Interactive Transcript
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Hello and welcome to Noon Conference, hosted by Modality
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Noon Conference connects the global radiology community
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through free live educational webinars that are accessible
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for all and is an opportunity
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to learn alongside top radiologists from around the world.
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Today we are honored to welcome Dr.
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Ronney Keff for a lecture entitled evaluation
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of HCC Treatment Response.
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Dr. Campbell lab completed his radiology residency at the
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University of Chicago
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and abdominal imaging subspecialty training at
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MD Anderson Cancer Center.
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He's on the abdominal imaging staff at the University
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of California Irvine.
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And his academic interest include the imaging of HCC
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and inflammatory bowel disease.
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As a heads up, there will be polling questions throughout
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today's lecture, and please join him in a q
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and a session where he will address questions you
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may have on today's topic.
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After the lecture ends, please remember to use that q
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and a feature to submit your questions so we can get to
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as many as we can before our time is up.
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With that, we're ready to begin today's lecture.
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Dr. Campbell laugh, please take it from here.
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So I'm gonna talk today about the evaluation
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of HCC treatment response.
1:10
Thank you so much for that introduction.
1:13
Um, so it's a bit of a confusing topic.
1:15
Um, and so there are a couple things I'd like to address
1:19
to help maybe clear up, uh, the confusion around, um,
1:23
evaluation of HCC treatment response.
1:25
Um, so by the end of this talk, uh, I'd like you to be able
1:29
to apply the 2024 RADS treatment, uh,
1:33
response algorithm in patients with HCC treated
1:36
with local regional therapy,
1:37
and then understand the most important changes in the new
1:40
treatment response algorithm.
1:43
Uh, particularly understanding why the new algorithm
1:45
contains, uh, uh, separate decision trees for radiation
1:49
and non radiation based therapy.
1:51
So if you don't know about my institution,
1:53
this is University of California Irvine.
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It's the only academic, um, university affiliated, um,
1:59
hospital in Orange County, California.
2:01
Uh, this is our main hospital located in the city of Orange.
2:05
It's a 450 bed plus, uh, hospital.
2:08
And, uh, opening early next year is our new hospital.
2:11
This is gonna be about 30 minutes south, uh,
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of the main hospital in the city of Irvine.
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Uh, and this is expected to open in, um, early 2026.
2:20
So at our institution, we do a lot of local regional therapy
2:23
for HCC.
2:24
Uh, the last year I checked, um, we did, um,
2:28
about 12 ablations, 36 embolizations,
2:31
and, uh, almost 60, uh, y 90 radio embolizations, uh,
2:35
in patients with, uh, suspected or with with HCC.
2:43
So, uh, let's talk a bit about local regional therapy.
2:45
So what, what is the purpose of local regional therapy?
2:48
Well, uh, four big categories.
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One is to downstage
2:52
or debulk tumor in patients, uh, who are, uh,
2:55
transplant candidates, um, achieve local tumor control, uh,
2:59
in patients who, um, uh, are undergoing transplant
3:03
to reduce the risk of recurrence
3:05
and to reduce the rate of tumor progression
3:07
or prolonged survival in patients
3:09
who are not surgical candidates.
3:11
And local regional therapy comes in two main flavors, right?
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Non radiation therapy
3:15
and radiation based, uh, local regional therapy.
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So the non radiation based therapies can be further
3:21
subdivided into arterial based therapies
3:24
and percutaneous therapies.
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So in arterial based therapies, you're basically, um,
3:30
introducing some sort of embolic agent via into the HCC
3:34
arterial blood supply, either chemotherapy coated or bland.
3:38
Uh, and the goal is to eliminate arterial inflow
3:40
to the tumor and cause cell death.
3:43
The other type of non radiation based therapy is
3:45
percutaneous, um, therapy radiation, uh,
3:48
radiofrequency ablation or microwave ablation.
3:52
Um, in these therapies, um,
3:54
an electrode is gonna create high temperatures using
3:57
different types of energy, uh,
3:59
creating coa coagulation necrosis of the tumor.
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There's also cryoablation,
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which uses a cold energy source to cause cell death.
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So here's an example, right?
4:08
Here's a patient with Hepatitis B
4:10
and HHCC who is treated with microwave ablation,
4:13
and this is the post-treatment scan.
4:15
So on your left is the pre contrast, uh, image,
4:18
and you can see there's, um,
4:19
there's a lesion here in the anterior right hepatic lobe
4:21
with some intrinsic T one hyperintensity probably
4:24
representing blood products, coagulation necrosis.
4:27
You can see on the arterial phase
4:28
and the venous phase images, there's no, uh,
4:31
arterial phase, hyper enhancement.
4:32
So this is an expected, uh, good result from successful, uh,
4:36
microwave ablation.
4:39
So radiation based local regional therapy.
4:42
Um, two main types.
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Um, the type
4:45
that interventional radiologists use most often is
4:47
transarterial radio embolization.
4:50
Uh, we're injecting Y 90 microspheres into the hepatic
4:53
arteries to give a target irradiation uh, dose
4:56
and a small micro embolic effect.
4:58
Uh, this is important. The therapeutic effect of, uh,
5:01
tear is mostly due to the radiation
5:04
and much less so due to the embolic effect.
5:07
The second type is SBRT stereotactic body radiation therapy.
5:11
Here we use beams from
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outside the patient focused on the area of interest
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to deliver higher doses of radiation to the tumor
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and spare the surrounding parenchyma hopefully.
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Um, so
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after therapy follow-up, uh, imaging is
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decided mostly based on the discretion
5:29
of the treating physician, either interventional radiologist
5:32
or the, uh, radiation oncologist At our institution,
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we use multi-phase CT or MRI, um, usually four to six weeks
5:40
after taste, six to eight weeks after tear
5:42
and more, more, more
5:44
or less every, uh, three to six months thereafter.
5:48
Um, so I forgot
5:50
to mention I do have some audience response questions in
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this, uh, in this talk.
