Interactive Transcript
0:00
So we'll start with this one.
0:02
The first case is, it's kind of consistent with the,
0:06
with the plan of, of evaluating abnormal,
0:11
uh, echocardiographic findings for evidence
0:14
of congenital disease.
0:16
And one of the advantages that cardiac CT really does have
0:19
is, uh, the ability to assess
0:22
that anatomy in a three-dimensional space, really
0:25
with no limitations.
0:27
You have high definition, uh, thin slices, up
0:30
to half a millimeter in, in thickness,
0:33
and you have the ability to really manipulate the volume in,
0:36
in different ways.
0:38
This particular case, it's important
0:40
that when you protocol your echos
0:43
or your cts, you wanna make sure that you want,
0:45
then you have a biphasic injection, meaning, as you can see,
0:50
we give about 70 to 85 milliliters of contrast
0:55
at a rate of five to six milliliters per second
0:58
with a saline chaser.
1:00
This allows us to kind of use that as a screen to assess
1:04
for any evidence of anomalous, uh, findings
1:07
or any other congenital disease, particularly left
1:10
to right shunting, as the timing of the contrast should be
1:14
gated in a way that it optimizes left-sided structures
1:18
in such a way that if there is a significant left
1:21
to right shunt, you should be able to, to see how the,
1:25
the brightness is nearly equal.
1:26
The attenuation is nearly equal in both the left
1:29
and the right side of the part.
1:30
This particular case, we use the axial image to kind of see
1:33
where theano, the anatomy could be fine
1:36
or abnormal anatomy could find.
1:38
Here you see a persistent left-sided SPI vena cava
1:41
that is coming right into the coronary sinus
1:43
and it's dilated.
1:45
And in the axial images, which is
1:46
what I strongly recommend you do, I always try to make sure,
1:49
um, intentional about looking this at the SPI vena cava.
1:53
The SPI vena cava should be coming on this corner,
1:56
and I always look to see if there's any evidence
1:58
of connections in this particular case.
2:01
You can see how this pulmonary vein connects into that,
2:05
uh, vena cava.
2:07
And here another one connects,
2:08
and eventually you have this large connection
2:11
between the left atrium and itally.
2:14
What is the right atrium?
2:15
And that's by definition the, the sinus benno.
2:19
So what I do, once I identify that anatomy, I try
2:23
to get my images in a way that I can assess the sve cava
2:27
and the in the venosus defect.
2:31
So one of these things to do is simply just put your cross
2:33
hairs where the artifact is
2:35
or where the orifice is just like I did,
2:38
and then look at it in this, uh, coronal orientation
2:41
and here this coronal orientation, you can clearly see one
2:45
and two anomalous pulmonary venous returns coming
2:47
into the intra.
2:49
That severe ven fairly easy to assess
2:51
and more importantly, becomes very easy to assess
2:54
how the connection of the left atrium leads
2:57
into the right atrium.
2:58
You can see that entire connection.
3:00
Once you see that, then the challenge becomes, okay,
3:03
how do we line things up to be able to measure and,
3:06
and identify the defect?
3:08
And right there, there's your or a SD
3:12
and how essentially is contributing to
3:15
that significant shunted remodeling?
3:17
And you can clearly see it here.
3:19
Another option that you can do
3:22
if you wanna stay more consistent in a,
3:24
in an anatomical approach, again,
3:26
you can make your short axis or chamber view orientation
3:31
and kind of scroll through the atrial septum,
3:34
and you'll be able to see how
3:36
this connection becomes that connection.
3:39
Okay? So you can see how from here,
3:43
you go right into the right atrium,
3:45
and that's what makes this very difficult
3:47
to see on echocardiography.
3:49
Very difficult to see in transesophageal echocardiography
3:52
given your intention, but you can tell
3:54
how the ventricular dilatation on this right side is
3:57
leading, it's from that congenital defect.
4:00
Okay? Outside of that,
4:02
you can measure the right ventricular chamber dimensions,
4:04
and you can see how dilated that, uh,
4:07
the ventricle really is on the right
4:10
side compared to the left side.
