Interactive Transcript
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Hello and welcome to Noon Conference, hosted by Modality
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and previous noon conferences by creating a free account.
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Today we're honored to welcome Dr. Kevin Chang
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for a lecture entitled MRI
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of the Pancreas Basic Anatomy and Pancreatitis.
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Dr. Chang currently serves as the section chief
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of abdominal imaging
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and director of MRI at Boston Medical Center
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and Associate Professor
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of Radiology at Boston University Banian
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and at School of Medicine, as well as adjunct professor
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of diagnostic imaging at Brown University
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Albert Medical School.
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He's worked across multiple practices, health systems,
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and hospitals over the past 20 years in a wide variety
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of academic, private practice
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and hybrid clinical settings, caring for a wide variety
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of patient populations
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before dedicating his current practice
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to the care of the underserved.
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At the end of the lecture, please join him in a q
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and a session where he will address questions you
1:07
may have on today's topic.
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Please remember to use that q
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and a feature to submit your questions so we can get to
1:12
as many as we can before our time is up.
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With that, we're ready
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to begin today's lecture to entertain.
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Please take it from here.
1:19
Thank you very much for the, uh, the kind invitation
1:22
that give you guys a talk about, uh, MRI of the pancreas.
1:25
Usually the stop takes, uh, uh, a couple hours.
1:28
I've decided to, to divide it up in the first half
1:31
of the lecture that I usually give is, uh,
1:33
regarding basic anatomy as well as pancreatitis.
1:36
So basically non, uh, lesions
1:39
and, uh, non-malignant findings in the pancreas.
1:43
These are my disclosures.
1:46
MRCP was first introduced in 1991, so it's been
1:49
around for many decades.
1:50
Prior to MRCP, um, uh, ERCP was the way to,
1:53
to visualize the pancreas and the pancreatic duct,
1:56
and 40 to 70% of, of diagnostic ERCPs were negative.
2:00
So, Mr. MRI and Mr.
2:02
RP has largely supplanted ERCPs as well
2:05
as percutaneous transa cho angiograms
2:07
and the imaging of the pancreatic and the biliary treat.
2:10
And the advantages are that it's non-invasive.
2:12
It avoids, um, complications related to pancreatitis due,
2:16
you know, perforation, hemorrhage, sepsis,
2:19
and, uh, risks of sedation.
2:20
It's definitely a, also a cheaper exam than any RCP, uh,
2:23
does not involve ionizing radiation
2:26
and involves less operator skill and patient preparation.
2:29
It also allows for more accurate depiction
2:31
of the ductal diameter of both the biliary
2:34
and the pancreatic duct without the distension
2:36
using, um, contrast.
2:38
And there's a lower failure rate for, uh, MRPs, um,
2:42
but it does depend on patient cooperativity
2:45
and, um, in some sequences depend on
2:47
breath holding capabilities.
2:49
So, um, indications, clear indications for MRCP include, um,
2:54
obstructions in the GI tract, esophageal gastric
2:56
or duodenal obstructions, um, structuring
2:59
or edema at the Ular Vader, uh, presence of peram due
3:03
with needle diverticula can sometimes also make
3:05
ERCPs more complicated.
3:07
Uh, in terms of trying to cannulate the ula.
3:10
Also, per surgical, post-surgical anatomy can also
3:13
complicate, uh,
3:14
or make some ERCPs more difficult, uh,
3:16
specifically bowel reconstruction, including cholo,
3:19
doco enteric or pancreatic enteric anastomosis, as well
3:22
as gastro ostomies.
3:24
And then, um, depicting the, the ductal anatomy beyond
3:28
or upstream from an obstructing lesion is also a, a,
3:30
a great indication for MRCP
3:33
and clearly, uh, it's a, it's a great test in patients
3:36
that have had an incomplete or a failed ERCP.
3:38
There are some disadvantages to MRCP,
3:40
however, the, the spatial resolution of, uh,
3:44
MRI is less than that of, uh, the fluoroscopic images
3:48
of pain during an ERCP.
3:50
So this can limit the visualization
3:52
of small peripheral ducts.
3:53
It also clearly lacks the therapeutic
3:55
or, uh, pathologic diagnostic capabilities of more invasive,
3:59
um, uh, modalities,
4:00
but it can be helpful for the guidance
4:02
of those kind of procedures.
4:04
And it's not, oftentimes, it's not
4:06
as specific in differentiating malignant from benign causes
4:09
as obstruction,
4:11
although, uh, the use of, um, IV contrast can help look
4:14
for an obstructing mass.
4:16
Um, there are also other, other limitations that can, uh,
4:20
reduce your image quality, especially in patients
4:22
with large volumes of, um, fluid in the abdomen,
4:24
like in ascites
4:25
or in patients that have difficulty
4:27
with cooperation and breath holding.
4:29
And then there are a variety of susceptibility artifacts
4:31
as well that can limit visualization of the ducts.
4:34
So, basic principles behind Mr.
4:36
RCP, basically the images,
4:39
the imaging is based on the inherent T two weighted contrast
4:42
between slow flow fluid containing structures, uh,
4:44
versus the background organs and soft tissues.
4:47
Fluids have much longer T two relaxation times than
4:51
the adjacent soft tissues.
4:52
And the, and very heavily weighted T two weighted sequences
4:55
can depict these structures
4:57
with a higher relative signal intensity than the adjacent,
4:59
uh, fat and organs, which have a,
5:02
a shorter T two relaxation time.
5:04
When you image with a long, uh, echo time,
5:06
it helps the suppressive background signal
5:08
and improves, increases the contrast
5:10
and noise ratio of these structures.
5:13
For, uh, the technique for MRI, basically,
5:16
there isn't usually much patient preparation necessary,
5:20
but in the elective situation, um,
5:24
be having a patient be MPO for two to four hours prior
5:27
to the exam can certainly help
5:29
by reducing any residual fluid in the stomach
5:31
and the duodenum, uh, allowing you
5:33
to better see the adjacent ducts.
5:35
Um, an alternative can be giving some kind
5:39
of a negative oral contrast agent, uh,
5:41
I think gastro mark was taken off the market,
5:43
but anything else that can reduce your, um,
5:46
T two relaxation time for fluids such as, uh,
5:48
certain fruit juices
5:50
or even um, gadolinium, um, diluted, uh,
5:53
fluid can also help, uh, reduce, um, the,
5:56
the T two signal intensity of, uh, GI tract fluid.
6:01
Um, you can also give oxygen by nasal cannula
6:04
to help patients with breath holds.
6:06
And then the planes of imaging,
6:07
we will usually acquire them in the axi
6:10
and the coronal planes,
6:11
although some of the coronal fixed side images can also,
6:14
um, be acquired.
6:16
We're using various o liquidities
6:17
to better demonstrate the entire, um, length
6:21
of the pancreatic duct.
6:22
And we use both multis slice, uh, thin cuts, as well
6:25
as thicker slab images.
6:28
And then some supplementary, um, sequences
6:31
that we can use include, uh, 3D uh, pulse sequences
6:35
that acquire a volumetric, uh, volume
6:38
to better depict the anatomy, um, using thinner cuts.
6:42
And there's a bunch of different techniques for the 3D.
6:45
Um, uh, volumetrically acquired pulse sequences as well,
6:48
including, uh, multis slice 3D single shots, as well as, um,
6:53
uh, 3D grace
6:54
or gradient echo spin echo, um, hybrid type of images.
6:58
Some of them are, uh, fast enough now
7:00
that you can actually acquire the volumetric data
7:02
set in a single breath hold.
7:03
So this can certainly help in some patients
7:05
that have difficulty with, um, with, uh, longer breath holds
7:09
or inconsistent respiration that, uh, limit the utility
7:13
of some of the respiratory triggered free breathing pulse
7:16
sequences that can take a couple minutes to acquire basic
7:21
protocols include, um, axial single shots, uh, with
7:24
and without fat saturation, um, coronal, uh, images, uh,
7:29
thin cuts or,
7:30
or thick s labs, as well
7:32
as we usually will acquire T one weighted, uh, in
7:35
and out of phase images just to cover the pancreas, to look
7:37
for, um, the presence of, uh, fatty structures.
7:40
We use diffusion weighted images as well.
7:42
And then, uh, we will do an axial T one fats at pre
7:46
contrast, uh, even without, uh,
7:48
even when you're not giving IV contrast
7:50
to cover the pancreas because the intrinsic T one
7:53
hyperintensity of the, um,
7:54
pancreatic parenchyma is important to see.
7:57
Uh, and then obviously we will repeat
7:59
that pulse sequence in multi phases following the
8:01
administration of IV contrast when you're looking for,
8:04
um, abnormal enhancement been.
8:08
So in terms of planning for the, uh, the images, uh,
8:11
alpha axial plane, basically, uh,
8:13
we acquire thick slab images.