5:53
So I wanted to start with the first question,
5:56
and that is, at your institution, what modality do you use
5:59
to evaluate HCC, um, um, after local regional therapy?
6:04
Is it only cd, ct?
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Uh, only MRI mostly CT or mostly MRI.
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And I'll give you a few seconds to answer that.
6:16
Alright, great. So it looks like, um, a, uh,
6:21
a good percent of you, uh, percentage of you,
6:23
51% use mostly MRI, um, followed by mostly CT
6:28
and the minority use, uh, exclusively CT or MRI.
6:31
Okay, very good. Moving onward.
6:34
Okay, so I'm gonna talk about rads.
6:37
Um, the rads, um, algorithm, as you know, uh, probably was,
6:42
uh, trademarked by the A CR in 2011.
6:45
Um, it's a method of standardizing, um,
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and introducing a, a standardized nomenclature, um,
6:52
for findings in patients at risk for, um, HCC.
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Uh, and it helps us communicate
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with our referring physicians.
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It helps, um, standardize categories
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and then it, it helps facilitate research.
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Um, in 2000, in the 2017 version of IRADs, um,
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the algorithm Inc included a treatment response algorithm,
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uh, which offered guidance, uh, on how to evaluate, um,
7:18
patients who had been treated with local regional therapy
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to determine whether the therapy was successful.
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So in 2024, the treatment response algorithm was revised
7:29
and the main change was
7:30
that there's now a different treatment, um, decision pathway
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or a different algorithm for non radiation
7:36
and radiation based therapy.
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So why is that? Um, the reason the authors
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of the algorithm had to make that change was
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because radiation based therapies create a very different
7:46
post-treatment appearance
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of HCC than non radiation based therapies.
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Uh, namely the, uh, response of tumor to radiation is slow
7:55
and prolonged as you have inflammation, DNA damage,
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which can act over a long period of time.
8:01
So, as I said earlier, Y 90 radio embolization,
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the effects depend more on the radiation effect,
8:07
much less on the embolic effect.
8:09
So at the cellular and the radiographic level, the evolution
8:12
of changes after radiation are very slow.
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So for US radiologists, what that means is
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that persistent tumoral arterial phase hyper enhancement can
8:23
persist for six months, 12 months, or even longer
8:25
after radiation based therapy.
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Basically, you have sleepy cancer cells undergoing radiation
8:31
related changes, um,
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and, uh, the effects on tumor size may also be slow.
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Meanwhile, to the surrounding liver,
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you have these microvascular changes.
8:41
You have these geographic peritumoral
8:43
enhancement edema and hemorrhage.
8:45
Um, and sometimes and often you develop fibrosis
8:48
with delayed enhancement, capsular retraction
8:50
and intrahepatic bili dilatation, which we'll see coming up.
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So with this new treatment response algorithm
8:57
after radiation, really the emphasis is more on the changes
9:01
over time rather than the appearance at any
9:03
one given time point.
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Um, so like I said, mass like enhancement can persist
9:09
after successful therapy, but new
9:11
or increasing mass like enhancement is suspicious,
9:14
particularly if it occurs
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after a long period of stability, uh,
9:18
and new diffusion restriction
9:20
and T two hyperintensity can be helpful in
9:22
cases that are equivocal.
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Okay, so let's go to the algorithm.
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I'm gonna start with non radiation therapy,
9:29
the non radiation therapy algorithm,
9:31
'cause that's probably the most familiar.
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Um, so step one, you have these four categories, right?
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LRTR, non evaluable, um, non LRTR, non-viable,
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LRTR, equivocal and LRTR viable.
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So what you're assessing
9:46
for when you do your initial assessment of the imaging,
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look, you're looking for mass like enhancement.
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So no mass, like enhancement means LRTR, non-viable
9:56
uncertain mass, like enhancement is LRTR, equivocal
10:00
and mass like enhancement is LRTR viable.
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This is after non radiation therapy.
10:06
So what is mass like enhancement?
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So it's an enhancing area, any degree, any phase
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that occupies space.
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So nodular enhancement, irregular peripheral enhancement,
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or a thick rim of enhancement all count
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as mass like enhancement.
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So here's an example. Here's a patient who was treated
10:22
with microwave ablation.
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Um, this is three months after microwave ablation.
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Uh, here's the T one pre contrast imaging.
10:30
Uh, on your right is the arterial phase imaging.
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Uh, so you can see that there's nodular arterial phase,
10:36
hyper enhancement around the treated area.
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This is considered mass like enhancement.
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So this is LRTR viable disease.
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So we've seen mass like enhancement,
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what's not mass like enhancement.
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So complete lesion disappearance, no enhancement
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of the lesion, a smooth rim of enhancement around the lesion
10:56
or surrounding parenchymal perfusion changes.
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None of these count as mass like enhancement,
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but these are all findings that you may see after treatment,
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and these do not necessarily represent viable disease.
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Uh, here's an example of HCC status post, uh, taste,
11:12
and you can see the treated area here in the
11:15
right hepatic lobe.
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And then on the post contrast image, you can see sort
11:19
of this geographic wedge-shaped enhancement in the
11:21
parenchyma, uh, around the lesion.
11:24
This is not considered mass like enhancement.
11:26
So this is LRTR non-viable. Uh, here's another example.
11:30
HCC, uh, status post microwave ablation.
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On your left is the pre contrast image.
11:36
You can see that there's a treated area here
11:37
in segment eight of the liver.
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Uh, it has some intrinsic T one hyperintensity.
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Um, but on the post contrast image,
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you don't see any nodular enhancement.
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You see a thin rim of per lesional enhancement.
11:50
Again, this is not mass like enhancement,
11:52
this does not indicate viable disease.
11:54
This is LRTR non-viable.
11:58
Okay, so once you've, um, looked for mass like enhancement,
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step two in the non radiation algorithm is
12:04
to apply ancillary features in this case
12:07
with the treatment response algorithm.