4:12
And the significant findings with this, you obviously need
4:15
to get further evaluation for this,
4:17
but when you see this, you can essentially report
4:19
that there is not only the presence of, uh, sinus,
4:22
but no citracal defect
4:24
with an anomalous pulmonary venous return,
4:26
but you also have right-sided chamber enlargement in a
4:29
dilated pulmonary artery that tells you you have quite a bit
4:33
of, of, of pulmonary hypertension.
4:36
Okay? So that's that first case follow along
4:40
with the same kinda pattern.
4:43
In this particular case, we have a little bit more complex
4:45
of an anatomy, and this is an example of, uh, of a symitar
4:49
uh, syndrome patient, which, you know,
4:52
this is the constellation of unique findings that,
4:55
that make the symitar.
4:57
This is a very rare variant
4:59
of an anomalous pulmonary venous return.
5:02
This always occurs on the right side
5:04
and is characterized by the anomalous drainage of part
5:07
of the entire right lung into the inferior vena cava.
5:11
This also leads into the hypoplasia of the right lung
5:14
and the right pulmonary artery.
5:16
And then you can also get sometimes
5:17
or pulmonary collateral vessels, hypoplasia
5:21
of the left heart, a diaphragmatic hernia,
5:23
and oftentimes pulmonary sequestration, right?
5:27
The, the adult variant of it is really not something seen
5:31
with pulmonary hypertension is very rare.
5:34
So the fact that, you know, we were able
5:36
to identify this in a,
5:37
in a military service member made it kind
5:39
of unique in this presentation.
5:41
So again, keeping in touch with our consistent approach,
5:45
we look at the vena cava, we see
5:47
how there's near equal attenuation of both chambers.
5:51
You get into the inferior cava, which is very much dilated,
5:54
and you can clearly see
5:55
how this anom bone nerve vein connects into that vessel.
6:00
Yes, okay.
6:04
I'll wait for you to finish your question,
6:07
but I add this is, this is a big return once you have this,
6:11
and again, you can simply keep the sagittal view into place,
6:15
and in this TAL orientation, you can really see how the,
6:20
the pulmonary vein clearly returns right into this,
6:24
into this inferior ven cva.
6:26
So once you do that, you have that.
6:29
Uh, and in this case, you know, we never use see this,
6:32
this requires usually surgical intervention.
6:35
Uh, they repair for this,
6:37
they create like essentially a baffle,
6:39
or sometimes they even take, are able
6:40
to take this pulmonary vein
6:42
and directly connect it into the left atrium to avoid that.
6:46
Uh, usually a ventricular aneurysm or dilatation.
6:50
With this, it can happen, it, it hits a,
6:52
it's a volume dependent, um, lesion.
6:58
So it can occur particularly in the absence of, of like,
7:03
uh, uh, atrial septal defect, und septal defect.
7:07
But that's what makes this unique.
7:09
A lot of the time the anatomy gets a little bit distorted
7:12
because you have the hypoplasia of the, the right lung,
7:16
so it kind of affects this.
7:17
But when you put this in a true, uh,
7:20
four chamber short axis orientation, if you were
7:23
to look at the true right ventricle, a lot
7:25
of the quote unquote enlargement that we would expect,
7:28
is it really much enlargement?
7:30
A lot of it ends up being the asymmetry of
7:33
how it sits in the anatomy.
7:34
And this could give you a false reading
7:36
for a dilated, right ventral.
7:39
This is where MRI comes in and becomes more helpful
7:42
because it can help you determine the right ventricular
7:46
volume and index for, for that,
7:49
and then help you determine if you have a dilatation or not.
7:53
Okay. Very good. Any questions?
7:58
Other questions about this particular case?
8:03
No. Okay. Wonderful, wonderful.
8:06
All right, so now case three.
8:08
I thought case three is one of those trickier cases
8:12
that we had in the whole course.
8:15
Given the, the kind of quality of the exam, we,
8:18
we debated many times whether
8:20
or not to include this case, no.
8:24
So general ventricular volume is not necessary on ct.
8:27
I usually report volumes of the left and right ventricle.
8:32
If you have 20 phases of the cardiac cycle,
8:37
meaning you wanna have the entire cardiac cycle to be able
8:40
to measure true diastole and true systole.
