Interactive Transcript
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Hello and welcome to Noon Conference hosted by MRI Online
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Noon Conference connects the global radiology community
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through free live educational webinars that are accessible
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for all and is an opportunity
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to learn alongside top radiologists from around the world.
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and previous noom conferences
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by creating a free MRI online account.
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Today's Noom conference is
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provided by the France Foundation.
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We're honored to welcome Dr.
0:34
Mary Salvato for a lecture entitled The Role
0:37
of the Radiologist in the Multidisciplinary Management
0:40
of Bronchiectasis.
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Dr. Salvato is a professor
0:43
of radiology at Columbia University Irving Medical
0:45
Center in New York City.
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She specializes in thoracic radiology
0:49
with a specific focus in interstitial lung diseases
0:52
and patterns of fibrosis on ct.
0:55
She's a passionate teacher
0:56
and has spoken throughout the country on the early
0:58
and correct diagnosis of IPF.
1:01
She's actively involved in research
1:02
and has written text on CT interpretation
1:05
for non radiologists.
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Her ultimate goal is to affect as many people as possible
1:09
through education and a positive attitude.
1:12
And we're glad she's here today to share her expertise.
1:14
At the end of the lecture, please join her in a q
1:17
and A session, which will address questions you
1:19
may have on today's topic.
1:21
Please remember to use the q
1:22
and a feature to submit your questions so we can get to
1:24
as many as we can before our time is up.
1:26
With that, we're ready to begin today's lecture. Dr.
1:29
Salur, please take it from here.
1:32
Thank you very much for your introduction.
1:34
It is my privilege to be here today to speak about the role
1:37
of radiologists in the multidisciplinary management
1:40
of bronchiectasis.
1:42
Thank you also to the France Foundation for this opportunity
1:45
to speak and, um, reach such a, uh, wonderful audience.
1:51
The learning objectives for today's talk is to be able
1:55
to differentiate the various forms
1:57
of bronchiectasis on high resolution CT scan
2:00
and to learn the role
2:01
of the radiologist in a multidisciplinary discussion.
2:07
We're gonna talk about what is bronchiectasis,
2:10
how imaging can help us decide what kind
2:12
of bronchiectasis the patient is suffering from.
2:15
How does imaging help us to make treatment decisions?
2:18
What is the role of imaging before, during, and
2:20
after treatment, and the future directions of imaging
2:23
for the diagnosis of bronchiectasis?
2:26
Let's start with a patient. This is a 61-year-old female.
2:30
She has a daily cough productive of yellow, green sputum,
2:34
frequent exacerbations treated with antibiotics.
2:37
She has bronchi with squeaks, no digital clubbing,
2:40
and her pulmonary function tests are compromised.
2:43
When I look at this chest x-ray,
2:45
I see at the lung basis there's either some ectasis
2:48
or scarring or consolidation
2:51
and I, um, I'm thinking I wish I could, could, um,
2:55
to know more about her from imaging.
2:58
What would you, um, this is a polling question now.
3:01
What would you recommend
3:02
as the next step in establishing
3:04
a diagnosis for this patient?
3:06
Would you do additional lung function testing?
3:09
Would you recommend sputum cultures, bronchoalveolar lavage,
3:13
or a chest ct?
3:18
And we'll give you a second to answer
3:20
that for a few seconds.
3:27
Thank you. So most of you would recommend a, um, CT scan
3:30
of the chest and the patient had a CT scan of the chest.
3:34
The patient, um, CT scan was done in prone position
3:37
and what we're seeing are dilated, um,
3:39
bronchi in the right middle lobe in the lingula.
3:42
The bronchi are bigger than their accompanying artery,
3:45
and this pattern in an older, um,
3:47
female is very characteristic
3:49
of mycobacterium avium intracellular.
3:52
When you see bronchiectasis in the right middle lobe
3:55
and lingular, it can occur elsewhere also,
3:58
but, um, predominantly it's usually in the right middle
4:00
lobe and lingular.
4:04
The definition of bronchiectasis is permanent dilatation
4:08
of the airway bigger than it's accompanying artery.
4:10
So here we see the artery,
4:11
the pulmonary artery and the bronchus.
4:13
And the bronchus is now bigger than the accompanying artery.
4:17
And um, we call that bronchiectasis.
4:20
It's considered a rare disease affecting 566 people per
4:25
100,000 on average,
4:26
but it's increasing with a 40% increase over
4:30
the past 10 years.
4:32
This, um, sign is called a signet ring sign
4:34
because the bronchus is bigger than the artery
4:36
and it looks like a a ring.
4:40
Lynn Reed was one of the early people
4:42
who described bronchiectasis in 1950.
4:44
She wrote an important article
4:46
and she said that the mildest form
4:48
of bronchiectasis is cylindrical bronchiectasis,
4:51
where the bronchi is bigger than the accompanying artery,
4:54
but it's relatively smooth.
4:56
She said the um, next more significant type
4:58
of bronchiectasis is Vera Rao bronchiectasis,
5:01
where there's areas of narrowing
5:03
and dilatation resembling a varicose vein.
5:07
And the worst type of bronchiectasis was cystic
5:10
bronchiectasis, which looked like a cluster of grapes.
5:13
And um, of course she wasn't seeing this on cat scan.