12:08
Ancillary features are diffusion restriction
12:11
or mild to moderate T two hyperintensity in an area
12:14
of uncertain mass like enhancement.
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And the presence of these ancillary features can be used
12:19
to upgrade an equivocal lesion to a viable lesion.
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So here's an example. This is a patient with, um, chronic,
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um, HBV
12:27
and HCC, uh, status post treatment
12:31
to the right hepatic lobe,
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but they've never had treatment to the left hepatic lobe.
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And on one of the follow-up scans, we see this lesion, uh,
12:38
and there's sort of this ill-defined, um, enhancement,
12:41
and it's really sort of more visible on the, uh,
12:44
portal venous phase image
12:45
where you have a hypo enhancing new lesion here
12:48
in the left hepatic lobe.
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Uh, this is what the T two
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and diffusion weighted images look like.
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You can see there's a little bit of, um, mild
12:56
to moderate T two hyperintensity as well
12:58
as some ill-defined, uh, DWI, um, diffusion restriction.
13:03
Okay, so this patient underwent taste
13:05
and you can see that the, the area here does again,
13:08
does not demonstrate arterial phase hyper enhancement.
13:11
There's sort of this ill-defined sort
13:13
of hypo enhancement on portal venous phase images associated
13:17
with this, uh, this capsular retraction.
13:19
Uh, so what does this mean? It was kind of unclear to us
13:22
and difficult to know whether this was, um,
13:24
equivocal disease or was it viable, non-viable.
13:28
Uh, in this case, the T two
13:30
and the diffusion really helped us.
13:31
Here. You have quite striking moderate T two hyperintensity
13:34
associated with that hypo enhancing area, as well
13:37
as really marked diffusion restriction.
13:40
So we use those ancillary findings
13:42
to upgrade this from an equivocal lesion
13:44
to an LRTR viable lesion.
13:46
And then you can see on the subsequent imaging,
13:48
five months later, this area has grown.
13:51
So it, it, it did bear out, it was really a viable disease.
13:56
Here's another case. Uh, a 68-year-old male five months
13:59
after, uh, taste, um, with this treated lesion.
14:03
Um, so you can see there's a lesion here on these pre
14:06
contrast images and on the art, uh, post contrast images,
14:09
there's sort of this thick rim of enhancement.
14:12
It's kind of a little bit difficult
14:15
to know is this just the smooth para lesional enhancement
14:18
that we expect after taste,
14:19
or is this more something more insidious?
14:23
Um, in this case, the diffusion helped us, um, on this,
14:27
these diffusion restricted images, you can see
14:28
that there's pretty significant diffusion restriction
14:31
associated with that rim of enhancement.
14:34
Uh, here in this case it w it helped us upgrade from
14:38
equivocal to viable disease.
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So, uh, the last step, uh, in the non radiation algorithm,
14:45
um, if you are unsure between two, um,
14:48
treatment response categories,
14:49
choose the category reflecting the lower certainty in this
14:53
case LRTR equivocal.
14:56
Okay, so now we're going to the radiation algorithm.
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Uh, and this is a little bit different from the
15:01
non radiation algorithm.
15:03
Um, uh, so here's step one
15:05
and the main difference between the radiation
15:07
and the non radiation based algorithm is
15:10
this category right here.
15:11
Uh, LRTR non progressing is new nomenclature
15:15
for the 2024 treatment response algorithm.
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And it means mass like enhancement, which is stable
15:21
or decreased in size over time after local regional therapy.
15:24
The other categories are the same.
15:26
No mass, like enhancement means non-viable
15:29
and mass like enhancement, which is new
15:31
or increased in size over time is LRTR viable.
15:35
Um, step two, similar to with the non radiation algorithm,
15:39
um, any um, new or increased diffusion restriction
15:43
or mild to moderate T two hyperintensity enables you
15:46
to upgrade from non progressing to LR TR viable.
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Step three, apply the T braking rules.
15:54
If you're unsure about two categories,
15:55
choose the one reflecting lower certainty in this case
15:58
LRTR non progressing.
16:01
So here's an example of a patient.
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Uh, this is a patient with um, uh, cirrhosis obviously.
16:07
Um, this is a pre-treatment MRI.
16:08
You can see that the liver's nodular
16:10
in the right hepatic lobe.
16:11
There's an arterial enhancing lesion, uh,
16:14
which washes out on portal venous phase,
16:16
and you can see there's a delayed enhancing capsule.
16:18
This is, so this is an LR five
16:20
RADS five lesion pre-treatment.
16:22
So again, here's the pre-treatment arterial phase image.
16:25
The patient underwent Y 90 radio embolization
16:27
and here's the post-treatment image.
16:29
You can see that there's still this rim of enhancement
16:32
as well as some sort
16:33
of mass like enhancement within the lesion,
16:35
but it's clearly decreased since the um,
16:39
uh, pre-treatment imaging.
16:40
So this is LRTR, um, non, uh, LRTR non progressing.
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Um, on the subsequent follow-up examination,
16:48
this is 35 months
16:49
after, um, treatment, you can see
16:52
that the patient has developed these characteristics, sort
16:54
of fibrotic changes in the treated segment.
16:57
Uh, in this case, the patient has developed liver capsular
16:59
retraction, um, as well
17:01
as intrahepatic biliary ductal dilatation.
17:05
Okay, so the rest of my talk is gonna be devoted to,
17:08
uh, practice cases.
17:09
Uh, so all of these are associated
17:11
with some audience response questions.
17:13
Uh, and we're gonna start out with some non radiation, uh,
17:16
some patients treated with non radiation based therapies
17:18
and then go on to radiation based therapies.
17:21
So this is practice case one.
17:23
Um, so this is a, um, sorry,
17:26
69-year-old patient with cirrhosis.
17:28
Um, there was a, um, lesion in segment two four centimeters,
17:32
um, and it was RADS five.
17:34
You can see that there's a segment two lesion
17:36
with arterial phase hyper enhancement wash out on portal
17:38
venous phase with a, uh, an enhancing capsule.