8:44
So if you have either a retrospective skin, if you have a,
8:47
you know, routine 64 up to like 132,
8:52
uh, detector row scanner,
8:54
or if you have like a volumetric scanner, you know,
8:57
those 320 large, uh, you know,
9:01
mo large detector row scanners that can do the entire c axis
9:05
of 16 centimeters in a single ganter rotation,
9:08
then if you do that prospectively at zero to 10 per zero
9:11
to 95%, then you're able to get the entire cardiac cycle.
9:16
If you have the right contrast attenuation on the right
9:19
ventricle and the left ventricle,
9:20
you really have all the information you need
9:23
to report ventricular volumes.
9:25
But in the absence of having all the cardiac phases
9:28
and the entire, uh, cardiac cycle,
9:32
I usually don't provide volume measurements
9:35
or ejection fractions.
9:37
I just use linear dimensions by
9:39
wherever it mid diastole if it, if it's provided.
9:42
Does that make sense? But you can do the same measurements
9:47
as you can on MRI.
9:48
With this, theon has a very easy, uh, left ventricle,
9:52
right ventricular ejection fraction button that we're gonna,
9:55
I'm gonna show you how to use that on,
9:57
on the, on the next case.
9:59
Okay, very good. Yeah.
10:03
Now for this case, you know, again, kind of keeping up
10:06
with the cha with the case, you can see
10:08
that there's definitely a very dilated pulmonary artery,
10:12
and the question is to kind of look at the pulmonary veins
10:15
to see where they are in location.
10:17
But the tips and tricks
10:18
that I would recommend you always do when assessing
10:20
pulmonary veins is to put your cross hairs here
10:23
where the green plane intersects the left
10:25
and right pulmonary veins.
10:26
And this should be able to give you a quick scroll
10:30
through to assess the anatomy.
10:31
You can see that there are one two
10:32
pulmonary veins on this side.
10:34
You can see that there are also one
10:36
and two pulmonary veins on this side,
10:38
but then you can clearly see here
10:40
that there's this other pulmonary vein that makes its way
10:43
through and, and connects into the VNA cava.
10:48
So when you do that, it makes it relatively easier to, uh,
10:52
to evaluate and assess.
10:53
So let me show you, uh, reset orientation.
10:57
You can see right up here, right where we suspect
11:01
right in here, it's where you see that vein come in
11:06
and connect right into the sphere of vena cava.
11:09
And the reason why we kinda picked this case is subtle.
11:12
Uh, the contrast timing was a little bit off,
11:15
but it becomes one of those things that is difficult
11:18
to, to miss.
11:19
The nice thing about this case is also there's not an
11:22
associated sinus osis defect.
11:25
So the degree of pulmonary hypertension, the patient's age
11:29
also contribute to that.
11:30
Whether or not this is is a significant shunt
11:33
or not in this particular case, you know,
11:37
because the patient 65 years of age
11:40
and without the sinus venos, a SD is less likely
11:44
that the anomalous pulmonary renal return is contributing
11:48
to the dilatation of the right ventricle
11:50
and pulmonary hypertension, particularly given the history
11:53
of risk factors that she has.
11:55
So, and this is important just to kind
11:57
of remember those things in place
12:00
and, you know, just noted, uh, you know, whether
12:04
or not that needs further evaluation.
12:06
Okay, now we're gonna move on
12:10
to the next case, which is case four.
12:13
And this will be a, a, a TAVR case.
12:15
And I wanna split this into two components.
12:18
We're gonna evaluate the, the heart in,
12:22
in a two-pronged approach.
12:24
We're going to first thing look at the heart and,
12:29
and measure the, the systolic function
12:34
and chamber dimensions.
12:35
And the reason why I usually start my TAVR cases in this
12:39
approach is kind of get an overall bird's eye view of
12:42
what I'm going to be needing.
12:44
I like to align my cross hairs in a four chamber
12:47
orientation just like this.
12:51
And then once I'm in this position,
12:53
I usually like to place play.
12:55
And now you have all the information you need
12:58
for assessment of wall motion.
12:59
You can see the wall motions on the in interior
13:03
and inferior walls.
13:04
You can see the interior septum, the inferior lateral walls.
13:07
You can scroll through here
13:09
and you can see the anterior inferior anterior septum,
13:13
inferior lateral, inferior septum, inferior lateral,
13:16
anterior lateral, inferior lateral walls.
13:18
And you can assess for wall motion abnormalities,
13:21
wall thickness, and obviously volumes.