5:16
She was seeing this on, um, uh, physical exam.
5:19
She was doing an autopsy series.
5:22
When we think about how long it take,
5:24
how many branches the airways have from the trachea
5:27
to the periphery of the lung, the airways branch, 26 times,
5:31
there are eight conducting segmental airways from the
5:35
trachea to more the, the periphery of the lung.
5:38
Then there's eight more, um,
5:41
subsegmental conducting airways carrying the air,
5:45
and then there are eight subsegmental respiratory airways.
5:48
So they're up to 24.
5:49
And then the last two are the, the ducts and the sacs.
5:53
And so for a total of, um, 26,
5:57
and when we think about the conducting airways,
5:59
there are 16 of them.
6:01
And um, Lynn Reed saw that in people
6:04
with cylindrical bronchiectasis,
6:06
they maintained having 16 conducting airways.
6:10
In contrast, what happens with veo bronchiectasis is
6:12
that there's pruning of the branches.
6:15
So instead of having 16 branches,
6:17
now there are only eight branches.
6:19
And further in secular bronchiectasis
6:22
or cystic bronchiectasis, there's further pruning
6:24
and only four branches in the conducting airways.
6:29
And her grading system still holds
6:31
true today we're using it.
6:32
Um, when we describe bronchiectasis radiographically,
6:36
although she described it um, at autopsy,
6:40
where this lecture today is not talking about the type
6:42
of bronchiectasis that's pulled open because of fibrosis.
6:46
Um, we call that traction bronchiectasis.
6:48
Um, we're talking about bronchis, uh, bronchitis,
6:51
that bronchiectasis, that's an intrinsic prob problem
6:54
with the bronchus itself.
6:57
How does imaging help in determining the etiology
6:59
of bronchiectasis?
7:02
We're gonna do a pretest question now.
7:03
If you could answer, how should a CT scan for evaluation
7:07
of bronchiectasis be performed?
7:09
Should it be performed in full inspiration
7:13
with thick collation using intravenous contrast
7:17
or prone imaging only?
7:21
We're not gonna go over this answer now
7:24
and we'll go to the next slide.
7:29
Here's how a CT scan should be done for bronchiectasis.
7:33
We never use contrast.
7:34
I don't know if you've ever had a CT scan with contrast.
7:37
It makes you feel warm all over
7:39
and you become a little bit anxious
7:41
because you're not used to that feeling.
7:43
And so the patient becomes t knick
7:45
and that's the enemy of having a good CT scan is
7:48
to have motion artifact due to respiration.
7:51
The slice technician be as thin as possible,
7:53
ideally less than 1.5 millimeters.
7:56
And we want the patient to have a full inspiratory effort,
8:00
a big breath in and hold it.
8:02
Um, sometimes we do expiratory images on the first time
8:05
we're seeing a patient to see if there is air trapping.
8:12
Let's review some of the anatomy of the airways.
8:15
When thinking about the right up below bronchus,
8:17
I can't help but see a goldfish cracker.
8:19
You see how much the right up
8:21
below bronchus looks like a goldfish cracker.
8:24
Now you'll never look at a goldfish cracker the same
8:26
or a right up below bronchus
8:28
and there is an anterior branch, a posterior branch,
8:31
and from the top an apical branch.
8:33
When I think about the right middle lobe, there are two
8:36
branches and I think remember them because of the initials.
8:39
Middle lobe ML are the same as medial and lateral.
8:44
The right lower lobe has five branches
8:46
and they look like a compass just like north,
8:48
southeast, and west.
8:50
The right lo lobe bronchi are anterior posterior, medial
8:55
lateral and superior from the top.
8:59
So there are 10 branches in total, 10 primary
9:02
branches in the right lung
9:04
and in the left lung there are more truncated
9:07
things are combined together.
9:08
So in the left upper the lobe, instead
9:09
of having three branches and anterior and apical
9:12
and posterior, the apical
9:14
and the posterior combined leaving two branches
9:17
and the lingula has superior
9:19
and inferior instead of medial and lateral.
9:22
In the left lower lobe, the anterior
9:24
and medial are combined leaving four branches
9:26
for the left lower lobe
9:27
and a total of eight branches on the left side
9:30
and 10 branches on the right side.
9:35
Let's take this next patient, a 62-year-old female.
9:38
So pretend we're at work today
9:39
and we have this patient we're seeing, um,
9:42
they're hemoptysis, which has led
9:44
to the CAT scan of the chest.
9:46
They report having a pneumonia at age 12.
9:48
They had bronchitis during pregnancy. During pregnancy.
9:52
On the CT scan of the chest,
9:53
we see focal bronchiectasis in the left lower lobe.
9:56
Notice the bronchus is bigger than the accompanying arteries
9:59
and the microbiology shows pseudomonas.
10:02
So this is a focal, um, bronchiectasis
10:06
and there's a narrow differential for focal bronchiectasis,
10:10
which includes infections from bio, um,
10:12
bacterial infections, viral infections
10:15
and mycobacterial infections.
10:17
But also in young people,
10:18
things like foreign body aspiration is very common.
10:22
Bronchials stricture can occur
10:23
and a bronchial masses like um, broncho artis is when
10:28
a calcified lymph node erodes into the bronchus
10:31
and causes downstream obstruction
10:33
or an endobronchial tumor like an endobronchial carcinoid.