8:15
They can be a variable slice thicknesses to,
8:18
to depict the biliary, um,
8:19
or to, to depict the pancreatic ductal tree, as well
8:22
as the biliary ductal tree.
8:24
Um, the thinner their slabs are the less, um,
8:27
contamination there may be from adjacent fluid containing
8:30
structures, but the less
8:31
of the anatomy you're gonna be able to see.
8:33
There are also other techniques such as, um,
8:36
radial slab techniques
8:37
where you do these multiple coronal oblique, um, sequences
8:39
to cover the entire pancreatic
8:41
and biliary tree in, in different projections.
8:44
And then for 3D, um, 3D volumetric, uh, acquisitions, um,
8:50
you can do respiratory triggered, um, pulse sequences
8:54
where the, uh, slices are acquired at end at, uh,
8:57
end expiration for each, um, breath, um, cycle.
9:01
Or, uh, you can, uh, use some of these accelerated, um,
9:04
3D sequences
9:05
to acquire the whole volume in a single breath hold.
9:08
There are various pitfalls as well to be aware of.
9:11
Susceptibility artifacts will lead to, uh, loss of, um,
9:15
signal in fluid containing structures.
9:17
These could be related to surgical clips, metallic stents,
9:20
presence of gas, either in the adjacent bowel
9:23
or within the biliary or at the pancreatic tree.
9:26
Uh, it's, uh, helpful to correlate the, these appearances
9:30
with the gradient echo in
9:31
and outta face sequences to look for evidence
9:33
of susceptibility, which would, uh, manifest as,
9:36
as blooming on the endphase images compared
9:38
to the out phase images, as well as correlating
9:40
to any prior studies like, uh, x-ray or, or CT exams.
9:44
Uh, motion artifacts can also, um, uh, show up in, in some
9:48
of our images, uh, includes vascular pulsation artifacts
9:51
and, uh, biliary flow artifacts,
9:52
which can decrease your T two signal within, um,
9:56
flowing structures, uh, containing fluid.
9:59
And then you can get, uh, very pseudo filling defects like,
10:01
um, adjacent extrinsic structures like,
10:03
uh, crossing hepatic artery.
10:05
When you're looking at the bile ducts, um, the presence
10:07
of intraductal debris
10:09
or blood can look like, uh, filling defects in the,
10:12
in the ducks as well as, uh, gas in the ducks.
10:15
New mobilia or even gas in the pancreatic tree,
10:18
stringer oti contraction can also, um,
10:20
look like a stricture.
10:21
So it's important that some of those, uh,
10:23
fixed slab images get repeated multiple times, uh, over time
10:26
to try to, um,
10:28
visualize the entire tree at multiple time points to, to try
10:32
to image between a peristalsis
10:35
and then overlapping fluid containing structures in the
10:38
stomach or the duodenum or even the spinal canal
10:40
or, uh, ascites can also, uh, obscure visualization of the,
10:44
of the ducts.
10:46
Here's an example of, uh, an artifact, uh, in this case, uh,
10:50
on, uh, in visualizing the biliary tree,
10:53
there's this big signal void here in the, in the right, um,
10:56
hepatic tree.
10:58
And on a, uh, on a gradient echo sequence,
11:00
you can see this huge signal void, uh, in affecting the,
11:04
the right lobe of the liver.
11:05
And on a CT scan, you can see that that's related
11:08
to a metallic clip, uh, in the Porto Hepititis region.
11:12
So there's, uh, an example of susceptibility artifacts,
11:14
which can, uh, limit your visual visualization
11:18
of the biliary pancreatic tree.
11:19
On MRI. These are some maxalt weighted, um,
11:23
pulse sequences without fat saturation.
11:26
And, uh, in this case,
11:27
you can see there's a filling defect within the, uh, the,
11:31
the, the bile duct here within the duct.
11:33
But the important finding is
11:35
that it's on the anti dependent side of the lumen.
11:37
So that tells you that you're looking at, uh,
11:39
gas rather than a stone,
11:41
which would dependently layer along the dependent side
11:43
of the, of the, um, of the bile duct.
11:47
And then in this patient with, uh, findings
11:49
of chronic pancreatitis with this beaded look
11:51
to the pancreatic duct, you can see there's a, a loss
11:56
of signal in the, the common hepatic duct here,
11:59
which looks like it's transverse to the direction
12:02
of the biliary tree here on a,
12:04
on a thinner cut, a thinner slice.
12:06
Here, you can better see that, uh, that, uh, filling defect
12:09
that's, uh, a funny shape for,
12:12
for something like a, a stone.
12:14
And the reason for this appearance,
12:15
which you can also see here on this ERCP faintly, is
12:18
that there's a crossing vessel on this angiogram.
12:21
So this is the, uh, the extrinsic impression from a crossing
12:24
white hepatic artery simulating a, uh, narrowing
12:27
or a stenosis stenosis in the bi biliary tree.
12:31
This is an example of sphincter of ODI contraction.
12:33
You can see there's a focal narrowing here in the distal CBD
12:36
and an otherwise normal, uh, caliber pancreatic duct.
12:39
And, um, and that's just from, uh, intermittent, uh,
12:43
contraction of the sphincter of odi.
12:47
Here's another artifact here
12:48
where you can see there's a dilated pancreatic duct
12:51
with some side branch radicals
12:52
that are visualized here as well.
12:53
And, um, this structure over here looks like a stomach.
12:56
So this is a fluid filled stomach,
12:58
which when the fixed slab includes the, uh,
13:00
gastric g lumen can make it difficult to visualize the, uh,
13:03
pancreatic duct in that location.
13:06
And the solution to
13:07
that is just basically making the slab thinner
13:10
or just looking at your other sequences, um, to look around
13:14
behind or in front of the, um, these, these, uh,
13:16
fluid containing structures.
13:21
Next topic is gonna be embryology.
13:23
So, um, it's important to realize how the pancreas develops
13:28
as an embryo and a fetus, uh, to better understand some
13:31
of the anatomic variations that I'm gonna show
13:34
to you in a little bit.
13:35
So, basically, your, your, your, um, embryologic, um, origin
13:40
of the GI tract and the and and GI structures.
13:43
There's a kind of a gi tract here with little buds
13:47
that start to form that will eventually become the liver
13:50
and the, the gallbladder
13:52
and bile ducts, as well as, uh, the pancreas.
13:54
And the pancreas actually forms from two different buds.
13:57
Um, there's the, what's called the dorsal on log
14:00
and the ventral onlo, and these two little buds here.
14:03
And over the course of development, they, uh,
14:06
start to branch off.
14:08
And the ventral onlo, this tiny little, um, accessory part
14:11
of the pancreas swings around the right side
14:13
and the posterior side, dorsal side of the GI tract
14:17
swings over to the posterior margin of the, uh, the, the,
14:22
the dorsal on login
14:24
and eventually fuses the form, uh, the posterior half
14:27
of the pancreatic head.
14:31
And then the pancreatic duct forms,
14:33
there's the main pancreatic duct in the body
14:35
and the tail of the pancreas.
14:36
And then, um, the, the duct usually will, the majority
14:39
of the duct will drain as a duct
14:40
of rear song here towards the, the sphincter of OTI
14:44
and the amva.
14:45
And then there's variable appearance of the accessory, um,
14:48
pancreatic duct, also known as abductive Santorini.
14:52
This is a Grey's Anatomy photo of the, uh, of the pancreas.
14:56
And you can see here the pancreas is, um, basically, uh,
15:00
enveloped by the c sweep of the duodenum.
15:03
And, uh, you can see where the
15:06
ular forms along the medial portion of the second portion
15:08
of the duodenum.
15:10
And, um, and then in, in addition, the pancreas also, um,
15:14
uh, envelopes itself
15:16
around the superior mesenteric artery in vein.
15:19
And the, the mesenteric, uh, artery in vein help
15:22
to define the anatomy of the pancreas here.
15:24
So in relation to the pancreas, these are the anatomic terms
15:28
that we use to describe the different, uh,
15:30
locations in the pancreas.
15:31
You've got the pancreatic head, which is everything
15:33
to the right patient's, right of the mesenteric vein.
15:37
You've got the, um, pancreatic neck, which is just in front
15:40
of the, the mesenteric vein, the superior mesenteric vein.
15:43
And then the rest of the pancreas is divided in half by body
15:46
and tail portions.
15:47
And then there's an ate process, which is, um,
15:50
which is posterior to the mesenteric vein as well,
15:53
that tiny little, um, uh,
15:56
ventral the pancreatic ventral part that the, the, the pars
15:59
that the portion that used to be the ventral on
16:01
log of the pancreas.
16:04
There's also, um,
16:05
multiple ductal confluence variants that can occur.