13:24
Terra recon does have this option on this where if you click
13:28
LVEF, oh, apparently I don't have the license on it, uh,
13:32
but technically all you do is click on this
13:35
and then it will essentially trace the ventricular volumes
13:39
just like on MRI
13:41
and be able to kind of give you an injection fraction value
13:44
as well as volumes that if you provide the patient's height
13:49
and weight, we'll actually index it
13:51
and you'll have that information.
13:53
In this case, you can see
13:54
that the ejection fraction is relatively normal.
13:56
You don't see any significant wall motion abnormalities
14:00
or areas of hypokinesis kinesis or,
14:04
or other functions.
14:05
I strongly recommend that when you do have this,
14:08
that when you report your reports
14:11
that you provide the specific information
14:13
for not just the chamber size, obviously you do have that,
14:16
but the wall function,
14:18
the regional wall motion abnormalities,
14:21
how the myocardium thick, you can see that this,
14:23
my current is definitely thick.
14:25
And then the pattern in which is thick
14:27
and it's in a concentric pattern, as well as
14:30
to note any other findings involving the myocardi,
14:33
which can include, you know, mitral annular calcification
14:36
that you can kind of see here in ob mitral annulus, as well
14:39
as other important findings.
14:41
Once I get all of that information evaluated, I like to kind
14:46
of get back into the anatomy of the valve
14:49
that I'm going to be doing.
14:50
So while I can start pulling up information on the aortic
14:53
valve, I usually like to align my planes in an orientation
14:58
that allows me to really see a couple of items.
15:01
One, where's the left ventricular outflow tract?
15:05
Is there any evidence of calcification in it?
15:09
Is there any evidence of other abnormalities?
15:12
And then last but not least, what do the leaflets
15:14
of the bowel look like in this particular case?
15:17
You press play and you can see
15:19
how there are 1, 2, 3 leaflets.
15:23
They all open and close. There's no fusion of the leaflets.
15:27
This is separate, this is separate, these are separate.
15:30
So this is what makes a tricuspid aortic valve
15:33
easy to identify.
15:34
And sly. As you come up into thes tubular junction,
15:37
you can see this indentations for each of the areas
15:40
where the cusp are separate,
15:42
and you'll be able to track all three
15:44
of 'em into the sano tubular junction,
15:45
which is another thing that you can use to kind
15:48
of help guide whether or not you have a tricuspid versus
15:52
bicuspid aortic valve.
15:54
And here you can get a lot
15:55
of information about the aortic valve.
15:57
Where's the leaflet thickening, where is the calcification?
16:01
Is the calcification asymmetric? Is it symmetric?
16:04
Is there outflow track, uh, calcification, if it's, so,
16:08
is there a small amount, large amount?
16:10
Is it flat? Is it protruding? Is there a centric?
16:14
All those informations are part of the TAVR template.
16:17
Now, we gave you a TAVR template that you can use
16:20
to pro start providing the structural cases
16:22
that are consistent with the A-S-C-C-T and a CR
16:27
and all the other interventional cardiology structural
16:30
societies for the proper reporting of TAF R cases.
16:34
Now for the sake of time, I'm going to go ahead
16:38
and just load the previous measurements that I had made
16:41
for this, but you know, essentially you're going
16:44
to bring inter recon all of the systolic faces of the heart
16:49
and kind of line things up for you
16:51
to assess the orientation.
16:53
Now, when it comes to assessing these, it,
16:56
it really varies on the software that you have
16:59
and your, your experience aligning things for where the left
17:04
or when the right uh, leaflets are located,
17:08
and more importantly, how to align the annulus.
17:11
One of the things that I'm going
17:12
to show you once this finishes loading is how to kind
17:15
of get your plane into view so that you can easily tag
17:20
or mark where the right coronary cause leaflets are located,
17:24
where the left coronary cause leaflets are located.
17:27
And so one of the things that you first want
17:29
to do is you always wanna go to the phase in systole
17:33
where your annulus, which is this structure of interest, is
17:38
widest in diameter, has the sharpest or cleanest dimensions,
17:43
and allows you to make the easiest measurements.
17:46
Now if you look at your cross hairs, you can see how
17:49
we align the cross hairs in a way that this plane
17:53
intersects at the bottom of the right coronary cusp leaflet.