10:37
And bronchial atresia congenitally acquired stricture
10:41
of the bronchus with mucoid impaction usually
10:43
and surrounding air trapping.
10:45
So these are the reasons you might think about
10:47
for focal bronchiectasis infection.
10:50
Um, broncho ssis, bronchial atresia and bronchial carcinoid.
10:56
But most of the bronchiectasis we see is not
10:58
focal bronchiectasis.
11:00
It's more diffuse. We said previously
11:02
that there are 1 2 26 branches of the, from the trachea
11:06
to the periphery of the lung.
11:08
Right now we're gonna talk about the central bronchiectasis,
11:10
the bronchiectasis that affects the
11:12
first to the eighth branch.
11:16
Here is a pretest question.
11:19
Which upper low predominant central bronchiectasis is
11:22
associated with asthma?
11:25
Is it dism modal CLIA aspiration,
11:30
MAI or allergic broncho pulmonary aspergillosis?
11:37
I'll give you a second to answer
11:39
and then we'll go to the next slide.
11:44
When we think about central bronchiectasis,
11:47
we think about moon year Koon's disease.
11:50
Koon's disease is also called tracheal bromely,
11:53
and I reserve thinking about moona c***s
11:56
until the trachea measures three
11:59
centimeters in transverse dimension.
12:01
This is a rare disease
12:02
and in my 25 years,
12:03
I think I've seen it three times at most.
12:06
So we have tracheal bromely is moona konz,
12:09
there are sometimes tracheal diverticulum as well.
12:13
The next disease is more, um, common
12:18
allergic bronchopulmonary aspergillosis
12:21
allergic bronchopulmonary aspergillosis gives what's called
12:23
a hand and a glove appearance.
12:25
It's dilatation of the first to the fourth branch.
12:28
So we said that there's 26.
12:30
This is very proximal, the first to the fourth branch.
12:33
So the big bronchi are dilated and contain mucus.
12:36
Give the hand in glove, the hand is the mucus
12:39
and the glove is the dilated bronchus
12:41
and it's seen in patients who have asthma
12:43
and cystic fibrosis.
12:46
The next patient has William Campbell's disease.
12:51
William Campbell's disease affects the fifth
12:53
to the eighth branch of the um, bronchi.
12:57
So it you'll have normal, very central bronchi.
13:00
The peripheral bronchi will be normal,
13:01
but the bronchi in the middle will be dilated
13:03
and gives this very like a mini type of appearance
13:06
where when you see it, you know
13:08
that it's William's Campbell.
13:10
And in order to prove it, you do an expiratory CT scan
13:13
and these bronchi will collapse
13:16
because they don't have cartilage.
13:19
So the central bronchiectasis are going to be, um, Nia Kuns,
13:23
allergic bronchopulmonary aspergillosis
13:25
associated with asthma.
13:27
And then Williams Campbell,
13:29
we talked about focal, we talked about central.
13:31
And now we have another pretest question.
13:33
What is the most common location
13:35
of post-primary tuberculosis?
13:38
Is it in the back of the upper lobes?
13:41
Is it in the front of the lower lobes?
13:45
Is it in the lingula and right middle lobe
13:47
or is it in the upper lobes and anteriorly located?
13:59
Okay, we'll go to the next slide.
14:01
We talked about focal bronchiectasis,
14:03
central bronchiectasis,
14:04
but most of the bronchiectasis are more diffuse
14:07
that we see on a day-to-day basis.
14:09
And then we think about whether it is upper lobe
14:11
or lower predominant, upper low predominant bronchiectasis.
14:15
We can think about sarcoidosis, cystic fibrosis
14:18
and tuberculosis.
14:20
Sarcoidosis, you know, has four stages, um,
14:23
or five if you include no sarcoidosis.
14:26
Stage one affects just the lymph nodes become big.
14:29
I think about stage one.
14:30
One thing is sick, the lymph nodes are sick.
14:33
Stage two, two things are sick.
14:34
The patient has lymph nodes and nodules that are enlarged.
14:38
And stage three, the lymph nodes start to involute
14:42
and the nodule stay.
14:43
Stage three and stage four is fibrosis.
14:46
The fibrosis of sarid prefers the back
14:49
of the upper lungs very characteristically.
14:53
Cystic fibrosis is uh, another bronchiectasis
14:56
that affects the upper lobes.
14:57
It was, um, described at Columbia by Dr. Dorothy Anderson,
15:02
who noticed babies with salty skin were dying from lung
15:05
diseases and she coined the term cystic fibrosis.
15:08
And we see dilated bronchi in the upper lungs,
15:12
bronchiectasis in the upper lungs.
15:15
Tuberculosis affects the upper lungs as well.
15:17
And just like sarcoidosis, tuberculosis affects the back
15:20
of the upper lungs as opposed
15:22
to diseases like chronic hypersensitivity.
15:24
Pneumonitis affect the, the front, um,
15:27
tuberculosis affects the back
15:30
and it tends to have more mucus
15:31
and secretions than sarcoidosis.
15:36
Here we have another pretest question.
15:39
For an elderly female with cough and right middle lobe
15:43
and lingular bronchiectasis,
15:44
what is the most likely diagnosis?