16:08
Uh, you see the smooth muscles wrapping the, uh,
16:10
the confluence between the common bowel duct
16:13
and the pancreatic duct at the, uh, ula of Vader.
16:17
They, this common channel can be a varying lengths.
16:20
You can have a short common channel,
16:21
or no common channel at all,
16:23
where the ducts drain separately at the Ula.
16:26
Or you can have a long common channel
16:27
where sometimes the sphincter doesn't quite
16:30
envelop the entire confluence.
16:32
And this can result in reflux of pancreatic fluid, at least.
16:36
The theory is that there may be reflux of pancreatic fluid,
16:38
which can theoretically increase your risk
16:40
for choli doco seals.
16:42
And, uh, cholangiocarcinomas perhaps from chronic irritation
16:46
of the biliary re tree from pancreatic enzymes.
16:51
So the major ductal variants, uh, are, are here basically,
16:55
you, I showed you the, the typical
16:57
or the conventional ductal anatomy where you have most
17:00
of the drainage via the, the, um, the duct of ung
17:03
or the, um, the, the, the main pancreatic duct
17:06
and the duct of ung with, uh, variable, uh, appearances
17:10
or, uh, obliterated appearances of the accessory duct
17:13
or the duct of santorini.
17:14
Sometimes when the fusion of the ventral and the dorsal
17:18
and loin is incomplete, uh, drainage can, there,
17:22
there may be incomplete, um, convergence of the duct of ong
17:27
and the main pancreatic duct.
17:29
And the, in this case, the, the main pancreatic duct may,
17:32
um, drain completely by the duct of Santorini
17:35
or the accessory duct in what's called a
17:37
bank, a pancreas disease.
17:39
Vum. This is a abnormal, anatomic variant seen in about 10%
17:42
of all patients.
17:44
Uh, not all, uh, pancreas di vum.
17:47
In fact, most pancreas deum cases are not associated
17:50
with recurrent pancreatitis,
17:52
but a minority are, um, literature says 20 to 45%.
17:57
I see. I think that's, that may be on the higher side
17:59
as we increasingly recognize the, uh, the, the how common,
18:03
uh, pancreas deum is.
18:05
But, um, this is a, a variant
18:07
that you can see in 10% of individuals.
18:09
And then when the accessory duct is tortuous, um,
18:12
some people call this anep pancreatic.
18:14
I'm not sure if it's that much of a clinical relevance,
18:18
but it's just an interesting finding to, to see with a name.
18:22
This is a case of pancreas DI disease.
18:25
You can see the, the main pancreatic duct drains via the
18:28
duct of Santorini, and the duct of zone is separate,
18:30
basically, um, just draining the sennet process on
18:34
as a separate onset duct.
18:36
And the typical appearance is
18:37
that the common bowel duct in the pancreatic duct kind
18:39
of cross over each other, um,
18:41
and don't converge, uh, at the level of the pancreatic head.
18:44
And this is a 3D image showing you how, uh,
18:47
they are separate on ct.
18:49
Also, you'll see that the pancreatic duct will cross
18:52
anterior to the common bile duct
18:53
and drain separately from the CBD.
18:58
There is a variant of, uh,
19:00
of the visum called the dominant dorsal ducts.
19:03
So you may have, uh, what looks like conventional anatomy,
19:05
but if the majority of the drainage ends up happening via
19:09
the duct of santorini rather than the duct of then
19:12
functionally, they may, uh, function more like a duct, uh,
19:17
more like a pancreas di vum rather than a, um, uh,
19:20
rather than just conventional ductal anatomy.
19:23
Rarely, I guess, some of these patients can be, uh,
19:26
can have a, a, a recurrent pancreatitis, in which case, um,
19:30
a dominant dorsal duct syndrome may be present.
19:35
And then this, and they call this when the,
19:38
the ductal sanin is a little bit more dilated than the, uh,
19:42
the duct of, uh, this can be called a Santorini seal.
19:45
And then this is a little tortuous, um, duct of Santorini,
19:50
um, the so-called anep pancreatic.
19:55
Alright, another congenital variant
19:58
that's worth describing is, is the anular pancreas.
20:01
So if that ventral on login, that ventral bud
20:03
of the pancreas, um, doesn't completely migrate
20:07
around the dorsal half of the, the GI tract to, um,
20:12
converge on the pancreas if it, if it does that,
20:14
but it drags some of the ventral on login around,
20:18
and there's incomplete migration,
20:21
the pancreas may form a ring around
20:24
that second portion of the duodenum.
20:26
And this is called an annular pancreas.
20:28
And this, um, 3D image here, you can see
20:30
that there's narrowing of the lumen of the duodenum,
20:33
and sometimes you'll see a duct also, um, associated with
20:37
that anular, uh, parenchymal, uh, remnant of the pancreas.
20:43
And sometimes you'll see that pancreatic duct, uh, portion
20:46
of the pancreatic duct encasing the duodenum as well.
20:50
Um, this is seen in one in 2000 individuals,
20:52
and, uh, 10% of these cases may, may obstruct the duodenum.
20:56
They don't, most of them do not, uh,
20:58
but when they do, they often, uh, will present
21:00
as a pediatric patient this finding,
21:02
or as a neonate with this finding.
21:04
And it can be a cause in these cases
21:06
of gastric outlet obstruction
21:08
or biliary obstruction or pancreatitis.
21:13
Here are, um, multiple cases of, uh, an anular pancreas.
21:16
I'm showing it to you both in CT here
21:19
where you can see in this minimal intensity projection.
21:21
You can see there's a duct around the lumen
21:23
of the second portion of the duodenum here, as well
21:26
as excess pancreatic tissue around that second portion
21:29
of the duodenum on the this,
21:31
on these two coronal images here.
21:34
And you can see this very well on, on MRI as well.
21:37
So this is a, a great use of that.
21:39
Um, non-contrast T one fat saturated image
21:42
where the intrinsic T one hyperintense pancreatic tissue is
21:46
seen here to encase the, the second portion of the duodenum.
21:52
Next topic is ductal stones.
21:54
So, um, the CBD is identified in, in the, uh,
21:57
almost every MRCP and the sensitivities
22:00
and specificities in the, uh, the accuracies
22:03
for depicting ductile stones, whether it's, uh,
22:05
biliary ductal stones, which we more commonly look for,
22:08
or even pancreatic ductal stones is, uh,
22:10
certainly much better than that of ultrasound or ct.
22:13
It's now basically the test of the initial test of choice
22:16
for evaluating for ductal stones.
22:18
And there's an example of a stone in the common bile duct,
22:22
which looks like a filling defect distally plus minus, uh,
22:25
upstream, um, ductal dilatation on a thin cut,
22:29
you can better see that little meniscus sign
22:32
of a filling defect around filling defect within the lumen
22:35
of the distal duct here.
22:38
And when you're looking at, um, the coronal images,
22:41
whether it's a fixed slab
22:42
or a maximum intensity projection from a 3D, uh,
22:46
single shot, um, it's important to realize
22:49
that the maximum intensity projection images, uh, the,
22:53
the only, the maximum intensity pixels being projected
22:55
forward for you to look at,
22:57
and that may obscure visualization of smaller stones
23:00
that are, that are in completely obstructing the duct.
23:04
So it's, it's still important
23:05
to look at the source images in these 3D um, pulse sequences
23:09
to, to identify the individual stones
23:12
that may be obscured on the maximum intensity projections.
23:17
Here's an example of a stone within the pancreatic duct.
23:20
Um, I, I suppose some of these could form, uh,
23:23
theoretically from reflux in the CBD,
23:25
but more commonly they're identified in the setting
23:28
of chronic pancreatitis, uh, possibly from erosion of some
23:31
of the parenchymal calcifications into the duct, the,
23:34
the calcifications that you often see in the, in the, in,
23:37
in the setting of chronic chronic pancreatitis.
23:40
But they look just like a biliary stone.
23:42
Uh, here's a dilated pancreatic duct here at,
23:45
at the pancreatic neck and head,
23:46
and you can see there's a round filling
23:47
defect here distally.
23:49
And it'll look just like, um, like any other kind
23:51
of ductal calculus.
23:56
And when you're differentiating stones from strictures,
23:58
basically there are some features that help you, um,
24:01
make this differentiation, whether it's in the biliary tree
24:04
or in the, or in the pancreatic duct.
24:07
Um, malignant strictures tend to look more focal
24:11
with long segments of involvement and irregular margins
24:14
and maybe some asymmetric shouldering.
24:16
So these are examples of, uh, some, some, uh, long axis
24:19
and short axis views of the duct and,
24:21
and how they might appear, uh, in both views.
24:24
Whereas a, uh, benign stricture tends
24:27
to be a shorter segment.