17:57
And as you look on this orthogonal orientation,
18:00
this plane literally intersects both on this leaflet,
18:03
which is the left coronary cus
18:05
and then the non coronary cusp leaflet right
18:07
along the same plane.
18:09
Essentially, you want your cross hairs
18:11
to be adjusted in a way that your annulus looks like.
18:15
There are no visualized segments
18:17
of the aortic valve leaflets.
18:20
That's the challenge. Depending on the software
18:22
that you have, for example, uh, Vitria
18:26
or Toshiba Canon software allows you to kind of scroll down
18:30
and then put a marker on it to tag it, uh, single via
18:35
with, uh, Siemens also allows you to do something similar
18:38
where you just scroll down and it's semi-automated there.
18:42
The vessel leaflet allows you to just put a tag.
18:45
Terra recon kind of has a little bit of its limitations
18:48
where it doesn't quite let you do that, so you kind of have
18:51
to line up and tell it where they are
18:53
because if you don't have it at least
18:55
oriented in an oblique orientation, it's not going to do
19:00
1, 2, 3, it wants you to do it on the same plane.
19:03
But again, it's, it's, it's important
19:05
for you to be able to do that.
19:07
Once you do that, then you'll be able to draw the perimeter
19:10
and, you know, on the case discussion, as we've mentioned,
19:13
you want to ensure that when you are drawing this,
19:16
that you try to get the diameter in a way
19:19
where you don't use your pre hand to kind of trace this,
19:22
you want like the spline
19:25
manual play segment points connected by a cubic spline
19:28
with like interpolation, kinda like an elastic ruler
19:31
because that's what's been studied
19:33
to have the highest number of, of, uh, accuracy.
19:38
Once you have your landmarks, you kind of have
19:40
to set up your, your views and,
19:42
and what's really interesting about these views is where,
19:46
where the leaflets are located, where are the
19:50
angles located, et cetera.
19:52
So one of the things that I would tell you when it comes
19:55
to finding out where these are is always trying
19:59
to use your orientation
20:01
where you can see the three cost leaflets.
20:03
You can see your, uh, orientation
20:06
and I'll tell you, uh, terra recon has a very nice, uh,
20:11
protocol within their post-processing
20:13
and their workflow that automatically lines things up in a
20:17
three cusp view, an anterior view and a non cranial view.
20:21
And it'll provide you the, the angulations for this
20:25
for your report without any challenges.
20:28
Another way that you can do this is if you go
20:30
to fluoroscope, you see how you can see this cusp,
20:34
you wanna line this up to where you can first see
20:37
where the left, right
20:39
and non coronary coastal leaflets are aligned in plain
20:43
your nest orientation.
20:44
You're gonna want a simple overlap of the left of the right
20:49
and non coronary cusp.
20:50
That's another number that you're gonna need.
20:53
And last but not least, the deployment view is gonna be
20:56
where the right
20:58
and the left coronary cusps kind of come together, see that?
21:02
So it'll provide you that orientation
21:04
where these two overcome,
21:06
and that way you're able to mobilize
21:08
and assess those three leaflet costs in each one
21:11
of the orientations.
21:12
Okay, last
21:14
but not least, when you have the annulus, uh,
21:18
here in the landmarks I have it, it allows you
21:20
to make those traces.
21:21
The next set of measurements is, uh,
21:25
where the cusp leaflets are.
21:27
So you're going to measure the origin of the left coronary,
21:32
uh, artery from the plane where you are to the bottom
21:37
of the coronary artery.
21:38
That's where that measurement is made.
21:40
Usually I like to kinda tag along
21:43
and scroll around to be able to see it
21:45
and then find where that is.
21:47
At that same time, I encourage you to measure the sinus
21:50
of the left cusp to be able to get that measurement.
21:53
And same for the right, you wanna get the height
21:56
of the right coronary cusp
21:58
or the origin of the right coronary arties, as well
22:01
as the height of the sinus over salva on that right side.
22:06
Okay? Questions.
22:12
Okay? Once you have those measurements,
22:15
then you can start moving into some
22:17
of the other measurements that are equally important,
22:19
which is your synott tubular junction, your sinus diameters,
22:23
your mean diameters that are important to do that.