15:46
Is it cystic fibrosis in an elderly female MAI
15:51
tuberculosis or DYS modal clia
16:04
lower low bronchiectasis has a specific
16:06
differential diagnosis.
16:07
Probably most commonly in a hospital setting we see
16:10
aspiration pneumonia with dilated bronchi
16:14
and um, mucus in the bronchi
16:16
and consolidation from aspiration
16:19
another relatively lower lobe predominant middle lobe
16:22
and lingular bronchiectasis is MAI
16:27
and MAI, like we had said previously affects the um,
16:31
right middle lobe in the lingular
16:33
with bronchiectasis bigger than it's accompanying artery.
16:36
Usually the patient will be an older female
16:39
and it's supposedly caused from not having a rigorous cough.
16:43
My mother's 85
16:44
and when she coughs, I tell her to cough more rigorously.
16:47
The term for this is Lady Windermere syndrome
16:49
because um, she was portrayed in the movies
16:52
as a polite older woman.
16:54
I think she was only 26 in the movies.
16:55
So not characteristic of a typical patient with MAI,
16:58
but dilated bronchi in the right men lobe and lingula.
17:02
We think about, um, MAI
17:05
and I see this probably three times a day.
17:07
So very common. Um, disease in in New York,
17:12
dys modal CLIA is rare.
17:14
This disease, I think about when I see someone who's a young
17:17
person usually in their twenties who has a history
17:20
of recurrent pneumonia.
17:21
And when we do the CT scan,
17:23
they have dilated lower low bronchi with thickening
17:26
of the um, walls.
17:29
Um, very characteristic dism,
17:30
modal cilia is the broad category.
17:32
If they have a right-sided heart, we call it cartas.
17:36
If they have yellow nails, we call it yellow nail syndrome.
17:39
If they have azoospermia, we call it young syndrome.
17:41
So the broad category is dism modal cilia.
17:44
So just to regroup the things that we talked about, we said
17:48
that in, uh, if you have focal bronchiectasis,
17:51
we're gonna think about an infection.
17:53
We're gonna think about broncho LSIs, bronch atresia,
17:56
bronchial carcinoid.
17:58
If you have central bronchiectasis,
18:00
we're gonna think about Nia Koons, allergic broncho,
18:03
pulmonary aspergillosis and Williams Campbell.
18:06
If we have upper lung bronchiectasis,
18:08
we're gonna think about sarcoid and tb.
18:10
They look very similar and cystic fibrosis
18:13
and more lower lung bronchiectasis.
18:15
We're gonna think about aspiration MAI and dism, modal CLIA
18:19
and um, some clinical information is gonna be helpful in
18:22
differentiating those.
18:24
Here's another example of MAI look how it's affecting, um,
18:28
the right middle lobe characteristically
18:30
with thick walled dilated bronchi,
18:33
cylindrical type bronchiectasis bigger than the
18:34
accompanying artery.
18:37
And this is another patient
18:38
with dism modal clia more diffuse lower lobe
18:41
bronchiectasis, a younger patient.
18:45
Secondary features of um, people
18:47
with airways disease is mosaic attenuation and air trapping
18:51
and those terms are challenging, um, to work with.
18:54
When we have an inspiratory CT scan, we look
18:58
and we see, we use the word mosaic attenuation
19:00
and all it really means is heterogeneity.
19:02
So most of the CAT scans we see, we can say
19:04
that there's mosaic attenuation, heterogeneity.
19:07
Um, a little bit of mosaic attenuation is expected in normal
19:11
people when it affects more than two lobes,
19:14
I usually call it mosaic attenuation.
19:16
And um, so we see areas that are darker
19:19
and areas that are lighter,
19:21
but the challenge then is deciding whether this darker area
19:25
is the sick area or the wider area is the sick area.
19:30
The way that you do that is you look at the darker area
19:32
and if the blood vessels in the darker area are smaller than
19:36
the blood vessels in the wider area,
19:38
then the darker area is the sick area
19:40
and the patient either has pulmonary artery hypertension
19:43
causing pruning of these vessels,
19:45
or they have air trapping causing relative hypoxia
19:48
that's making the vessels smaller
19:50
because the blood is shunting elsewhere to
19:52
where it's more oxygen available.
19:54
If the blood vessels are the same size and the blood area
19:57
and the white area,
19:58
then the white area has ground glass opacity.
20:02
So usually even on the inspiratory CT scan,
20:05
I can narrow the differential diagnosis down.
20:08
If I see that the vessels in this patient are smaller in the
20:11
dark area compared to the white area,
20:13
then I can just look at the pulmonary artery size
20:15
and if it is normal, assume that this is related to um,
20:19
small airways disease.
20:22
Um, when I measure the pulmonary artery size, I used
20:25
to use 33 millimeters transverse as the, um,
20:30
diameter that I would call, um, suspicious
20:32
for pulmonary artery hypertension
20:33
and recommend an echocardiogram.
20:35
But now I have, um, I wait
20:38
until the pulmonary artery is bigger than the aorta.
20:42
Um, and the pulmonary artery
20:44
to aorta ratio is greater than one to call
20:47
to suggest pulmonary artery hypertension.
20:51
And um, we can do an expiratory CT scan if we have one.
20:54
Um, uh, done.