24:29
It looks more, um, symmetric and smooth
24:32
and regular, uh, versus a stone, which will look like a, um,
24:36
a rounded filling defect with, uh, with a,
24:39
a meniscus sign here.
24:40
And it'll look more like a, uh,
24:42
circumscribed filling di defect within the dilated duct on
24:46
the transverse fuse.
24:49
And, uh, this is an example of, uh, the difference
24:52
between a stricture here
24:53
where you see the asymmetric shouldering
24:55
and long involvement of the, um,
24:56
of the distal CBD versus a filling defect in the distal CBD.
25:02
So, the next topic, you know, one
25:04
of the reasons why I discuss stones here is
25:06
'cause, um, one of the main reasons why we do MRI, uh,
25:09
in the setting of pancreatitis is to look for an etiology.
25:13
You know, they don't need us
25:14
to make the diagnosis of pancreatitis.
25:16
We don't always see the findings of pancreatitis on MRI.
25:20
Um, uh, they, the clinically, they'll, they'll know
25:24
that the patient has pancreatitis based off, uh,
25:27
elevated serum lipase and, and clinical presentation.
25:30
Um, but the, one of the main causes for pancreatitis is, uh,
25:33
gallstone cause gallstone pancreatitis.
25:35
So we're looking for the presence of gallstones, whether
25:38
or not they actually see them obstructing the duct or not.
25:41
But it's important to recognize the imaging features
25:43
of acute pancreatitis.
25:45
Typically, the, um,
25:46
the hallmark is gonna be per pancreatic edematous changes
25:49
the T two hyperintense signal, uh, either within the,
25:53
the pancreatic parenchyma
25:54
or the adjacent tissues, plus minus adjacent fluid, uh,
25:58
or fluid collections.
26:00
The pancreatic parenchyma itself may also appear
26:02
swollen and a deus.
26:03
And you may see not just per pancreatic fluid collections,
26:07
but, uh, the presence of pseudocysts, um,
26:10
or other complications depending on how long standing the,
26:13
um, the B of pancreatitis is.
26:15
Um, you can also look for evidence of necrosis, um,
26:19
in the form of either inhomogeneous enhancement
26:22
or areas of, uh, non enhancement.
26:25
And then what MR is particularly good at detecting is
26:29
the presence of hemorrhage.
26:30
So hemorrhage is going to look T one hyperintense even prior
26:34
to contrast administration.
26:36
And, uh, and MRI is also going to be a, a good way to look
26:40
for other alternative, um, causes other than gallstones, um,
26:44
for a pancreatitis, whether that's an anatomic
26:47
or an obstructive cause.
26:49
Here's a typical case of acute
26:52
and interstitial pancreatitis on, uh, MRI.
26:55
These two images are T two weighted fat saturated images in
26:59
the axial and the coronal plane here.
27:01
And you can see, um, a lot of T two hyperintense, uh,
27:04
edema within the interstices of the pancreas, as well as,
27:08
uh, uh, in the per pancreatic soft tissues
27:11
throughout the retroperitoneum.
27:12
It looks like it's extending into the,
27:14
the perineal space on the left side as well.
27:17
And then there's also some ascites in a peri splenic
27:20
and upper abdominal distribution.
27:22
And in the coronal images here, you can see a lot
27:25
of per pancreatic, um,
27:27
T two hyperintensity edema surround the pancreatic head.
27:30
And the third and the,
27:31
and the, um, the all around the duodenal sweep on, uh, pre
27:35
and post contrast, uh, T one fat saturated images.
27:38
You can see the preserved intrinsic T one hyperintensity
27:41
of the pancreas here, which does look a little swollen.
27:45
Uh, and then following contrast administration, you,
27:49
you will, you'll, you'll be looking
27:51
for homogeneous enhancement, uh,
27:53
to exclude necrotizing pancreatitis.
27:57
You're also gonna be looking
27:59
for other complications following, uh,
28:01
contrast administrations parti play particular attention
28:04
to the vessels, looking for any erosion
28:07
of arterial structures causing a pseudo aneurysm
28:10
or the thrombosis of the struc, other structures,
28:12
especially the spinal vein and, uh,
28:14
and superior mesenteric vein and portal vein.
28:18
Here is another typical appearance for acute pancreatitis.
28:21
Here you're seeing, uh, peripancreatic fluid collections on
28:24
the T two non-fat saturated image on,
28:27
uh, T one weighted images.
28:28
You're looking in particular at the intrinsic T one, uh,
28:32
signal for the pancreas.
28:34
In this case, you're seeing that there's a relative, um,
28:37
decrease in signal intensity in the pancreatic tail.
28:40
And, uh, with fat saturation,
28:42
you can also see hemorrhage extending, uh, anterior
28:45
to the pancreatic head.
28:46
In this particular case of a patient with, uh,
28:49
hemorrhagic pancreatitis
28:50
and following contrast administration, the lack
28:52
of enhancement in that pancreatic body tail here, uh,
28:55
which show you that there's also, um, the presence of, uh,
28:58
a necrotizing pancreatitis in the body tail as well.
29:04
And yet another case here, axial T two weight image.
29:07
Without fast saturation, it can be a little more difficult
29:09
to pick up the, um, the edema that you see better when you,
29:13
uh, look at a T two weighted pulse sequence
29:15
with fast saturation present.
29:17
So here you, again, you see the, um, the edema
29:19
and the pancreatic parenchyma here,
29:21
peri pancreatic T two hyperintensities consistent with, uh,
29:24
peri pancreatic edema.
29:26
And then looking at that, um,
29:27
pre contrast two unweighted image, um,
29:30
you can see there's a little bit
29:31
of in homogeneity in the pancreatic neck here, better
29:35
to evaluate that following contrast administration here,
29:39
where it's more obvious that in that pancreatic neck area,
29:42
there is an area of non enhancement, uh, which, um,
29:46
you can use the subtraction images
29:48
to make it even more apparent, uh, where there's a lack of,
29:52
of, uh, enhancement, especially if there's any in any, um,
29:56
heterogeneity on the pre contrast two weighted images
30:00
or if there's, um, presence of hemorrhage on that, uh,
30:03
pre contrast image, it may be easier to see that, uh,
30:07
on a subtraction image
30:08
where you subtract the pre contrast image
30:09
from the post contrast image.
30:11
And then in that same area of non enhancement,
30:13
you're seeing some very subtle mild CT hypo bone intensity,
30:17
which, uh, is another feature that you can see in, uh,
30:21
necrotizing pancreatitis.
30:23
So here looking for non enhancement T two hypo intensity,
30:26
as well as, um, uh, the other features that we,
30:29
we've discussed, um, in the setting
30:31
of interstitial embolous pancreatitis.
30:34
And yet another case here of, uh, necrotizing pancreatitis.
30:38
I'm showing you a CT here showing you the para pancreatic
30:41
fluid in addition to steatosis on the MRI, you can see
30:45
that edema to even better effect.
30:48
And then on the pre contrast T one weighted images,
30:52
you can see there's intrinsic TT one hyperintense signal
30:55
with a little bit of heterogeneity in the tail, kind
30:58
of subtle, but much more obvious following contrast
31:01
administration, where in the pancreatic body,
31:04
you're seeing this area of non enhancement, which in
31:07
retrospect, looking at that T two added image, again,
31:09
correlates to an area of subtle T two hypo intensity.
31:14
And the time interval between these two images
31:17
is about two days.
31:19
So that might be one explanation
31:21
for why you see the necrosis better on the MRI than than you
31:25
did on the, on the CT scan.
31:27
But, um, I think because ga gadolinium enhancement is
31:31
so much more apparent on an MRI, oftentimes the diagnosis
31:35
of necrotizing pancreatitis can be easier
31:37
to make on the MRI than on the initial ct.
31:43
Alright, another case in this case here,
31:46
I'm showing you a CT where there's relative hypo bone
31:48
enhancement in the, uh, ONT process of the pancreas here,
31:53
as well as, uh, presence of stats on the MRI on, uh,
31:58
T two weighted images with and without fat saturations.
32:01
You can see there's a little bit of focal, um,
32:04
uh, edema in that area.
32:06
But, um, on the T one pre contrast image,
32:10
you can see there's T one hyperintensity in
32:12
that uncinate process suggesting that, uh,
32:15
if it's more intense than the regular, um,
32:18
paren pancreatic parenchyma that may be suggestive
32:21
of hemorrhage in that location.
32:24
And then following contrast administration
32:27
and subtraction, you can see that area
32:29
that's hypertense on the pre contrast images subtracts out
32:33
from post contrast images, suggesting
32:35
that there's an a small area
32:36
of focal hemorrhagic necrotizing pancreatitis.
32:40
Uh, definitely, uh, something that would be easier
32:42
to pick up by MRI than on the initial ct.