22:27
One thing that's different in TAVR cases different from
22:32
what we've seen in other cases is
22:34
where you measure the sinus of Valsalva measurements.
22:39
In TAVR cases, we do this sinus to commissural measurement
22:43
and sinus
22:45
to commissional measurements on each one of these three.
22:47
So I usually report these three
22:49
and provide a picture for it.
22:51
After that, then you start looking into your synott
22:54
tubular junction measurement.
22:56
And this is one where I usually like
22:58
to go off the plane if needed.
23:01
In this particular case, you can see
23:03
how I'm pretty much lined up with the same tubular junction,
23:05
so it makes it much easier for us to do.
23:08
But you make your measurements here
23:10
and then all the way through the abnormality,
23:13
and again, you document it.
23:15
And last but not least,
23:16
you get into the ascending aorta at the
23:18
widest dimensions for that.
23:20
And again, you want be in direction to the blood flow
23:23
or where the vessel is largest,
23:24
and you're gonna make that measurement as best as you can.
23:28
Okay? Okay, questions.
23:32
Now, what you're going to get
23:34
to next is you're gonna wanna have an assessment of the,
23:38
uh, of the vessel.
23:41
So in this particular case, you're gonna bring your, uh,
23:45
aorta measurements, your axial measurements,
23:48
and then bring it into this workflow.
23:50
There should be a TAVR workflow that allows you
23:52
to bring this into it and it will automatically do this.
23:57
No, right? Where you get to do this is
24:00
where the challenge sometimes occurs is getting into this
24:04
vessel and then getting terra recon to kind
24:08
of just give you the vessel of interest.
24:10
In this particular case, the aorta.
24:12
So if you press shift
24:14
and you go to measurements, right, it's going to do the,
24:19
uh, this, the aortas.
24:22
If you click this curve multiplayer reconstruction button,
24:26
it'll ask you, do you want me to do it manually
24:28
or do you wanna do it, uh, automatic?
24:32
So you can do auto, okay, present
24:37
and then list.
24:40
It's going to go through the list of these.
24:42
So let me see, um, lemme see this manual.
24:50
When you select manual scroll through here,
24:54
you're gonna come right on top and press the shift button.
24:59
Okay? And then automatically it's going
25:03
to start tracking this whole vessel.
25:06
So see here, come to
25:10
this view, start scrolling.
25:21
See? And
25:28
so now you can see how as it starts tracking this vessel,
25:33
it'll, it allows you to kinda edit the rotation
25:37
or adjust the points in the plane, et cetera,
25:40
and give you measurements.
25:42
Uh, the interesting thing about this particular, uh,
25:46
workflow is it automatically does the tracings
25:49
and allows you to continue to edit things
25:51
by simply pressing shift
25:53
and giving you the option to change the vessel
25:56
as you're moving through.
25:57
So we put shift to this
26:01
and you put shift, build, track, track,
26:07
continue to track, and it lets you pick between the left
26:11
and right, right?
26:13
Then you show them the curve.
26:17
And then here, okay, rotate around.
26:21
Now if you get into this funny looking appearance
26:24
where it's like, I can't see, uh,
26:29
where the center lines are located,
26:31
you can simply erase all these measurements.
26:35
And what you want it to do is, uh,
26:39
you can do it one
26:40
or two clicks where it'll manually allows you to pick again
26:43
where, where the order comes from.
26:47
So again, from here to,
26:52
uh, I usually put it right before the page here,
26:57
and then it will, it will pretty much give you
26:59
that assessment.
27:01
So you can look at the center line if you not do it right,
27:06
but it should be able to get you that orientation.
27:09
So, okay, last
27:11
but not least, if that's still a problem,
27:14
you can always go within it, within it here on the tavr
27:18
and then through,
27:19
and try is always your ability to make the measurements
27:23
with your double orientation
27:27
and go from there.
27:29
Okay, we roll this measurement. Very.
27:34
Any other questions? Any other concerns?
27:45
Okay. All right.
27:47
We'll move on to the last
27:49
and most challenging case of week five.
27:53
Um, let's see.
27:57
So again, I'm gonna load this so we can kind of
28:02
see this anatomy and orientation.
28:05
This case is one for another TAVR case where,
28:10
uh, again, you have the task of measuring the aortic root
28:16
and the annulus measurements.