17:45
Uh, this is one month aftertaste.
17:47
I'll give you a second to look at these images.
17:54
Okay, so moving forward, what's the diagnosis here?
17:57
A-L-R-T-R, viable, B-L-R-T-R, non-viable, C-L-R-T-R,
18:02
equivocal and d LR or D-L-R-T-R non progressing.
18:07
I'll give you a few seconds.
18:14
All right, excellent. So, um, LRTR viable,
18:17
65% of you got that right.
18:19
It's LRTR viable.
18:21
Um, so you can't use non progressing on this case
18:24
because the patient was treated with taste.
18:26
So this is a non radiation based therapy.
18:28
Uh, so the non progressing category is not,
18:31
um, not appropriate here.
18:33
So here again are the post-treatment images,
18:35
one month aftertaste, you have nodular enhancement
18:38
around the periphery of the LE lesion here,
18:41
and then more superiorly here
18:42
and here this is mass like enhancement aftertaste.
18:45
So this is LRTR viable. Very good. Next case.
18:50
This is an 85-year-old, uh, female.
18:53
Um, and she has a 2.7 centimeter LRADs five observation here
18:58
in the right hepatic lobe.
18:59
You can see there's, um, diffuse arterial phase,
19:02
hyper enhancement, and then a capsule, um,
19:04
on the delayed phase images, uh,
19:08
this is a repeat MRI performed
19:10
after radiofrequency ablation.
19:12
I'll give you a few moments to look at these images here.
19:20
Okay, so what's the diagnosis here?
19:22
A-L-R-T-R, viable B-L-R-T-R, non-viable C equivocal
19:26
or D non progressing.
19:34
Uh, very good. Uh, the majority of you got LRTR non-viable.
19:37
I think that's correct. Uh, let's take a look.
19:42
So this is a patient treated with radiofrequency ablation,
19:45
so non radiation based therapy.
19:47
So here you're gonna either categorize it as non-viable,
19:50
viable or equivocal.
19:52
Uh, and then you can see that this treated area,
19:54
it's a little bit larger than the original lesion, uh,
19:58
which is expected.
19:59
Uh, but on these images you have a non-contrast arterial
20:02
phase, portal venous phase,
20:04
there's really no mass like enhancement.
20:06
So this LRTR non-viable practice case three,
20:12
there's a 53-year-old lady with alcoholic cirrhosis.
20:14
She has a 2.3 centimeter lesion in segment two of the liver.
20:19
Um, you can see that there's diffuse, uh,
20:21
or there's faint arterial phase, hyper enhancement.
20:24
And then on the portal, venous phase images, there's washout
20:26
and then an enhancement of a capsule.
20:28
So this is consistent with RADS five.
20:33
Uh, the patient underwent taste and this is the repeat ct.
20:37
So I'll give you a few moments to look at this image.
20:45
So what's the diagnosis here?
20:46
LRTR viable, LRTR, non-viable, equivocal or non progressing.
20:56
Okay, very good. The majority of you got LRTR non-viable.
21:03
So again, this is the repeat CT
21:05
performed one month after taste.
21:06
Here's the lesion. You can see that there is, um, a thin rim
21:11
of, uh, peripheral, um, enhancement,
21:14
which is not considered mass like enhancement.
21:17
So this is an expected finding aftertaste.
21:19
Um, this is not consistent with vi uh, viable disease.
21:22
This is LRTR non-viable.
21:26
Next case, 65-year-old lady
21:31
with, uh, hepatitis B, no cirrhosis,
21:34
and a segment eight LR five observation.
21:37
You can see this LR five observation here in the right
21:39
hepatic lobe on these arterial phase images.
21:42
This is the repeat MRI after radiofrequency ablation.
21:51
What's the diagnosis here?
21:53
Viable, non-viable, equivocal or non progressing.
22:01
Okay, uh, 40, 46% of you thought viable.
22:05
37% of you thought equivocal. Let's take a look.
22:11
So again, here's the, uh, treated area
22:13
after radiofrequency ablations,
22:15
this non radiation based therapy, um,
22:19
medial to the treated area.
22:20
There's this enhancement. So this isn't thin.
22:23
Um, this isn't a thin rim of peripheral enhancement.
22:26
This is more sort of nodular
22:28
and mass like than we've been seeing in other cases.
22:31
Um, so this is suspicious
22:32
and this is not an expected finding
22:34
after successful therapy.
22:36
This is LRTR viable. Good.
22:41
Next case. This is 70-year-old, uh,
22:45
with cirrhosis and an LR five observation in segment four.
22:48
A little difficult to see, but it's right here.
22:50
Um, you can see this artily enhancing, uh,
22:52
lesion in segment four of the liver.
22:56
Uh, and this patient underwent, uh, radiofrequency ablation.
23:00
Um, here is the treated lesion on arterial phase images,
23:04
portal venous phase images.
23:10
And then I have one more set of images to show
23:11
before I ask you to make a diagnosis.
23:14
Here's the diffusion weighted images and a DC map.
23:24
So what do you think LRTR viable, non-viable, equivocal
23:29
or non progressing?
23:35
Um, LRTR viable. 53% of you said lr TR viable?
23:38
Yep, that's good. Let's take a
23:40
look, Right?
23:45
So in this case, let me go back actually.
23:47
So in this case, after treatment,
23:49
there's this rim of enhancement.
23:51
It's thicker than we're used to seeing, um,
23:54
after successful therapy.
23:56
Um, and you can see that sort of persists on
23:59
the portal venous phase.
24:00
And then on this, um, this DWI image, you see this sort of,
24:05
um, um, uh, diffusion restriction that corresponds to
24:09
that rim of enhancement as well as, um,
24:12
a dark signal on the a DC map that really helped us
24:15
to upgrade this lesion from LR TR equivocal to LR TR viable.
24:19
And I think most of you got that next case,
24:23
radiation based therapy.
24:26
So this is an 88-year-old male with HCC.