20:56
The way that we should look at it is if it becomes more
20:59
pronounced the, um, heterogeneity,
21:01
then we consider it to be air trapping.
21:03
Pulmonary artery hypertension shouldn't become more
21:05
pronounced, the heterogeneity on expiration.
21:11
How can imaging help in determining treatment
21:13
for bronchiectasis?
21:15
The goals of treatment for bronchiectasis is
21:17
to relieve the symptoms of cough.
21:19
The cough, um, the, um, shortness
21:21
of breath prevent the progression of disease
21:23
and prevent complications like exacerbations.
21:27
What is an exacerbation?
21:28
Exacerbation is when you have 48 hours
21:31
of worsening symptoms, at least 48 hours of worsening cough,
21:35
more perial and sputum, more volume
21:38
of sputum hemoptysis.
21:40
And a clinician determines
21:42
that the treatment needs to be changed.
21:46
There are no medications approved, um, in the United States
21:50
for the treatment of bronchiectasis
21:52
to reverse bronchiectasis except for cystic fibrosis.
21:55
They have new treatments available.
21:57
Um, so you're gonna treat the underlying cause if you can.
21:59
Like if a patient is aspirating, you're gonna try to, um,
22:03
help with the aspiration.
22:04
Um, treat comorbid conditions like GERD and target.
22:09
The essential aspects of the pathophysiology
22:12
of the bronchiectasis bronchiectasis is so, um,
22:16
interesting when you think about it, a patient gets a
22:18
bacterial infection, the neutrophils come to the rescue
22:21
to try to clear the infection
22:22
but bring with them elastases, which destroy the airway.
22:26
The airway gets destroyed
22:27
and distorted, which becomes a setup for more mucus
22:29
to settle in that area.
22:31
And then a secondary infection,
22:33
which brings more neutrophils and elastases
22:36
and it just perpetuates the cycle, an ongoing
22:39
and worsening cycle.
22:42
The treatment of it involves things like
22:44
airway clearance techniques.
22:46
I had been a physical therapist before I became a doctor
22:48
and we used to do chest percussion on patients
22:50
and see how the mucus would clear hypertonic saline,
22:54
ne nebulized, macrolides suppressive antibiotics,
22:58
bronchodilators and corticosteroids the
23:00
mainstreams of treatment.
23:02
And here is a question for you.
23:04
For a female with bronchiectasis
23:06
and frequent exacerbations,
23:09
she has sputum cultures growing pseudomonas, MAC
23:12
and IgE is normal.
23:14
What would be the treatment alternative
23:15
to reduce exacerbations?
23:17
Is it chronic macrolides, inhaled tobramycin,
23:21
prednisone or albuterol?
23:36
Here we have a CT scan with dilated bronchi,
23:40
thick wall bronchi mucoid impaction,
23:43
and the treatments will be airway clearance therapies
23:46
to get up this mucus
23:47
and nebulize saline to make the secretions less viscous.
23:52
In patients with, um, nodules, uh,
23:56
that might be pseudomonas we treat with chronic macrolides
23:59
and suppressive antibiotics like tobramycin.
24:07
In patients that have central bronchiectasis,
24:10
we're gonna use inhaled bronchodilators and corticosteroids.
24:16
When do we decide to follow up imaging?
24:18
So we do an imaging, we see the patient has bronchiectasis.
24:20
How often do we need to follow up the imaging?
24:23
This is a polling question for you maybe in your practice
24:26
how you would think to follow it up best when monitoring
24:29
for progression of disease, what is the appropriate interval
24:32
for follow-up imaging when you wanna look for, not
24:35
that they're having an exacerbation,
24:36
but um, if they are progressing, is it one month,
24:41
three months, six months, or 12 months?
24:43
So
24:54
there's variable and I think that is so true
24:55
that we do have variable patterns
24:57
for following up bronchiectasis to see, um,
25:00
how it is evolving in our institution,
25:05
I think from six to 12 months, we do for following up
25:08
of patients that are not having an acute exacerbation.
25:12
So we do subsequent, um, imaging
25:14
to see if the patient is progressing.
25:17
Here's a patient that has, um, mycobacterium avium complex
25:22
with um, characteristic lingular
25:25
and right middle low bronchiectasis and some consolidation
25:29
and then a follow-up imaging six months later shows
25:32
that they have progressed and have more cavitation.
25:35
So follow-up was important for this patient.
25:40
Another reason is
25:41
to see if they're responding well to treatment.
25:43
We might do a follow-up imaging if we did a new
25:45
treatment intervention.
25:47
Here's a cystic fibrosis patient that's on CFTR modulators
25:50
for their cystic fibrosis.
25:51
And look at how beautifully it cleared on follow-up imaging
25:55
showing that the treatment was working
26:01
a patient with, um, mycobacterium who's, uh, received, uh,
26:04
treatment is also shows significant improvements.
26:07
So we see if our interventions are having a positive effect
26:12
or if the patient develops an acute illness,
26:14
we might use imaging
26:15
to see if there are complications like pneumonia or empaa.
26:21
What does the future hold for bronchiectasis?
26:23
What should we be working at as um, as
26:27
to help these patients more?
26:29
What can we do to, to help these patients?
26:32
I think, um, a grading system that included the extent
26:35
of bronchiectasis, not just the amount of dilatation
26:38
of an individual bronchus would be helpful.