28:18
In this particular case, we
28:20
provided the, the phase only in Sicily to avoid you having
28:25
to do the entire ejection fraction measurements.
28:28
And more importantly, we did this case to kind
28:30
of get you familiarized with a fried leaflet.
28:33
Aortic valve. Again, we look at the anatomy, we see
28:36
how the valve open closes,
28:38
and more importantly, what are the measurements
28:40
that, that we need to do.
28:43
So again, if you have these, uh, measurements, you wanna
28:47
look at your location for where you put in the, the roots,
28:52
uh, angulations.
28:54
And the key thing is where this plane,
28:57
where the annular plane is, where the cusp
29:00
of the aortic annulus are located, that's
29:03
where you wanna line things up.
29:04
And you can see how as we scroll through the recon spaces,
29:09
you can see the tags of where these are, these need
29:12
to be right at the bottom of the crevices or,
29:15
or furrows, I guess would be the term for it.
29:19
Where this aorta is located.
29:21
Sometimes these aortas can be quite asymmetric
29:25
and, uh, uneven make it a little bit challenging to find
29:29
where those truly are.
29:30
But I wouldn't be too obsessed about making sure
29:34
that this left isn't right here
29:36
or this left isn't right there.
29:38
What matters is, as long as you are in, in a plane
29:41
where this is a nice circle
29:43
and you can assess the measurements, you'll be able
29:45
to get the widest and shortest dimensions
29:49
or that aortic route to get the,
29:52
the measurements that you need.
29:53
Okay? In regards to the assessment, again, you can go
29:58
through the entire recon automated ones
30:00
where it'll give you this, it has a three cusp view.
30:04
It'll give you these measurements.
30:05
Again, you can do that or you can do it manually from here.
30:09
Again, remember, you wanna have the left out, the right
30:12
and no coronary cusp overlap in a single plane.
30:16
See? So we want to see this two nicely overlapping.
30:21
And then last but not least, you're gonna want the left
30:24
and right to be overlapped.
30:26
So see right here and there you go.
30:29
See, and those are the measurements that you have.
30:32
See, they'll give you this, for example, no cranial,
30:34
no coddle view, and while technically it is correct,
30:38
this is impossible to align in, in the cath lab.
30:41
We just can't do that.
30:43
So that's why sometimes relying on the workflow can be
30:46
helpful, but sometimes it's not very helpful when you have
30:49
anatomy that's a little bit disoriented.
30:51
So that's why I wanted to show you those measurements.
30:54
So align them the three and overlap each one of those. Okay?
30:59
When you do get to the annulus, remember measure the highest
31:03
and largest dementia.
31:05
You can also inter recon embed anatomy.
31:09
So you can put the type of valves in the, in the case
31:14
and it should be able to kinda show you the,
31:17
the information that you want.
31:19
So let me see if I can get one
31:22
of these vows to kind of show it.
31:24
Okay? Um, no.
31:33
Okay. Maybe it's 'cause I'm doing it.
31:35
Um, it's quite the case.
31:44
Yeah, it's 'cause I'm loading it from that.
31:46
I'd have to do it from beginning.
31:48
But in your workstation, you should be able to, uh,
31:52
embed a geometry based on what you have without any issues,
31:57
meaning it will simulate what the valve will look like
32:00
by creating like an edge valve here
32:03
and provide you the measurements for the left
32:06
and the right coronary custom
32:08
and the measurements of how we would interact with this.
32:11
Again, that's not something that I do routine for native
32:15
TAVRs, but in valve in valves
32:16
where there's like a evaluation for a valve,
32:18
prosthetic valve that's failed
32:20
and we want to implant another valve,
32:22
I usually do include those measurements
32:24
as part of the evaluation.
32:25
So here again, consistency is key.
32:29
Left coronary height, left side, so Valsalva height, right?
32:32
Coronary height, right side.
32:34
So Valsalva height,
32:35
and that's the important measurements that you need to have.
32:39
Again, you get into the synott tubular junction
32:41
and the sinuses of Valsalva
32:44
and get those measurements made, like we said, from
32:48
this edge, with that edge from this commissure
32:54
to the next commissure.
32:56
Then last but not least, from here to here, okay,
33:02
by sending aorta and then we'd go from there.