24:28
You can tell there's a clear, um,
24:30
RADS five lesion here in the r hepatic lobe with sort
24:32
of diffuse arterial face hyper enhancement.
24:36
This is two months after Y 90 radioembolization.
24:42
Let's take a look at those for a second.
24:48
What's the diagnosis here?
24:49
Viable, non-viable, equivocal or non progressing.
24:58
Okay, so a little bit of disagreement here.
25:00
39% of you thought non progressing,
25:03
31% of you thought viable.
25:04
So let's take a look. Okay, so this is two months
25:09
after radio embolization.
25:11
And, um, sorry, let me go back real quick.
25:14
So this is the pretreatment imaging.
25:16
So you see diffuse this lesion
25:17
with diffuse arterial face hyper enhancement,
25:20
and this is two months after Y 90 radio embolization.
25:23
The lesion is basically unchanged in size.
25:25
There's no longer diffuse central enhancement.
25:28
There's nodular enhancement around the, um, lesion,
25:32
but it's much less than before.
25:34
And remember, this is radiation based therapy.
25:36
So the in summary, the degree, the amount
25:39
of MA like enhancement has really decreased
25:41
since the pretreatment scan.
25:43
So this is LRTR non progressing.
25:46
Remember, this is radiation based therapy.
25:48
So a, uh, persistent arterial phase,
25:50
hyper enhancement is allowed as long as it's stable
25:53
or decreasing in time, uh, over time.
25:55
LRTR non progressing.
25:59
Um, just to prove my point, this is um, um,
26:03
actually let's take a look at this six month,
26:04
uh, up, uh, scan.
26:06
This is a six months after Y 90 radioembolization.
26:09
The patient hasn't had any, um, additional therapy.
26:16
What's the diagnosis here?
26:18
LRT are viable, non-viable, equivocal or non progressing.
26:27
Okay? So, um, uh, kind of have all sorts
26:30
of different answers, viable, non-viable,
26:32
equivocal and non progressing.
26:33
Let's take a look. So again,
26:35
remember this is the same patient.
26:38
Um, this is now six months after Y 90 radioembolization.
26:42
So what we're seeing now is we've seen
26:43
that this lesion has shrunk.
26:45
Um, it's decreased in size, there's peripheral enhancement.
26:49
And this new finding here is this sort of
26:52
geographic wedge-shaped enhancement in the treated segment.
26:57
So, um, if you remember this, this sort of finding is due to
27:02
surrounding parenchymal changes as a result
27:04
of the radiation therapy.
27:06
Um, so this sort of geographic wedge-shaped enhancement
27:10
may be okay, um, and it may be an expected finding
27:13
after radiation, uh, based therapy.
27:16
So this is actually LRTR non-viable.
27:18
So the patient continues to have, um, no evidence
27:21
of viable disease.
27:24
Um, this is the follow-up scan.
27:26
Um, several months down the road
27:28
after that last scan I showed you,
27:30
and again, you have sort of more progressive findings
27:33
of fibrosis in the treated segment, right?
27:35
You have liver capsular retraction, wedge-shaped, um, uh,
27:39
parenchymal enhancement,
27:41
and you get the sense that there are these, um,
27:43
dilated intrahepatic ducts.
27:44
All of all these go along with radiation related fibrosis
27:47
and don't necessarily, um, uh, indicate viable disease.
27:52
Sometimes these cases can be very challenging.
27:55
Um, sometimes this, um, in this, um,
27:58
enhancement can be very difficult to distinguish between
28:01
new infiltrative disease.
28:03
Um, and I acknowledge that it can be very challenging.
28:05
And in those cases, I think all we can do is really follow
28:07
them over time to see if, um, more disease develops
28:12
or if the patient sort of develops this situation
28:15
where you have shrinkage and fibrosis of the treated area.
28:20
Okay, next case, radiation.
28:24
Um, so here's a patient
28:25
with a RADS five lesion here in the right hepatic lobe.
28:28
You see arterial phase hyper enhancement
28:29
washout on the portal venous phase.
28:33
Uh, this is six months after Y 90 radioembolization.
28:41
Um, so what's your diagnosis?
28:43
Um, LRTR, viable, non-viable, equivocal
28:48
or non progressing.
28:54
Okay, uh, some of you thought viable, some
28:56
of you thought non progressing.
28:57
Let's take a look. Um, let me go back.
29:01
Okay, so here's is a pre-treatment, um, scan.
29:05
You have diffuse arterial phase hyper enhancement in
29:07
this r hepatic lobe lesion.
29:09
Here's the post-treatment scan.
29:11
Um, and then here again, we'll see the post-treatment scan.
29:14
Um, you have, you still have this lesion,
29:16
you still have mass like enhancement.
29:18
It's no longer diffuse
29:19
and it's clearly decreasing, uh,
29:21
since the pre-treatment scan.
29:23
Um, this patient was also noted
29:25
to have downtrending A FP at this time.
29:27
So this is LRTR non progressing.
29:32
Uh, and this is a, a total of 15 months.
29:34
Um, after tear in the same patient,
29:36
you can see these progressive fibrotic changes.
29:39
The lesion has continued to shrink,
29:41
although there's persistent arterial phase, hyper
29:43
or mass like enhancement.
29:45
Uh, it's continued to decrease since the prior examination.
29:48
And you have these findings of liver fibrosis
29:50
with capsular retraction in the treated segment.
29:53
Okay, next case radiation.
29:57
Um, I don't have pretreatment images on this one.
30:00
Uh, this is an HCC with Y 90 embolization on, uh,
30:04
June, 2019.
30:06
So here's the scan, uh, here's the area of interest.
30:09
Here's the scan from, uh, March, 2020, uh,
30:12
follow up in June, 2020,
30:16
and then subsequent follow up January, 2021.
30:22
So take a look at that
30:24
and what do you think the diagnosis is on the final
30:26
scan in 2021?
30:28
LRTR, viable, non-viable, equivocal or non progressing?