32:47
And keep in mind that hemorrhagic pancreatitis is a,
32:52
um, a more urgent finding than other cases of pancreatitis
32:56
because of the, the theory behind the, um, the,
33:00
the hemorrhage is that it's thought
33:01
to be related to vessel erosion.
33:03
So, um, the finding
33:05
of hemorrhagic necrotizing pancreatitis should prompt, uh,
33:08
surgical consultation and possible intervention.
33:12
So that brings us to the, uh, Atlanta classification system,
33:17
uh, the revised Atlanta classification for pancreatitis.
33:19
So, acute pancreatitis is divided up into
33:23
two broad categories.
33:24
There's the interstitial emus, uncomplicated pancreatitis,
33:27
you know, uh, or non necrotizing pancreatitis versus
33:30
necrotizing pancreatitis.
33:32
So that's the first distinction you make based off, uh,
33:35
areas of non enhancement.
33:37
And then when you have fluid collections, uh, associated
33:40
with the pancreas, um, there, there's further branching
33:44
of these collections, depending on the time course,
33:46
whether it's, um, roughly within, uh, four weeks
33:49
of disease onset or longer than four weeks of disease onset,
33:52
basically trying to differentiate just per pancreatic fluid
33:55
collections from, uh, more organized collections,
33:59
which could represent either pseudocysts
34:01
or areas of Waldorf necrosis,
34:03
depending on whether you're talking about interstitial ems,
34:06
pancreatitis, or necrotizing pancreatitis, um,
34:10
less than four weeks after disease onset.
34:11
These pancreatic fluid collections are just, uh,
34:14
called acute per pancreatic fluid collections.
34:15
Whereas when you start to see a wall forming around them
34:19
and they start looking like they're more organized
34:22
and potentially drainable if infected, um,
34:25
we would call those pseudocysts.
34:26
And these tend to look more T two hyperintense
34:28
and, uh, simple in appearance on, uh, on mr if they're, um,
34:33
uncomplicated without infection or, or, um,
34:37
or, or other debris.
34:39
Whereas in the presence of necrotizing pancreatitis,
34:41
these fluid collections are called either acute necrotic
34:44
collections, if it's within, um, uh, their earlier onset,
34:47
uh, after disease onset, or if they are more organized
34:51
and walled off, that's when we call them
34:53
walled off necrosis.
34:55
And, um, walled off necrosis doesn't necessarily mean, uh,
34:59
they're sterile or infected.
35:01
That, that the distinction between, uh,
35:04
sterile collection versus an infected collection is largely
35:06
a clinical, um, differentiation.
35:09
Um, however, sometimes we can imply that, uh,
35:12
there's a higher likelihood
35:13
that a collection might be infected if we see gas
35:15
collections within it, and
35:16
that might be better seen on CT than mr,
35:20
and both these collections can be either intraparenchymal,
35:23
peripancreatic, or combined.
35:25
So this is the, uh, the revised
35:27
Atlanta classification system.
35:30
I'm gonna show you an example of a pseudocyst here.
35:33
Um, when you see a fluid collection next
35:35
to the pancreas in the setting of pancreatitis, uh,
35:37
if it communicates with the, the pancreatic duct,
35:41
that's even more, um, consistent with, uh, pseudo syst,
35:45
although you don't necessarily have to see that,
35:46
um, that appearance.
35:48
60% of pseudocyst will resolve spontaneously over time,
35:52
although, um, more complex pseudocyst,
35:55
either if they're enlarging, if they're hemorrhagic,
35:57
or if they're infected, some of these may require, um,
36:00
drainage, whether it's surgical,
36:03
endoscopic, or percutaneous.
36:05
And, uh, aspiration
36:06
of these collections usually yields aase.
36:09
There's another view of, uh,
36:11
of a slightly more complex sum case of, uh,
36:14
pancreatic pseudocyst,
36:16
where you have a per pancreatic fluid collection here
36:18
with a T two dark wall and, uh,
36:20
and lack of internal enhancement.
36:25
So next we're gonna go into some of the complications of,
36:28
um, of pancreatitis.
36:30
This is an ultrasound in somebody with a, uh,
36:32
pancreatitis presenting with abdominal pain,
36:35
elevated serum lipase.
36:37
Um, and, uh, on ultrasound, they saw
36:40
what they call the mass in the pancreatic head.
36:42
So this prompted further evaluation by ct.
36:46
And on the CT scan, you can see there is something
36:49
that looks mass like in the pancreatic head region, uh,
36:53
with some vessels displaced
36:55
or a faced, uh, along the medial margin here.
36:59
And then this was further evaluated by MRI
37:02
for a suspected pancreatic mass on, I'm, I'm,
37:06
I'll show you the, um, uh, I think for one reason
37:09
or other patient could not get, uh,
37:12
IV contrast, unfortunately.
37:13
But on the in and out of phase T one weighted images here,
37:15
you can see that, um, there are some areas
37:19
of intrinsically T one hyperintense signal,
37:21
which look different
37:22
with India ink artifact compared to the adjacent fat.
37:25
And on the TT weighted image,
37:27
there's some T two signal heterogeneity.
37:29
But because of this appearance with the, um, kind
37:32
of a T two signal heterogeneity in the center,
37:35
the peripheral margin of T one hyperintensity,
37:37
which looks different from the adjacent fat on the outer
37:40
phase images, the possibility
37:42
of a pseudo aneurysm was raised.
37:45
And, uh, whether you do it by CTA or MRA,
37:47
or if you just look at your arterial phase post contrast,
37:50
uh, MRI images, you're looking for, um, uh,
37:56
you know, a, uh, collection
37:58
or a structure attached to vessels, um, that's, uh,
38:01
consistent with a, uh, communication of the arterial tree.
38:05
So in this case, this was a pseudo aneurysm of the, um, of,
38:09
uh, the region of the, either the pancreatic duty or,
38:12
or GDA portion of the pancreas.
38:14
And any, uh, arterial structure around the pancreas can,
38:17
can, um, present with a pseudo aneurysm, uh, in somebody
38:20
with, uh, acute pancreatitis.
38:23
Other things you'd be looking for on those Mr.
38:25
A and MRV images
38:27
or the venous phase images would be, um, presence
38:29
of thrombosis as well as in in, in adjacent structures.
38:34
And then, um, here's another case of, uh,
38:37
a patient presenting with, uh, abdominal pain on CT and Mr.
38:42
TT weighted pulse sequences without fast saturation.
38:44
Here on the ct, you can see that there's, uh,
38:48
some wispy per pancreatic fatty stranding,
38:53
as well as a swollen appearance of the pancreatic, um,
38:56
parenchyma here, especially in the body
38:58
and tail, you can see there's also a kind of a, uh, uh,
39:04
a, um, margin.
39:05
There's a sharp, uh, encasement
39:07
of the pancreatic body on the CT images
39:10
and on the MR images, you can see that the, the, um,
39:14
pancreatic parenchyma look appears swollen.
39:17
There's, there's less of the feathery appearance
39:19
that you typically see, uh, on the, on MRI.
39:23
Um, and here, there, there also happened
39:25
to be some tiny little, uh,
39:27
cystic foci, which we will ignore.
39:29
But on the post contrast, MT one weighted images here,
39:32
you can see again that same appearance of, um,
39:35
perp pancreatic fatty stranding,
39:36
but also this sausage case appearance of, uh, of this kind
39:41
of, uh, enhancing capsule around the pancreatic body.
39:47
And in that case, this is a pa, a patient
39:49
with autoimmune pancreatitis.
39:51
This is that, that soft education, uh, appearance
39:54
of the pancreas is typical for autoimmune pancreatitis.
39:56
I'm showing another example here, multi-phase CT pre
40:00
and post conscious CT here, showing you
40:02
that diffuse swollen appearance of the pancreas, loss of
40:04
that, um, feathery soft tissue
40:07
and fat, uh, appearance of the pancreatic parenchyma
40:10
with a relative smooth margin, which shows, uh,
40:13
what looks like, uh, an area
40:15
of differential enhancement encasing the pancreatic body
40:18
entail here, also shown to good effect on the MR images
40:22
for the same patient T two fat saturated image.
40:24
Here, you could see that, um, sausage casing appearance, uh,
40:28
on the TT weighted images
40:30
and on the post contrast images as well.
40:33
So you can see the pancreatic parenchyma here with that, uh,
40:36
rind of tissue around the body and tail.
40:41
So, autoimmune pancreatitis, um,
40:42
type one autoimmune pancreatitis is associated with, um,
40:46
elevated serum IgG four.
40:48
So it is a common finding, uh,
40:51
and can be the presenting finding in patients with
40:53
IgG four related disease.