26:41
Um, maybe there are many systems described in the
26:43
literature, but one that everyone adapts would be helpful
26:45
for we for communication with each other.
26:48
And I'm very hopeful about, um,
26:50
MRI being used on these patients more frequently.
26:54
Now we have what would be the limitation of MRI
26:57
as it is the standard of care.
26:58
We have people who are very short of breath,
27:00
who are coughing, having
27:02
to spend a long time in an MRI would be very difficult
27:05
for them lying flat.
27:07
But these new techniques using ZTE, which is so fast,
27:11
it's less than five millimeter minutes in size, sorry,
27:14
sorry, five minutes long.
27:16
And, um, and we put a a belt on the patient
27:19
for respiratory gating.
27:20
So there's very little motion artifact.
27:23
This was a healthy volunteer,
27:24
but you could see how good the quality of the images are
27:27
and how the, um, how well we see the, um, blood vessels.
27:32
And you can imagine if the patient
27:33
of bronchiectasis we would see it.
27:34
Well another thing that's helpful with MRI imaging is
27:38
that we can differentiate nodules from mucus on,
27:41
um, T two weighted imaging.
27:44
So I'm optimistic about the future for that.
27:47
So the takeaway points, the definition
27:49
of bronchiectasis is irreversible dilatation
27:51
of the airways bigger than their accompanying artery.
27:54
We need to be able to differentiate traction bronchiectasis,
27:57
which is a fibrotic lung disease from intrinsic
28:00
bronchial disease.
28:02
The pattern of bronchial involvement helps us
28:04
to differentiate and give a more narrow differential for
28:07
what the etiology might be
28:09
and the proper CT skin is important in order
28:11
to make the the best diagnosis.
28:17
We have some, um, post-test questions now.
28:21
Um, so if you would please answer these.
28:23
Which upper low predominant central bronchiectasis is
28:27
associated with asthma?
28:30
Is it dys modal CLIA aspiration, MAI
28:35
or allergic broncho pulmonary aspergillosis.
28:49
So allergic bronchopulmonary aspergillosis is associated
28:53
with, um, asthma as the majority of you said.
29:00
How should a CT scan for the evaluation
29:02
of bronchiectasis be performed in full inspiration
29:06
with thick collation using intravenous contrast
29:11
or prone imaging Only
29:31
full inspiration.
29:32
Exactly. For an elderly female
29:37
who has cough, a right middle lobe
29:40
and a lingular bronchiectasis,
29:42
what is the most likely diagnosis?
29:44
Is it cystic fibrosis MAI
29:49
tuberculosis or dism modal CLIA
29:52
syndrome in an elderly female.
30:08
Very good. The majority of you said MAI, which is the
30:11
right diagnosis for the right middle lobe
30:13
and lingula in an elderly female.
30:17
What is the most common location
30:19
of post-primary tuberculosis?
30:22
Is it in the back of the upper lobe?
30:24
Is it in the anterior lower lobes, the lingula
30:27
and right middle lobe or the upper lobes in the
30:30
front anterior.
30:46
Excellent. That's a hard thing. Um, to keep in mind
30:49
that the back of the upper lobe,
30:50
whenever you see an infection, think about tuberculosis
30:58
For a female with bronchiectasis and frequent exacerbations
31:03
and growing pseudomonas and mac, but her IgE is normal.
31:07
What should be the treatment alternative
31:09
to reduce exacerbations?
31:12
Chronic macrolides, inhaled tobramycin,
31:16
prednisone or albuterol?
31:30
This one is a hard one.
31:31
Um, tobramycin is the best answer for this question.
31:39
Okay. Can you please, um, scan this QR code
31:42
and complete the post-test
31:44
and evaluation to claim your credit?
31:47
I really appreciate your time being here
31:49
and I'd love to answer any questions
31:50
that you might have about, um, the lung
31:53
or bronchiectasis, um, or radiology.
31:58
Thank you very much.
32:01
Thank you so much for sharing your lecture with us, Dr.
32:03
Salvato. At this time we will open the floor
32:06
for any questions so you can submit your questions through
32:09
that q and A feature.
32:11
And we have a few in there already,
32:13
so I will throw out the first one is NTM infectious,
32:18
should they get an antibiotic?
32:21
It's a complicated course.
32:22
A lot of patients that have um, uh,
32:25
MAI infections are not treated unless they are symptomatic
32:28
or progressing on radiology.
32:32
It's ubiquitous in in the environment, so, um,
32:34
we don't always, um, treat it.
32:41
Thank you for your question.
32:45
What is the difference between NTM and MAI?
32:49
They are synonymous. They are, uh, alternative terms used.
32:54
Great.
32:56
How much air trapping is normal on expiratory CT scan?
33:01
Hmm. I, um, I divide along into four quadrants
33:05
and I accept that if it's in one, um, one quadrant,
33:10
I call it um, normal.
33:12
And when I see it in two quadrants, I call it mild.
33:15
If I see three quadrants, I call it moderate
33:18
and four severe just so that I say the same thing.
33:21
Um, when I see this, uh, when I see a CT scan so
33:25
that I can be, um, consistent.
33:27
Thank you.
33:32
What is the definition of traction bronchiectasis?