30:38
Okay, LRTR viable, 90% of you said that,
30:41
and I think you are absolutely correct.
30:43
So in this case, um, on the immediate follow-up,
30:47
the patient has arterial phase hyper
30:48
enhancement in the treated area.
30:50
That may be okay,
30:51
but you can see over time this, um,
30:54
arterial hyper enhancement is clearly increasing the lesion
30:57
this observation is, is increasing in size
31:00
until the 2021 examination.
31:02
So this is LRTR viable, very good.
31:09
Another case, this is a 77-year-old male, Hep B cirrhosis,
31:13
HCC, he's had a history of multiple lesions treated
31:16
with chemo embolization and microwave BL ablation.
31:19
He has this new arterially enhancing lesion in segment eight
31:22
of the liver here in the central liver
31:24
with arterial phase hyper enhancement and washout.
31:26
This is a RADS five lesion.
31:29
The patient underwent Y 90 trans arterial radio embolization
31:32
and had a repeat MRI one month
31:34
after, uh, the procedure, there's a little bit
31:37
of arterial phase, hyper enhancement on the
31:39
medial aspect of the lesion.
31:44
This is the associated, uh, diffusion weighted imaging
31:47
and, uh, T two weighted imaging.
31:51
Okay, so now we have a follow-up examination.
31:54
Six months after the last one I showed you.
31:56
This area of sort of enhancement medial
31:59
to lesion looks like it's increased in size a bit.
32:05
And here's the, um, here's the evolution
32:08
of the diffusion restriction and T two weighted imaging.
32:12
So here you can see, uh, this is immediately post-treatment.
32:15
This is six months after treatment.
32:17
Here's immediately post-treatment on the left.
32:20
Here's six months after treatment on the right.
32:26
So what do you think on the most recent examination,
32:29
LRT are viable, non-viable, equivocal or non progressing?
32:38
Great. 66%
32:40
of you said LRT are viable and I think that's correct.
32:43
So you can see here clearly in addition to the growing, um,
32:47
arterial phase, hyper enhancement,
32:49
you have increased T two signal along the medial aspect
32:52
of the leg, or I'm sorry, increased diffusion restriction
32:55
along the medial aspect of the lesion.
32:56
Here it's growing from this scan to this scan
32:59
and also this, um, this mild
33:02
to intermediate T two signal intensity
33:04
hyperintensity is also increasing.
33:07
Here's the immediate post-treatment
33:08
and then the subsequent examination.
33:10
You can see it's increasing here medially.
33:12
So this is LRTR viable very good.
33:14
And then you can see that on the follow-up examination,
33:17
four months after that it continues to grow.
33:19
So this is clearly a viable disease.
33:23
Okay, next case radiation.
33:27
Here's a 65-year-old with cirrhosis
33:29
and HCC, this is the pre-treatment scan.
33:31
So you have a RADS five lesion in the right hepatic lobe
33:34
with arterial phase,
33:35
hyper enhancement washout, and a capsule.
33:39
The patient underwent, um, radio embolization with Y 90.
33:43
And um, these are the follow-up scans.
33:46
This is in, um, October, 2023 and then March, 2024.
33:52
So here's the pre-treatment
33:55
and then here's a post-treatment.
33:59
So I'll give you a few moments to look at that.
34:06
What's the diagnosis on the most recent scan?
34:08
Viable, non-viable, equivocal or non progressing?
34:17
Uh, okay, uh, the majority you've got got it.
34:19
LRTR non progressing. 56% of you. Let's take a look.
34:23
So, um, here are the post-treatment images after Y 90.
34:27
You can see that there's still some arterial phase,
34:30
hyper enhancement within the treated area,
34:32
but it's decreased since the pre-treatment examination.
34:36
And this is radiation based therapy.
34:38
So this is LRTR, non progressing. Very good.
34:43
Next case. Uh,
34:46
and here I apologize, I don't have the pretreatment imaging,
34:48
uh, but this is a 79-year-old with alcoholic cirrhosis
34:51
and HCC, uh, after trans arterial radio embolization.
34:55
Here is the scan on April, 2021,
35:00
July, 2021.
35:02
And then the follow-up scan. This is November, 2021.
35:06
What do you think about the most recent scan at RTR, viable,
35:12
non-viable, equivocal or non progressing?
35:20
Okay, so this is, this is a challenging case,
35:22
but let's take a look.
35:24
So this is a 79-year-old alcoholic cirrhosis,
35:28
HCC post tear.
35:30
The treated area is here in the dome.
35:32
Um, in April, you don't really have much
35:35
arterial face, hyper enhancement.
35:36
Maybe if you few flex here
35:37
and there, that really isn't changing, uh, over time.
35:41
Um, and here by 11 20 21 really,
35:45
there's not really any, um,
35:48
significant arterial phase hyper enhancement.
35:51
So this one we call LRTR non-viable.
35:56
Okay, so same patient again, this is the um,
36:00
November 21, 21 scan.
36:03
Here's the July, 2023 scan.
36:06
This patient was treated with Y 90 radioembolization.
36:10
What do you think the diagnosis is here?
36:12
LRTR, viable, non-viable, equivocal or non progressing
36:22
viable, 83% of you said viable, and I think that's correct.
36:25
So you have this patient who's had this long period
36:28
of stability, uh, right after Y 90 therapy
36:31
and all of a sudden on um, uh, July, 2023,
36:34
they've developed these new nodular mass like areas
36:37
around the periphery of the treated Observation, uh,
36:40
this is clear, um, LRTR viable disease, so very good.
36:47
Uh, next case radiation.
36:50
This is an 85-year-old male with HCV cirrhosis
36:52
and a 5.6 centimeter RADS five lesion at the junction
36:56
of segment six and seven.
36:57
You can see this enhancing lesion washout,
37:00
it's clearly LRADs five.
37:03
Um, the patient has undergone Y 90
37:05
and this is a follow-up imaging four months later.
