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Musculoskeletal Imaging
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Prepare trainees to be on call for the emergency department with this specialized training series.
Training Collections
Library Memberships
On-demand course library with video lectures, expert case reviews, and more
Fellowship Certificate™ Programs
Practice-focused training programs designed to help you gain experience in a specific subspecialty area.
Ultimate Learning Pass
Unlock access to our full Course Library and all self-paced Fellowships.
Continuing Medical Education (State CME)
Complete all of your state CME requirements in one convenient place.
Noon Conference (Free)
Get access to free live lectures, every week, from top radiologists.
Case of the Week (Free)
Get a free weekly case delivered right to your inbox.
Case Crunch: Rapid Case Review (Free)
Register for free live board reviews.
Dr. Resnick's MSK Conference
Learn directly from the MSK Master himself.
Lower Extremities MRI Conference
Musculoskeletal Imaging
For Training Programs
Supplement your training program with case-based learning for residents, registrars, fellows, and more.
For Private Practices
Upskill in high growth, advanced imaging areas.
Compliance
NewTrack, fulfill, and report on all your radiologists' credentialing and licensing requirements.
Emergency Call Prep
Prepare trainees to be on call for the emergency department with this specialized training series.
7 topics, 52 min. of video
Introduction to Emergency MSK Imaging
3 m.Projection Radiography – Basic Principles
11 m.Normal Variants
4 m.Common Presentations: Fractures, Overt Trauma
10 m.Common Presentations: Fractures, Chronic Repititious Trauma
10 m.Common Presentations: Infections
10 m.Common Presentations: Neoplasms and Tumor-like Conditions
9 m.12 topics, 50 min. of video
Introduction to Shoulder Radiography
11 m.Case: Sternoclavicular Dislocation
3 m.Sternoclavicular Dislocation Summary
5 m.Case: Posterior Shoulder Dislocation
2 m.Shoulder Dislocation Summary
9 m.Case: Greater Tuberosity Fracture
3 m.Avulsion Lesions Summary
3 m.Proximal Humerus Fractures
7 m.Case: Acromioclavicular Joint Separation
2 m.Acromioclavicular Joint Separation Summary
6 m.Case: Lung Apex Lesion
2 m.Lung Apex Lesion Summary
2 m.12 topics, 20 min. of video
Introduction to Elbow Radiography
3 m.Elbow Fractures
2 m.Case: Coronoid Fracture
2 m.Coronoid Fracture Summary
2 m.Case: Capitellum Fracture
2 m.Capitellum Fracture Summary
2 m.Case: Radial Head Fracture
2 m.Radial Head Fracture Summary
2 m.Case: Monteggia Lesion
2 m.Forearm Fracture Dislocations Summary
5 m.Case: Olecranon Bursitis
1 m.Olecranon Bursitis Summary
3 m.27 topics, 50 min. of video
Introduction to Wrist and Hand Radiography
3 m.Case: Colle Fracture
2 m.Case: Reverse Barton Fracture
2 m.Distal Radius Fractures Summary
7 m.Case: Scaphoid Waist Fracture
3 m.Scaphoid Fractures Summary
4 m.Case: Lunate Dislocation
2 m.Case: Perilunate Dislocation
1 m.Lunate and Perilunate Dislocations Summary
4 m.Case: Hamate Hook Fractures
2 m.Hamate Hook Fractures Summary
1 m.Case: Triquetral Avulsion
2 m.Triquetral Avulsion Summary
2 m.Case: CMC Injury
2 m.CMC Injuries Summary
3 m.Case: Skier’s (Gamekeeper’s) Thumb
2 m.Skier’s (Gamekeeper’s) Thumb Summary
2 m.Case: Thumb Dislocation
2 m.Thumb Lesions Summary
4 m.Case: Mallet Finger
1 m.Mallet Finger Summary
1 m.Case: Volar Plate Injury
2 m.Volar Plate Injury Summary
1 m.Case: Nail Bed Injury (Distal Phalanx Tuft Fracture)
1 m.Nail Bed Injuries
1 m.Infections in the Wrist and Hand
3 m.Wrist and Hand Summary
3 m.20 topics, 1 hr. 44 min. of video