33:35
Okay, so traction bronchiectasis is when we see,
33:38
usually in the periphery
33:39
of the lung we don't see the bronchi.
33:41
So the, when the bronchi become visible in the periphery
33:44
of the lung, um, we call it traction bronchiectasis.
33:48
It's really quite interesting why that would uh, occur.
33:51
Um, when the alveoli collapsed in the periphery of the lung,
33:56
it pulls open the bronchis giving traction bronchiectasis
33:59
and it's associated with, um, fibrotic lung diseases.
34:06
I often see reports with bronchiectasis called when you
34:09
look the dilation is only mild relative
34:12
to the pulmonary vessel
34:13
and often on follow-up the dilation is no longer there.
34:17
Any recommendations on how to tell
34:18
that the dilation is bronchiectasis or a transient?
34:22
Hmm, that's a very good point.
34:24
Otherwise we're gonna be over calling bronchiectasis the
34:27
pulmonologist wait till it's 1.5 times the size
34:31
of the pulmonary artery,
34:32
but in radiology we say bigger than the pulmonary artery.
34:35
For our definition, I guess we would have
34:37
to retract the diagnosis if it became normal
34:39
on the follow-up imaging.
34:41
But by our criteria, if it's bigger on the CT scan,
34:44
I would call it bronchiectasis even if it's,
34:46
um, mildly larger.
34:48
I think an interesting thing too is sometimes it's not
34:50
that the bronchi is bigger, but the bronchis
34:52
wall is thickened,
34:54
which may make the patient have obstructive lung physiology.
34:58
I think both things are interesting to
35:00
or important to report on the CT scan,
35:02
but I differentiate bronchial wall thickening from a
35:05
bronchus that has normal wall thickness
35:07
and is bigger than it's accompanying artery.
35:14
The definition of a bronchiectasis is permanent
35:16
dilation of bronchi.
35:17
Why is there then a reversal of dilation on treatment?
35:22
Um, only with, um, the treatment now that they're,
35:25
it's new to us to be treating cystic fibrosis
35:28
and seeing improvement of the size of the bronchus.
35:30
This is relatively rare.
35:32
Maybe the definition needs to be, um, changed in the future
35:36
to include reversible dilatation, which would help
35:39
with the other problem that we had on one CT scan
35:41
where the bronchus was bigger than the artery
35:43
and on the second one it was not bigger.
35:45
So we could say bronchiectasis on one study versus another,
35:48
but for now it's considered irreversible by definition.
35:52
Hmm. Are the stages
35:54
of circuit doses established based on x-rays or CT scans?
35:59
Thank you for all these questions on x-ray.
36:02
They were initially established but
36:04
because, um, I think that we can apply those to CT scan
36:08
because we can see the same things even more on CT scan
36:13
when we see, um,
36:16
fibrosis in the upper lobes on a chest x-ray
36:20
and instead of, um,
36:21
and it pulls out from the hilum, that's very characteristic
36:25
of sarcoid, especially if there's tenting
36:26
of the hemi diaphragm, which indicates volume loss
36:29
of the upper lobes in contrast to tuberculosis,
36:32
pulls the hilum, superior sarcoid pulls the hilum out.
36:36
So although they are based on chest x-ray initially, now
36:39
that CT is available, we can apply those, um, the grading
36:44
to the CT scan.
36:46
Great. We have
36:50
a couple more questions.
36:51
Are you okay on time to answer them?
36:55
I am awesome. So happy to be able to talk with you all.
36:57
Great. Is there any benefit of low dose CT
37:01
to characterize bronchiectasis?
37:03
Yes, I think we should be moving to low dose CT scan.
37:07
Um, and, and
37:08
and to MRI, you know, we used to use, uh,
37:10
when you've been doing this for long enough, we used
37:12
to use the highest possible dose
37:14
to make the most beautiful picture
37:16
and the pendulum is absolutely swung
37:17
to using the lowest possible dose to see
37:20
what we need to see.
37:22
And I think, um, the followup for that will then be going
37:25
to MRI and if we can see the, the airway dilated,
37:28
there's no reason not to use the lowest dose possible.
37:30
Which, um, I think that lung cancer screening has shown us
37:35
that we can see dilated bronchi with a dose
37:37
of less than three milli gray.
37:41
What is the normal thickness of the bronchial wall?
37:45
It's barely perceptible.
37:46
I, I tell my residents that, um, if you can measure it,
37:50
it's probably thickened.
37:51
I don't think the cursor allows you
37:53
to measure it when it is normal,
37:55
but if you can measure it, I find that it, it is thickened
37:58
to my eye, which has been looking at it for a long time.
38:01
So I would just say that.
38:03
So if you can measure it, it is probably thickened,
38:10
Right?
38:12
In a case where we have middle super
38:14
and lower low bronchiectasis, what may be the origin?
38:19
So I guess common things happen commonly when I see
38:22
bronchiectasis in all the lobes.
38:23
It's oftentimes a very bad case of MAI.
38:26
Um, as diseases advance the early, the, the best way
38:29
to make a diagnosis is the earliest CT scan
38:32
where the disease where it starts.
38:34
Um, by the end, all types of bronchiectasis, all types
38:37
of fibrosis can look, have a lot of overlap
38:39
because there's so much extensive disease.
