38
how are you able to differentiate if the contrast is from an
56:41
arterial source versus a venous source?
56:44
So it's, the attenuation of the contrast will be higher.
56:47
If it's arterial it should be like 300.
56:48
If it's venous it should be a little lower,
56:50
like 120 or something.
56:52
So usually you can determine, um, if you have high,
56:55
high attenuation contrast
56:57
because that's what's gonna be the pre blood pool
56:59
arterial phase contrast.
57:01
So, um, that's usually how we do it.
57:03
Some people don't like the one pass we're,
57:06
we've kind of abandoned it.
57:07
Um, I still like it.
57:09
Uh, I think it has some major advantages for our trauma
57:13
system here.
57:14
Um, but uh, you know,
57:16
different institutions go back and forth on it.
57:19
I would say it gets trendy for a while
57:20
and then it goes away and comes back.
57:23
Alright. Um, one more, in the case
57:26
before aorta injury, I saw attenuation
57:29
of the left kidney parenchyma.
57:32
Is it related to vascular injuries?
57:34
Yeah, so that was a case of, um,
57:36
a left upper quadrant injury in total.
57:38
I didn't get into too much detail on the, um,
57:41
parenchymal injury of the kidney.
57:43
Um, but it was probably the case with uh,
57:46
a tail pancreatic lesion.
57:48
Um, so a deep abdominal blow causing tail pancreas
57:51
and a vascular injury to the, um, left renal artery.
57:55
Awesome. We
57:57
Do actually try to go in now and salvage those.
57:59
They will take those for interventional, um, uh,
58:02
to our interventional suite and try to stent them.
58:04
That wasn't the case like 10 to 15 years ago,
58:06
but they've had a pretty good rate of, um, salvageability
58:10
so now we're, they're trying for sure.
58:13
Um, okay, I lied one more.
58:15
When you have a, um, metric hematoma and interloop fluid
58:19
but no definite bowel injury, what do you say
58:22
and recommend in terms of occult bowel bowel injury?
58:26
I would highlight that there's a high, so I would,
58:28
you know, I would obviously look for anything.
58:30
I would highlight the fact that there's a high likelihood
58:32
of the col bowel injury.
58:34
Our surgeons would choose to observe that with an indication
58:39
that they're gonna have, you know, pretty close serial exams
58:41
and that the patient should present in 24
58:44
to 48 hours at 24 usually if there is indeed a laceration.
58:48
Um, but also in the case
58:50
where it was just an ischemic stricture like
58:52
that can be a problem in the long run.
58:53
So I think just knowing that there's a high likelihood
58:56
of injury, um, is enough for certain indications for them
59:01
to explore, if not to try conservative management.
59:04
But a lot of patients fail it
59:05
'cause they actually have an underlying bowel injury.
59:07
Bowel injuries are hard to see,
59:09
they're just really hard to see.
59:11
So it's the secondary signs that we have to go with.
59:15
Thank you so much Dr. Avery.
59:16
We will let you get outta here. Appreciate this
59:19
so much and thank you.
59:20
Thank you. Yeah, thank you so much.
59:22
And folks, if you want more from Dr. Avery yes,
59:24
please check out her course.
59:26
Go ahead, Dr. Avery. Did you Yes.
59:28
See the course. It's fun. It's fun, I swear.
59:30
And it, what was it, 90 videos, it took us some time.
59:33
It yeah, yeah. It's worth it though, I promise.
59:37
Um, you can access a recording of today's conference
59:40
and all our previous noom conferences
59:42
by creating a free MRI online account.
59:44
We will also email out a link to this replay later
59:48
and that will also contain the link to Dr.
59:50
Avery's full course. Be sure
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to join us next week on Thursday,
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August 1st at 12:00 PM Eastern,
59:55
where Dr. David Ssim will deliver a lectured entitled How
59:59
to Avoid Getting Sued.
60:01
You can register for that@mrionline.com.
60:03
Follow us on social media
60:05
for updates on future noon conferences.
60:08
Thanks again for learning with us and have a great day.