37:08
Um, it's not easy to tell
37:09
unless, um, if you don't have direct comparison,
37:11
but the lesion has decreased in size to 5.1 centimeters.
37:14
Here's the pre contrast images
37:16
and the arterial phase images here on your right.
37:21
So what do you think about this viable, non-viable
37:25
equivocal or non progressing?
37:32
Okay, 61%
37:33
of you said non progressing and I think that's correct.
37:36
Um, so this is four months after Y 90.
37:38
Uh, there was a diffusely enhancing lesion
37:40
and it, it has decreased in size to 5.1 centimeters,
37:44
even though there's persistent arterial phase,
37:46
hyper enhancement, it's decreasing.
37:48
So this is LRTR non progressing.
37:53
Uh, next case radiation therapy,
37:58
66-year-old male with hepatitis B.
38:00
You can see that there's an arterial hyper enhancing lesion
38:03
here in the right hepatic lobe.
38:07
Uh, that lesion is associated with some, um, mild
38:10
to moderate T two hyperintensity as well as some, um,
38:14
marked diffusion restriction.
38:17
So this patient underwent, um, Y 90 radio embolization.
38:23
So here's the pre-treatment scan on your left
38:25
and here's the post-treatment arterial
38:27
phase scan on your right.
38:31
What do you think? LRTR viable, non-viable,
38:34
equivocal or non progressing.
38:42
Okay, um, um, different, also different answers.
38:48
So, uh, I'll tell you this is a challenging case, right?
38:51
Pre on the pre-treatment you have this, um, lesion with sort
38:55
of diffuse arterial face hyper enhancement
38:57
here on the post-treatment scan.
38:59
You have this sort of geographic enhancement here in
39:02
the, in the treated segment.
39:04
The observation itself looks a little bigger than before.
39:07
You don't have the diffuse enhancement.
39:09
You have these sort of heterogeneous areas
39:11
of arterial phase enhancement within the lesion.
39:14
We were kind of unsure. Um, we suggested non progressing.
39:19
Our impression was that the degree
39:21
of arterial phase hyper enhancement is
39:22
decreased after treatment.
39:25
Um, and this is six months later
39:27
with no additional treatment.
39:34
What do you think about that? LRTR viable, non-viable,
39:39
equivocal or non progressing?
39:47
Yeah, so, um, most of you're split
39:49
between non-viable and non progressing.
39:51
So let's look at these images.
39:53
So again, this is six months later, no additional treatment.
39:56
I would argue that this treated area,
39:58
there's just not really any mass like enhancement.
40:00
There's this rim of peripheral enhancement.
40:04
There's also this geographic enhancement in the treated
40:07
segment, um, associated with what looks like some fibrosis,
40:10
some capsular retraction,
40:12
possibly some biliary ductal dilatation.
40:14
These are sort of expected findings, um, with the evolution
40:17
of radiation fibrosis.
40:19
Um, so given the evolution of this lesion over time,
40:23
we categorize this as LRTR non progressing.
40:27
Um, yeah, I think,
40:29
I think you could go either way on this one.
40:31
LR TR non progressing
40:32
or LRTR non-viable, um, I think would be, um, acceptable.
40:42
Okay, 66-year-old with cirrhosis
40:45
and an LR five observation
40:47
after, uh, trans arterial radioembolization.
40:51
So this, these are both post-treatment, uh, images, uh,
40:55
this is the pre contrast on your left, uh,
40:57
post contrast on your right.
41:00
Uh, and then this is two years later, uh, March of 2023.
41:04
The patient hasn't had any additional treatment,
41:09
so I'll give you a few moments to look at that.
41:17
What do you think here? LRTR viable.
41:20
LRTR, non-viable equivocal or non progressing?
41:28
Non-viable. Yeah, I think you are right.
41:31
So, um, here on this follow up examination,
41:35
really no mass like enhancement in the treated observation.
41:38
There's geographic enhancement in the treated segment
41:41
associated with some findings of fibrosis.
41:43
Um, there's no evidence of viable
41:44
mass like enhancement here.
41:46
This is LRTR non-viable.
41:49
Okay, radiation based case, 69-year-old with alcoholic,
41:54
uh, cirrhosis and HCC after tear.
41:57
This is the pretreatment imaging here.
41:59
So you can see this big mass here in the right hepatic lobe
42:02
associated with arterial phase, hyper enhancement
42:05
and moderate T two.
42:07
Um, uh, hyperintensity, here's the post-treatment image.
42:13
I'll give you a few moments to look at that.
42:19
Okay, so what's the diagnosis here?
42:21
LRTR, viable, non-viable, equivocal
42:25
or non progressing,
42:31
non-viable or non progressing.
42:33
Uh, where the majority of the
42:34
answers, and I think that's correct.
42:35
This is the challenging case.
42:37
Um, it looks like in the, uh, treated area really has, um,
42:42
lost all of its arterial phase, hyper enhancement.
42:45
Um, there's a little bit of sort of geographic enhancement
42:47
around the treated area in the treated segment,
42:50
but I think really in the, um, treated area,
42:53
there's no more mass like enhancement.
42:55
We call this LRTR non-viable.
42:59
Okay, I have two, two special cases and
43:01
before I wrap up, let's uh, take a look at this first one.
43:04
Uh, this is an age, this is a patient
43:06
with hepatocellular carcinoma.
43:08
He's undergone surgical resection.
43:09
So he underwent a, a segment five six resection
43:12
and he has this area along the surgical margin, uh,
43:16
which demonstrated some sort of faint arterial phase,
43:19
hyper enhancement with some, um, mild washout.
43:24
Uh, that area is associated with the MT two signal
43:27
and some increased diffusion restriction.
43:30
So what's the diagnosis here?
43:31
Viable, non-viable, equivocal, non progressing,
43:36
or we can't use the LRTR algorithm in this case
43:40
because this patient, patient was treated with surgery.
43:47
Okay. Um, so answer split between viable
43:51
and we can't use the LR TR algorithm in this case.