38:41
Um, so because common things happen, like commonly
38:45
it's usually MAI,
38:47
but any disease in its end stages can have bronchiectasis
38:50
more extensively in all lobes.
38:54
Great. I'm gonna do my best with this one.
38:56
How do you differentiate cystic bronchiectasis from cavitary
39:00
lesions of lung perma on ct?
39:03
Hmm. That would be very difficult, right?
39:05
You're gonna have to rely on, um, coronal images
39:09
and sagittal images to try to reconstruct the, um, the,
39:12
the path to the central trachea.
39:14
And sometimes that path is just, is um,
39:18
is lost, is truncated.
39:20
I think, um, cystic bronchiectasis is clustered
39:24
and usually cavitary lesions are, are seeing may,
39:28
they may be multiple, but they're not
39:29
necessarily touching each other.
39:31
And I think that that might be, um, helpful way of doing it.
39:37
All right. I heard you say you use aor aortic pulmonary
39:41
ratio to assess for pulmonary hypertension.
39:43
What happens when the aorta is e ecstatic? Mm-Hmm. Ecstatic.
39:49
In my institution we use 29 millimeter
39:51
as cutoff remain pulmonary artery.
39:53
The literature says 29 millimeters is the upper limits
39:56
of normal, but, um, if I, I heard I read a paper
40:00
that they used that said
40:01
that 33 millimeters was 95% confidence interval, so I went
40:05
to 33 millimeters.
40:06
But I still think, um, it's very hard to measure
40:09
that exactly depending on the position of the,
40:11
the patient's pulmonary artery.
40:13
And I'm much more confident when the pulmonary artery is
40:16
bigger than the aorta to call it
40:18
pulmonary artery hypertension.
40:19
I might suggest it at 33.
40:20
I don't do it at 29 um, millimeters.
40:23
I wait till 33 to be more confident
40:25
and I I I make that higher.
40:30
All right. We'll do two more and we'll let you go.
40:32
Thank you so much for answering all these questions
40:34
and thanks for everyone for participating
40:36
and giving us all these questions.
40:38
We appreciate it very much.
40:39
Awesome. Yeah. All right, so two more.
40:41
Um, can you have very small focal bronchial dilations, so
40:47
Very small bronchial dilatations.
40:49
What is a delightful question too?
40:51
Um, the secondary pulmonary lobule is the functional unit
40:54
of the long and shaped like a hexagon,
40:55
and the bronchus is in the middle of it in the earliest.
40:59
So the bronchus we normally don't see.
41:00
So it's very, very tiny in size.
41:03
When the patient has, oh, it's so interesting with,
41:06
we'll take for example, um,
41:09
UIP usual interstitial pneumonitis.
41:11
The patient's alveolar epithelial type
41:14
one cells stop working.
41:15
The type two cells take over the
41:17
function of the type one cells.
41:19
The type two cells make surfactant so there's no surfactant
41:21
to keep the alveoli open.
41:22
The alveoli starts to collapse.
41:24
If all the alveolar collapsing, they pull open the bronchus.
41:27
Now the bronchus is three millimeters in size.
41:30
It's not supposed to be three millimeters in size.
41:32
So that's the smallest little bronchi being dilated.
41:35
When I see that, I know the patient must have, um,
41:38
fibrosis occurring when it's three millimeter in size.
41:43
Over time, as it gets more and more dilated from more
41:46
and more atelectasis,
41:47
the bronchus takes up the whole secondary pulmonary lobule
41:49
and becomes 10 millimeters in size.
41:52
A dilated bronch is 10 millimeters in size,
41:54
and the secondary pulmonary lobule here
41:56
and the secondary pulmonary
41:57
lobule here are touching each other.
41:59
These two 10 millimeter size cystic structures,
42:01
which are the airways now are dilated, touching each other.
42:04
We call that honeycombing.
42:07
Got it. Thank you. Last question,
42:10
please explain Williams Campbell.
42:13
Williams Campbell is, um, a, a congenital disease
42:17
with absence of the cartilage that affects the,
42:20
a specific part of the airway from the fifth
42:22
to the eighth branch where there is no, um, no cartilage.
42:27
So we have ballooning out of the bronchus,
42:30
and when the patient expires, they collapse.
42:33
So they're short of breath because they're air trapping.
42:35
So when you see this ant mini type of appearance
42:37
where the central airways, where the trachea
42:40
and the, the proximal airways are normal
42:43
and the peripheral airways are normal,
42:44
but the middle ones are dilated,
42:46
it's likely Williams Campbell
42:47
and they're gonna do genetic testing to prove that.
42:51
Got it.
42:53
Thank you so much for your lecture
42:55
and for answering all those questions.
42:56
Dr. Salvatore, or, uh, this is a fantastic presentation.
42:59
Thank you so much for being here.
43:02
My sincere privilege. Thank you to all of you.
43:04
Have a beautiful day. Thank you. Thank
43:06
You again.
43:07
And thank you for everyone else
43:09
for participating in this noon conference.
43:11
Be sure to join us next week on Wednesday,
43:15
January 17th at 12:00 PM Eastern
43:17
for a live noon conference featuring Dr.
43:20
Lacey Macintosh for a lecture entitled Introduction
43:23
to Reading Oncology Pet ct.
43:26
You can register for this free lecture@mrionline.com
43:29
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43:33
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