40:56
Keep in mind if, um, in these cases, if you're,
40:59
if you're proposing the, the possibility
41:01
of an IgG four related disease,
41:03
there are all their extra pancreatic findings
41:06
that you can look for to help, um, uh, increase your,
41:10
your confidence in making that diagnosis.
41:12
Many of these patients can present with, uh,
41:14
sclerosis and cholangitis.
41:16
They can also show renal pseudo masses or,
41:19
or, uh, areas of, uh, uh, uh,
41:22
interstitial nephritis in the kidneys.
41:24
They can present with retroperitoneal fibrosis.
41:27
You can see lung nodules
41:28
and ground glass opacities in the lungs as well.
41:31
Um, it is basically an immune mediated
41:33
fibroin inflammatory disease.
41:35
The typical imaging appearance in the pancreas,
41:38
which I showed you before, was this sausage pancreas with a,
41:42
a smooth, uh, appearance of the parenchyma with loss
41:46
of the loation and the variable appearance of this halo
41:49
or capsule of tissue around the pancreas.
41:52
Um, there may be a delayed enhancement relative
41:55
to a normal pan, to a normal pancreas.
41:58
And, um, there can be ductal narrowing
42:01
of the pancreatic duct in these areas without
42:04
upstream dilatation usually.
42:06
And typically, they don't show as many pseudocysts
42:11
as other cases of, uh, interstitial emus pancreatitis,
42:14
and can show less relative retroperitoneal fluid
42:18
and inflammation compared to other cases of pancreatitis.
42:21
And if the, if this diagnosis is being entertained, uh,
42:25
usually the next step is a trial of steroids,
42:28
and then you can follow up the images to see if it improves.
42:33
Here's, uh, an example of, uh,
42:35
extra pancreatic manifestations
42:37
of an IgG four related autoimmune pancreatitis.
42:40
In this case, this patient had renal lesions here,
42:43
which can look like renal masses.
42:45
Uh, um, it's difficult to differentiate from immuno masses.
42:49
Uh, they will look hypo.
42:52
The, the ones I've seen can look hypo enhancing
42:54
and diffusion restriction.
42:55
Sometimes they don't look very mass, like, uh,
42:58
it could look like a, an a bilateral lon nephritis, um,
43:02
without the clinical features, uh,
43:04
or, um, typical symptoms of pyelonephritis.
43:08
In this case. This patient also had a, a rind of soft tissue
43:11
around the aorta in a patient with, uh, an aortitis related
43:15
to IgG four related disease.
43:17
And here again, you can see T two hypo intensity,
43:19
renal masses, uh,
43:21
and, uh, uh, soft tissue around the aorta, as well
43:24
as an enlarged prostate, which is another finding
43:27
that you may see in some of these cases.
43:29
Uh, uh, prostatitis.
43:31
Other areas that can be, uh, affected by, um,
43:35
this autoimmune inflammatory response include the salivary
43:39
and the lacrimal glands.
43:40
So you can present with a, a sal Adenitis, um,
43:44
periorbital tissues, uh, lymph nodes, the thyroid gland.
43:48
You can present with a thyroiditis, uh, as well
43:50
as a prostatitis.
43:52
There are also findings
43:53
that have been described in the testes and the breasts
43:55
and in the pituitary gland.
43:58
So if you can make that diagnosis based off,
44:00
based off the spectrum of findings, oftentimes you'll,
44:03
you'll look like a, a hero,
44:04
because oftentimes, uh, the radiologist is the first one
44:08
to propose this diagnosis.
44:10
Um, the next topic is going to be, uh,
44:15
chronic pancreatitis.
44:16
So repeated bouts
44:17
of pancreatitis can result in atrophy and fibrosis.
44:20
Um, the, an imaging characteristic for this is not just, um,
44:24
dilatation and bead
44:26
and stricturing of the, the main pancreatic duct,
44:28
but you also see more side branch ectasia.
44:32
And the, uh, the biliary tree may also be dilated due
44:36
to fibrosis in the pancreatic head.
44:38
And, uh, now, RCP is, um, better than, uh,
44:42
better at characterizing moderate and advanced diseases, uh,
44:44
and not as good at being able to see earlier, uh, disease
44:49
as the side branch ectasia may be below the resolution
44:52
of MRI is a typical example of, uh,
44:56
chronic pancreatitis on a coronal thick lab image.
44:59
You can see, um, uh, dilated duct here
45:02
and side branch radicals, again here, dilated, uh,
45:05
pancreatic duct and, uh, biliary tree, um, with
45:10
that typical beaded appearance that's characteristic
45:13
for chronic pancreatitis.
45:15
And then the, um, last, um,
45:19
pancreatic functional related, um, topic I wanted
45:22
to address was, uh, secret
45:24
and enhanced, um, functional MRC ps.
45:27
Uh, we don't do a lot of these, but, um, but,
45:30
but some, you know, rarely we will get this, um, request
45:34
to evaluate pancreatic ductal function
45:36
or to better visualize the pancreatic tree by stimulating it
45:40
with, uh, with, uh, intravenous secretine.
45:43
So it's usually given
45:44
as 0.2 milligrams per kilogram dose by weight.
45:48
Uh, and you inject it very slowly over one minute.
45:51
And then you, uh, you obtain, um, fixed lab, um,
45:56
MRCP images, uh, at various time points over, um,
46:00
the, the course of the next couple minutes.
46:02
And then you get, uh, kind of a time course exam here, uh,
46:06
where the pancreatic duct should dilate in a
46:09
normal pancreas.
46:11
And then you can also try to quantify the amount of juices
46:14
that get end, that end up being excreted into the, uh,
46:17
duodenal lumen to try to, um, get a sense of, uh,
46:21
pancreatic exocrine function.
46:23
And then it also allows you
46:24
to get a better look at the sphincter of OD to assess
46:27
for any sphincter of OD dysfunction, as well as to, uh,
46:31
better evaluate the rest of the pancreatic ductal tree,
46:34
especially if it's a non dilated pancreatic, uh,
46:37
ductal, uh, duct.
46:40
And then I think the last topic I'm going
46:42
to talk about today is, uh, evidenced by this case here.
46:47
So I'm showing you a CT here, very similar to some
46:51
of the other cases I've shown you already
46:53
before, where you've got a CT image showing, uh,
46:57
peripancreatic fluid fatty stranding, a relative area
47:01
of non enhancement in the pancreatic neck.
47:03
But I'm gonna tell you, the presentation here is,
47:06
is not the same as the previous cases.
47:09
This patient didn't present with, uh, with, um, you know,
47:13
indolent abdominal pain.
47:15
This was a, a trauma patient who, uh,
47:18
suffered blunt abdominal trauma.
47:20
So, um, when you see non enhancement
47:23
or hypo enhancement in the pancreatic neck,
47:25
especially when it's right in front of the, um,
47:28
midline structures like the vertebral body, um,
47:33
you want to entertain the possibility
47:36
of pancreatic ductal transection for which MRCP is a, uh,
47:41
an excellent, uh, modality
47:42
to better evaluate the pancreatic, uh, the presence
47:46
of pancreatic, um, injury, as well as the status
47:49
of the pancreatic duct.
47:51
So here's a T one weighted outer phase image showing you
47:54
relative hypo intensity, uh, compared
47:57
to the intrinsically T one hyperintense pancreatic body.
48:01
And on the T two weight fa fast saturated image, here,
48:04
you can see a normal pancreatic duct caliber in the
48:07
pancreatic body with this area
48:09
of transection T two hyperintense laceration through the,
48:13
um, the pancreatic parenchyma.
48:16
And when they, when that laceration that you see on, on MRI
48:20
extends to involve at least 50% of the, um, thickness
48:25
of the pancreatic parenchyma,
48:27
there's a very high association with, um, uh,
48:30
a duct laceration.
48:33
So, um, so the main finding is a, a laceration
48:37
that's deeper than 50% of the thickness,
48:40
and then you'll oftentimes see the peripancreatic fluid
48:44
as well, which may be related to, to pancreatic, um, leaks.
48:49
This is what it looks like following contrast administration
48:52
during arterial and the venous phase.
48:53
Here you can see that lack of enhancement, again, not
48:56
to be confused in this case with necrotizing pancreatitis,
48:58
but, um, uh, pancreatic laceration involving, in this case,
49:02
more than 50% of that pancreatic, uh, thickness extending
49:05
to, to beyond the, um, the course
49:09
of the expected pancreatic duct.
49:12
And then on the fixed side images, again,
49:14
you can see the pancreatic duct of normal caliber
49:16
and then narrowing and non
49:18
visualized in the region of injury.
49:22
And, uh, this is a diagnosis it's
49:24
otherwise very difficult to make clinically
49:27
or on, uh, even on on ct,
49:30
but it's an important diagnosis to make
49:32
because, uh, it's, um, associated with very high
49:37
morbidity and mortality.