43:54
Um, the reason I showed this case is
43:56
to highlight a change in
43:58
or a clarification in the new LR
44:00
treatment response algorithm.
44:02
They do clarify that we can use the algorithm to, um,
44:06
assess patients who have been treated
44:08
with surgical resection.
44:09
So in this case this would be LRTR viable.
44:11
So you can use the LRTR uh,
44:13
treatment algorithm in this case.
44:18
Uh, and now this is a second special case.
44:22
So this is HCC.
44:23
This patient has had TAs remotely and now has had recurrence
44:27
and now they're on a clinical trial.
44:29
They're being treated with systemic therapy in this case,
44:31
case lenvatinib and nivolumab.
44:34
So here is the pretreatment scan.
44:37
You can see there's this observation here in the liver dome
44:40
with all this, um, sort of peripheral nodular enhancement.
44:44
This is the pretreatment examination and this is
44:46
after a few months after systemic therapy, a few months
44:50
of systemic therapy after LA Leib
44:52
and nivolumab, uh, let me go back.
44:57
Okay, I, that's fine.
44:59
Um, so what do you think LRTR non-viable, viable,
45:02
non-viable, equivocal, non progressing
45:05
or here we can't use the LRTR algorithm in this case,
45:14
right?
45:15
So, um, answers are split between non-viable.
45:18
Some of you said we can't use the LRTR algorithm in this
45:20
case, and in this case it's very tempting
45:22
to wanna use the LRTR algorithm, right?
45:25
Um, here's the pretreatment scan
45:27
and you can see all this mass like enhancement has basically
45:29
disappeared after, um, use of the systemic therapy.
45:34
Um, but the LRTR, the algorithm, um, does clarify
45:38
that in patients who are treated with, um,
45:40
both systemic therapy
45:42
and local regional therapy, they discourage the use
45:45
of the RADS treatment response algorithm.
45:47
Instead they favor, uh, the use of EM r assist
45:50
and other, um, um, um, assessment protocols
45:55
that you may use at your own institutions.
45:58
Okay, so that's all I've got in summary.
46:01
So the RADS treatment response algorithm has been
46:04
revised for 2024.
46:05
The major changes that there's separate decision pathways
46:08
for radiation and non radiation based therapy.
46:11
So it's critical to know what sort
46:13
of local regional therapy your patient has undergone, uh,
46:16
before you evaluate the images.
46:18
Um, T two weighted images
46:19
and diffusion weighted images are useful ancillary features
46:22
in assessing treatment response.
46:24
And then patients who are on systemic therapy should be, uh,
46:26
evaluated with other algorithms.
46:30
And that's all I have. Thank you so much.
46:34
Thank you so much for that case review.
46:36
We really appreciate it and for everyone else
46:38
for participating in the polling,
46:39
if you've got any questions,
46:41
we are opening the floor now for those.
46:43
Um, go ahead and pop those into that Q
46:45
and A box so we can get through them all.
46:50
So far no questions have come in,
46:52
but sometimes it takes a second
46:53
or two, so we'll give it a moment.
46:58
Uh, so the question is, why is it a different pathway
47:00
for radiation and non radiation pathways?
47:03
So, um, the, this is a new, um, this is a new, um,
47:08
sort of feature in the 2024, uh,
47:11
RADS treatment response algorithm.
47:13
Um, in the previous algorithm, everything was either
47:17
non-viable, viable or equivocal.
47:20
And, um, because radiation has this slow evolution
47:24
of changes, um, um, I think the authors felt that a lot
47:28
of patients were getting unnecessary re-treatment if we saw,
47:33
um, persistent arterial phase,
47:35
hyper enhancement after treatment.
47:36
But in reality, persistent arterial phase, hyper enhancement
47:40
after treatment as long as it's stable
47:42
or decreasing, doesn't mean
47:43
that the treatment was unsuccessful
47:45
and that the patient needs additional re-treatment.
47:48
So the new algorithm was changed
47:50
to introduce this non progressing category, um, so
47:54
that patients don't undergo unnecessary re-treatment.
47:59
Uh, second question.
48:02
Uh, can you explain how to differentiate
48:04
between LRTR non-viable versus LRTR non
48:07
progressing post-radiation?
48:09
Yeah, so
48:10
after treatment, if the, um,
48:14
MAs like enhancement completely disappears,
48:16
that's LRTR non-viable.
48:19
If the MAs like enhancement after treatment persists,
48:22
but it's stable or decreasing when compared
48:25
to the pre-treatment examination that's non progressing.
48:31
Um, okay, very good.
48:34
Do you assign LRTR when pretreatment imaging
48:37
is not available?
48:39
Um, I don't, I usually do not.
48:42
Um, I think I would evaluate it on, on a case by case basis.
48:46
Um, uh, generally speaking,
48:49
when there's no pretreatment imaging available, um,
48:53
I usually shy away from uh, uh,
48:55
use assigning an LRTR category.
49:02
Uh, okay. Uh, there's a question in the chat.
49:05
Do you need MRI and CT
49:07
or can you use this for CT with contrast only?
49:10
No. Um, the treatment response algorithm can be used
49:13
with MRI or ct.
49:14
Um, so you don't need both.
49:16
Uh, you can have one or the other.
49:19
Does PET have a role in post-treatment evaluation
49:22
and where does it fit?
49:23
So the LRTR response algorithm
49:26
after local regional therapy does not, uh, specifically,
49:30
um, include pet.
49:32
Um, and I, um,
49:35
typically at our institution we do not use PET
49:38
for these situations.
49:40
Um, I suppose it's possible in very, um, um, equivocal
49:44
or very difficult situations that someone may,
49:46
uh, may use a pet.
49:47
But generally speaking, we prefer to, um,
49:50
follow cases over time with MRI, uh,
49:52
and CT rather than use pet.
49:58
Hey, I think we got all the questions.
50:00
Thank you so much. Awesome.
50:01
Thank you so much. Yeah,
50:03
appreciate it and appreciate that.
50:04
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