33:05
Okay? Questions?
33:15
No, no questions, no concerns.
33:18
How long does it take you to read and have a study
33:23
To read a TAVR study that does do take a hot minute.
33:27
They do take a while.
33:28
Again, it really depends on, on what's,
33:31
what information you have, right?
33:34
If they're gonna give you a full cardiac cycle
33:38
where you have to read the entire ejection fraction,
33:41
annular route, all those things,
33:44
it's gonna take a lot more time than it is if you do it.
33:47
Um, under just the root measurements,
33:51
I will tell you in the United States, uh, this study builds
33:55
for two procedures, well, two procedures.
33:58
There's the cardiac component
34:00
and then the, the ct, abdomen, chest,
34:05
pelvis, vascular assessment study.
34:07
So these are one of the highest, more,
34:10
more revenue generating procedures.
34:12
But as you can imagine, the amount of time
34:14
that goes into reading this
34:15
and you know, all the extra cardiac findings
34:18
that are in the abdomen, uh, that,
34:20
that's just quite a bit of time.
34:22
So most institutions in the United States, they kind
34:26
of split this into two components
34:28
where the cardiologist will do the TAVR measurements
34:31
for the cardiovascular structures
34:33
and the radiologists will often do the
34:36
extra cardiac findings
34:38
or non nonvascular findings for the CT, chest,
34:42
abdomen, and pelvis.
34:43
And everybody gets, you know, you get paid a full CT chest,
34:46
abdomen, pelvis scan price,
34:48
and I get paid a full cardiac price
34:50
and then makes it more bearable in terms of workflow.
34:53
Now, if you happen to be in one of those cases
34:55
where you're in charge for reading a lot of that,
34:58
then you gotta really make it worth your time and,
35:01
and decision if that's something you want to do, uh,
35:05
routinely because this can be very, very,
35:08
very time consuming depending also on the software
35:12
that you're using, right?
35:15
Some softwares allow you to make this very, very easy to,
35:20
to kinda do
35:22
and allow it in a way that it's simple to do.
35:26
Other softwares make it so that it's very, very difficult
35:30
for you to get to the, to the areas that you wanna get and,
35:34
and pretty much make it a, a challenge
35:37
to be able to do that.
35:39
Uh, terra recon doesn't pay me money for me
35:41
to tell you they're the greatest thing on earth.
35:43
So I'll be very honest with you.
35:45
I personally don't like to use terra recon
35:47
for TAVR cases if I don't necessarily have to.
35:50
But again, a lot of it has to do with the experience
35:53
that I have with it and, and the training that I have.
35:56
There are some folks that are very savvy
35:58
with it at getting it to do you know, what it wants to do,
36:03
but I oftentimes find it that in order to get a really
36:07
high quality assessment from Terracon for the TAVR case,
36:11
you have to just be perfectly located and,
36:15
and go from there, right?
36:17
So you do this manual finish, there you go.
36:21
See, it gives it, it just likes to mess with you.
36:25
And then how it measures this threshold for like, you know,
36:30
is it accurate or not?
36:31
See, I have to click and scroll, click and scroll,
36:34
and you, you can imagine the level of, of frustration
36:38
that comes with this.
36:39
So this can be time consuming where it's much simple
36:43
to just sometimes do things yourself and,
36:47
and where you need to do, right?
36:48
So that's, that's what makes this a fun time.
36:52
Some people would say. Okay, any other questions?
37:01
And again, my advice to you when it comes to this TAVR cases
37:05
is to spend as much time as you can trying
37:09
to see if you can get the annualist dimensions.
37:12
No one's really going to care if you're, you know,
37:15
descending thoracic aorta was, you know, off
37:19
by three millimeters.
37:21
But those annulus measurements, the ones that we use
37:24
to size the valve, those are the most challenging ones
37:27
and they're the most important ones to get.
37:29
So always get into the habit of trying to be as accurate
37:32
and always see the feedback, right?
37:34
See if the device that you set recommended would fit
37:37
instead of being accurate.
37:39
And that's the only way that you're going to get consistent
37:42
with these and get expedient with these
37:44
because this can be quite, quite cumbersome and
37:47
and quite challenging.
37:48
Okay, any other questions? Any other concerns?
37:53
Of course, you guys have a good day. I'll see you next week.