49:38
Mortality can be up to 20 to 50%, uh,
49:41
when the duct is disrupted.
49:42
And oftentimes the diagnosis is delayed, um,
49:46
because of, um, there's usually
49:49
multiple other associated injuries, uh,
49:51
when you do see a pancreatic duct, um,
49:53
or a pancreatic, um, laceration, uh,
49:56
hemorrhage in other organs, fistulas abscesses, sepsis.
50:00
There's a, there's a bunch of other, uh, complications
50:02
that are generally seen in these kind of patients with a,
50:06
with a very variable
50:07
and non-specific pre clinical presentation.
50:11
And then that might prompt, uh, any RCP to
50:14
actually demonstrate the ductal leak, uh, directly
50:17
with a contrast injection.
50:20
Alright, so that's a summary of, uh, my part one talk
50:24
for MRI of the pancreas.
50:25
We went over MRI principles and techniques,
50:28
and we went over a whole bunch of imaging pitfalls, uh,
50:31
particularly to MRI.
50:33
We went over the anatomy,
50:35
not just the embryologic development of the pancreas,
50:37
but, uh, ductal development
50:39
and the resulting ductal variants
50:40
that you can oftentimes see.
50:42
We went over stones and strictures, uh,
50:44
and the differentiation of those two
50:46
str, uh, findings on Mr.
50:48
Mrm RCP, as well as the, uh, findings of pancreatic
50:52
or, uh, findings of pancreatitis, both acute
50:54
and chronic, as well as various complications of, uh, of,
50:57
um, pancreatitis, including,
50:59
including necrotizing pancreatitis.
51:02
Um, we touched upon some
51:04
of the para pancreatic food collections as well as, um,
51:07
pseudo aneurysms.
51:09
And then last but not least, I wanted to touch on the topic
51:11
of, uh, pancreatic duct transections.
51:14
And, uh, with that, thank you very much.
51:17
I'm open to questions.
51:21
Thank you so much for sharing your lecture, Dr. Chang.
51:23
Yes. We will open the floor now for any questions.
51:27
If you've got a question, please pop that into the q
51:29
and a feature of Zoom, so we can work through as many
51:33
as we can before we need to close.
51:35
Okay, it looks like I have to stop sharing
51:37
to be able to see the, um,
51:39
Yeah, you might have to. No,
51:41
I found it. Awesome.
51:42
Mailbox box.
51:43
Okay, so let's see, multiple questions here.
51:55
Uh, so someone's asking about the sensitivity
51:57
of imaging findings of acute pancreatitis CT versus MRI.
52:01
I think they're both great for it.
52:03
I mean, keep in mind that, um, the, the goal
52:07
of imaging is not to make the diagnosis
52:09
of acute pancreatitis,
52:10
but to, uh, to evaluate for complications of pancreatitis
52:14
and causes of pancreatitis, whether that's gallstones,
52:18
whether there's biliary obstruction,
52:20
pancreatic ductal obstruction,
52:22
and obstructing mass in the pancreas,
52:24
or any of the other etiologies that I showed you.
52:27
I think MRIs better than CT in terms of the sensitivity
52:31
for finding the, uh,
52:32
the inflammatory changes in pancreatitis,
52:34
but I'm not sure exactly what the, the, the,
52:36
the actual numbers are behind that.
52:39
Um, uh, the other, the next question would be, uh,
52:43
how would you distinguish between focal necrotizing
52:45
pancreatitis and, uh,
52:46
hypo enhancing pancreatic adenocarcinoma?
52:48
That's an excellent question. There can be overlap.
52:51
We can't always differentiate focal pancreatitis
52:54
from a pancreatic mass.
52:56
Um, uh, that is definitely a, a known pitfall for
53:01
imaging of the pancreas.
53:02
Um, but, um, features would be, um, uh,
53:07
when I see a focal finding in the pancreas associated
53:11
with upstream ductal dilatation, uh, especially if there's,
53:13
uh, the lack of clinical findings that you'd typically see
53:16
with, uh, focal pancreatitis be more suspicious for, uh,
53:21
pancreatic adenocarcinoma.
53:22
In those cases, certainly follow-up imaging could also help,
53:25
um, resolution of findings.
53:27
You know, basically pancreatitis tends to be a waxing
53:30
and waning phenomenon, so
53:31
it should change an appearance over time.
53:33
But if, uh, if you have a persistent finding,
53:36
especially in the absence of, uh, pain
53:38
or elevated serum lipase
53:39
or other, uh, features that you typically associate
53:42
with pancreatitis, uh, that would certainly raise the, uh,
53:45
suspicion for, uh, pancreatic adenocarcinoma in, in,
53:49
in addition to the, the usual serum markers that you can,
53:51
um, run to, to elevate your, your suspicion for an a,
53:56
an focal adenocarcinoma.
53:59
And then there's certainly features
54:00
of pancreatic adenocarcinoma,
54:02
which I can get into in a part two of this lecture where,
54:05
um, you'd be, uh, more suspicious of an adenocarcinoma like,
54:08
um, um, vascular involvement, vascular encasement, um,
54:13
and, uh, obviously the presence of metastases.
54:19
All right.
54:24
So next question is, what do you do when you
54:28
find pancreatic calculi in the pancreatic head
54:32
and a dilated pancreatic duct, but you don't see a tumor
54:37
or in a pat or a mass in a patient
54:39
who never had pancreatitis?
54:42
Um, if I'm reading that correctly,
54:49
um, pancreatic calculus is not a typical feature
54:54
for a pancreatic mass.
54:56
So if I see a pancreatic ductal calculus, I,
54:58
I'll definitely mention it, especially if there's a,
55:00
an upstream d dilated duct.
55:03
Uh, it's a feature that we can see in the setting
55:05
of chronic pancreatitis.
55:07
Um, I think it's up to the gastroenterologist,
55:09
whether it's something that they want to go in
55:11
and try to fetch a stone for.
55:14
Uh, I guess it depends on whether they think
55:15
that the patient might improve, uh,
55:18
after, um, retrieving a, a, a stone from the, the duct
55:22
of a pancreat of a, of a pancreatic duct
55:24
and somebody with chronic pancreatitis, uh,
55:27
I've seen it be left behind in many, many cases.
55:30
I'm not sure if it's because, um,
55:32
there may not be significant, uh,
55:34
pancreatic exocrine function left, but, um,
55:37
but that's, it's definitely finding, I I will mention
55:39
to the, um, two our refers.
55:42
Whether it gets intervened upon
55:44
or not is, um, is another question,
55:47
but it's not typically something I see with a,
55:49
a pancreatic mass, a pancreatic mass, if it's associated
55:52
with ductal dilatation should look more like, uh, extrinsic,
55:55
uh, impression upon the duct.
55:57
And, uh, oftentimes more often than not,
55:59
I will not see the duct at the level of the mass.
56:02
So there's a finding called a, um, a duct penetration sign
56:05
that's been described where, um,
56:08
focal pancreatitis may narrow the, uh,
56:11
the traversing pancreatic duct.
56:13
But oftentimes on those thin cut TT weight images,
56:16
you may still see a trace of the pancreatic doctor, uh,
56:20
penetrating through the area of inflammation.
56:23
Whereas a pancreatic, uh, uh, a mass like an adenocarcinoma,
56:28
uh, often will, oftentimes will completely occlude the duct
56:31
with smooth upstream pancreatic ductal dilatation,
56:35
which is a different appearance than you typically see
56:37
with the dilated duct that you see
56:39
with in chronic pancreatitis.
56:40
So in chronic pancreatitis, you've got inflammation,
56:43
recurrent inflammation throughout the pancreas or fibrosis
56:47
or whatever the, um, the etiology of
56:48
that chronic pancreatitis is,
56:50
and it affects a duct in multiple locations.
56:53
So you get that beaded appearance rather than the smooth
56:56
upstream ductal delete that, that, uh, you'll see from a,
57:00
a single point of obstruction downstream, uh, from the duct.
57:05
And then, um, next question is the side effects
57:08
of secretin injection for MRCP.
57:10
I think the, the main one that, uh, that,
57:13
and the reason why we inject very slowly is
57:15
that it can cause nausea.
57:17
Um, we don't do a huge amount of them, so I have, I'm not,
57:21
uh, I don't, I don't often, uh, see what the, um,
57:25
other side effects for secretine injection might be,
57:27
but it is definitely a, a medication that's used, um,
57:31
relatively routinely in some, uh, ERCPs.
57:34
So it's, um, it's definitely a, a, a medication
57:37
that's relatively safe otherwise to give.
57:40
And then, um, somebody asked about
57:44
duodenal pan pancreatitis.
57:45
Certainly, uh, I, I can include that in a future lecture.
57:48
I should have, uh, remembered to put a slide in on that.
57:50
But, um, duodenal pancreatitis
57:53
or also known as a groove pancreatitis is, um, pancreatitis.
57:58
It's a, it's a form of mostly chronic pancreatitis
58:00
that occurs between the pancreatic head
58:03
and the, um, c-suite of the duodenum.
58:06
So it's often, uh, manifests as, um,
58:10
pancreatitis inflammatory changes in
58:12
that pancreatic duodenal groove
58:15
and, uh, is highly associated with, uh,
58:17
small pseudo sys in that location.
58:19
So it's got that characteristic appearance, uh, which, uh,
58:24
I, I, I'll show in a feature version of the talk.
58:27
Um, let's see. Next questions
58:34
somebody ask about, uh, pancreatic calcifications.
58:36
Could this be the only feature of chronic pancreatitis?
58:39
I think it can be, um, don't always see dilated, um,
58:42
docs in these cases, but typically pancreatic
58:45
calcifications, um, especially, uh,
58:47
when they're in multiple locations
58:48
and the pancreas are associated with, um,
58:50
with chronic pancreatitis.
58:54
Um, any tips for differentiating focal chronic pancreatitis
58:59
on a DC and dual energy ct?
59:03
Uh, good questions.
59:04
I'm not familiar with using, using a DC maps to, to
59:10
evaluate chronic pancreatitis.
59:12
Um, we do have a lot of dual energy CT at my institution.
59:16
Uh, I think the, the main feature, the main use that I use
59:19
for dual energy CT is on just looking there
59:23
or better accentuating the enhancement pattern
59:25
of the pancreas, particularly on the low, uh, KEV images
59:29
or on the iodine maps.
59:31
Um, uh, I think it also is a great way
59:34
to look at the vessels, um, especially the arteries
59:37
and veins, um, making sure that they're patent, uh,
59:40
in the setting of pan of, um, pancreatitis.
59:43
I'm not sure if I use dual energy
59:47
much in the evaluation of chronic pancreatitis.
59:53
And then somebody else was asking about severity
59:55
indices and grading systems.
59:57
There definitely are some systems out there.
60:00
I I don't tend to use them,
60:01
but there are multiple grading systems out there, uh,
60:05
which you can, uh, Google yourself.
60:08
Um, the next question is,
60:12
do pseudocyst communicate with a duct like an IPMN?
60:14
And the answer is yes. Um, when you see a cystic finding,
60:20
communicate with the duct, that narrows your differential
60:23
down to two possibilities.
60:25
One is, uh, an intraductal pap neoplasm,
60:28
and the other, the other is pseudocyst.
60:30
So, um, in those cases, the differentiation
60:34
can be made based off whether the patient is presenting
60:37
with pancreatitis or not.
60:38
But in the absence of, of that kind of a history, uh,
60:42
these are the ones where at least one follow-up is warranted
60:45
because a pseudocyst should change over time
60:48
or resolve, uh, in, in most cases,
60:51
whereas an IPMN will persist or maybe slowly enlarge.
60:56
So, um, so yes, both can communicate with the duct.
61:01
Next question.
61:06
So if you're unsure if an underlying pancreatic lesion is a
61:10
pseudo lesion from pancreatitis.
61:13
Um, when is the optimal imaging follow-up?
61:17
Uh, I'm not sure if there, if I'm aware of the exact, uh,
61:23
best time interval, basically.
61:25
Uh, uh, if, if it's acute pancreatitis,
61:29
I would follow up maybe in, I don't know, three,
61:32
three months maybe, or maybe
61:33
following resolution of symptoms.
61:35
Uh, I'm not, some kind of a follow-up would be,
61:38
um, would be good.
61:40
I'd have to there, there you could look at the, um,
61:45
there are some papers out there that will describe
61:47
what the imaging follow-up time interval is.
61:49
But, um, some, uh, reasonable amount
61:51
of time would be, uh, would be good.
61:53
I don't exactly know what the, the best timing is.
61:55
Usually I leave that up to the gastroenterologist to, uh,
61:58
to decide, uh, an optimal time interval.
62:00
But, uh, in the absence of, uh, of an opinion from them,
62:04
I would say within three months.
62:06
And then, um,
62:13
the next question has to do with hepatocellular carcinoma,
62:15
which is not relevant to this talk.
62:17
And then last question is, uh, relevance
62:21
of 40 flow MRI in assessing
62:23
vessels of the pancreatic region?
62:24
That's an interesting, uh, question.
62:26
I have seen some 40 flow papers out there looking at, um,
62:30
uh, mesenteric and, and, uh, portal venous flow.
62:34
Uh, it's definitely something
62:36
that I've seen done in research.
62:37
I don't know of many places using 40 flow
62:42
to look at the flow patterns.
62:45
Uh, and especially for pancreatitis.
62:47
Usually it's more for evaluation for portal hypertension,
62:50
but, um, but 40 flow is not, uh, in our, um,
62:54
routine clinical armamentarium for pancreatic imaging.
63:00
And then one last question here is,
63:02
in the pseudo aneurysm case, how can you differentiate
63:06
hemorrhagic pancreatitis without contrast?
63:12
So hemorrhagic pancreatitis on MRI, you can make that
63:16
diagnosis without contrast.
63:17
On the T one fat saturated image, we use M Dixon.
63:20
There's a whole bunch of other, um,
63:22
pulse sequences out there, like vibe and uh, and,
63:26
and, uh, lava and whatnot.
63:28
But basically you're looking
63:29
for persistent intrinsic T one hyperintensity, um,
63:34
greater than that of the normal pancreatic parenchyma.
63:37
And in those cases, especially if they're associated
63:39
with areas of T two signal heterogeneity, you can, um, um,
63:44
raise a suspicion for hemorrhage.
63:46
Um, in those cases, in fact, it's a, it's a diagnosis
63:49
that I, that I, uh, get more suspicious
63:52
of on the pre contrast images rather
63:54
than the post contrast images.
63:55
The post contrast images can often mask the findings
63:58
of hemorrhage because the, the other structures
64:02
around there, including the pancreatic
64:03
parenchyma enhanced as well.
64:05
So it's definitely something I see more easily on the, um,
64:08
the pre contrast images.
64:11
Alright. And then the, the last question, another, uh,
64:16
last minute question here is, um, important sequences
64:19
for complicated pancreatitis
64:23
or, uh, yeah com uh, uh, I'm gonna interpret that
64:26
as complex pancreatitis.
64:29
So you wanna look at all the pulse sequences, I'm assuming,
64:32
um, complicated pancreatitis,
64:34
you mean necrotizing pancreatitis
64:36
or pancreatitis with adjacent fluid collections?
64:39
Uh, basically it'd be, uh, looking at the,
64:44
i I look at the T two weight images for fluid collections.
64:47
Um, looking for organized fluid collections, uh, especially,
64:52
uh, the presence of pseudocysts
64:54
or walldorf necrosis to differentiate
64:57
walldorf necrosis from pseudocyst.
64:59
I look at how complex the collections are as well as
65:01
what parts of the pancreas are involved.
65:03
Uh, if you see, if I see fat content like, um,
65:07
peric pancreatic necrosis, um, the fat content within some
65:11
of these complex collections would tip you off to the,
65:14
the presence of per per pancreatic necrosis rather
65:17
than a pseudocyst.
65:19
'cause a pseudocyst shouldn't contain fat.
65:21
Um, other findings I'd be looking for would be the presence
65:24
of, um, gas on T one weighted in
65:27
and out phase, um, gradient echo pulse sequences.
65:30
So if you see bubbles that look like they're blooming or,
65:32
or looking more T two dark on the endphase muc compared
65:35
to the out phase images, that would be the MR findings
65:38
for, for gas content.
65:40
Although definitely it would be easier
65:42
to see on a CT scan than an MRI.
65:45
And then otherwise just looking at the multi-phase post
65:48
contrast images for, um, for the enhancement pattern
65:51
of the pancreas itself.
65:53
So I think that was our whirlwind of, um, of questions.
65:58
I think you got 'em all. Yeah, that was like 15
66:02
Rapid fire. Yeah.
66:04
Well, thank you so much for your lecture
66:06
and yeah, for answering all those questions.
66:07
We so appreciated you being here today. Oh,
66:09
My pleasure. Thank you very
66:10
much for the invitation.
66:12
Absolutely. And thanks to everyone else
66:14
for participating in this NOOM conference
66:16
and asking such great questions.
66:18
Be sure to join us next week, Thursday,
66:20
March 13th at 12:00 PM Eastern, where Dr.
66:23
Myan Ho will deliver a lecture entitled,
66:25
A Practical Approach to Neonatal Brain Imaging.
66:28
You can register for that@mrionline.com
66:30
and follow us on social media
66:32
for updates on future NOOM conferences.
66:34
Thanks again for learning with us and have a great day.