Introduction on Pelvis/Hip Radiography
13 m.Introduction to Pelvic Fractures
10 m.Introduction to Pelvic Anatomy
5 m.Introduction to Acetabular Fractures
4 m.Introduction to Acetabular Fracture Types
11 m.Cases: Acetabular Fracture Patterns
6 m.Hip Dislocations
2 m.Case: Subcapital Femoral Neck Fracture
3 m.Hip Fractures/Dislocations Summary
4 m.Case: Greater Trochanteric Fracture
3 m.Hip Avulsion Fractures Summary
10 m.Cases: Sacral Insufficiency Fractures
9 m.Case: Stress Fracture/Reaction
3 m.Stress Fracture Summary
2 m.Osteochondral Fractures and Osteonecrosis
5 m.Case: Calcific Tendinitis
3 m.Calcific Tendinitis Summary
6 m.Case: Bisphosphonate Fracture
4 m.Case: Pelvic Lines
4 m.Pelvic Lines Summary
5 m.15 topics, 1 hr. 7 min. of video
Introduction to Knee Radiography
10 m.Knee Joint Effusions
4 m.Case: Segond Fracture
3 m.Segond Fracture Summary
4 m.Case: Tibial Stress Fracture
4 m.Tibial Stress Fracture Summary
4 m.Case: Tibial Plateau Fracture
3 m.Tibial Plateau Fractures Summary
5 m.Cases: Subchondral Insufficiency Fractures
10 m.Periosteal Reaction and Prepatellar Bursitis
4 m.Case: Patellofemoral Dislocation
6 m.Patellofemoral Dislocation Summary
6 m.Case: Patellar Fracture
3 m.Extensor Mechanism Disruption
5 m.Knee Checklist
3 m.18 topics, 48 min. of video
Introduction to Foot and Ankle Radiography
5 m.Case: Osteochondral Lesion
2 m.Osteochondral Lesion Summary
2 m.Case: High Ankle Sprain
2 m.Common Causes of Heel Pain
3 m.Case: Talus Lateral Process Fracture
2 m.Lateral Process Fracture Summary
5 m.Case: Distal Fibular Fracture
2 m.Case: Jones Fracture
2 m.5th Metatarsal Fractures Summary
3 m.Case: Peroneal Retinaculum Avulsion
2 m.Case: Extensor Digitorum Brevis Avulsion
1 m.Case: Calcaneus Anterior Process Fracture
1 m.Ankle Avulsions Summary
4 m.Ankle Fractures Summary
9 m.First Metatarsal Dislocation
1 m.Case: Lisfranc Ligament Injury
2 m.Lisfranc Ligament Injury Summary
9 m.0:00
So here we have a lateral projection
0:03
of the knee showing this very large supra
0:05
patellar joint effusion.
0:07
And on a cross table lateral we identify
0:11
that there is a fat fluid level.
0:13
And so this represents a lipo orthosis.
0:16
Here's a diagram showing how that finding is generated.
0:21
So when you have a joint effusion,
0:23
the knee joint actually has a very large capacity, can hold
0:27
probably an excess of 30 mls of uh, fluid.
0:30
So when a joint effusion occurs, it often works its way
0:34
into the supra patellar recess
0:36
and that's where it's best visualized
0:38
and detected on radiography.
0:41
So on the lateral projection, particularly if it's done
0:44
supine, the so-called cross table lateral,
0:47
we then can see in tangent that there is the fluid
0:51
or blood products which are less dense than fat.
0:55
So that will be in a dependent position.
0:58
And then fat which can be expressed into the joint related
1:02
to an intraarticular fracture, tends to be lighter
1:06
and it will aggregate in an anti dependent position
1:10
and create this interface that we can see on the radiograph.
1:15
So when we're looking at our cross table laterals
1:18
of the knee, we want to pay particular attention
1:21
to the supra patella recess
1:23
and identify whether there is
1:27
a fluid density collection in that area.
1:30
Typical criteria
1:31
that people use is in the pre femoral fat is that zero
1:34
to five would be a normal thickness, five
1:38
to 10 would be indeterminate or maybe a small effusion,
1:41
and then greater than 10 is
1:43
considered positive for a effusion.
1:44
And they can be small, medium,
1:46
or large, just like I showed you previously, a large one.
1:49
And so this represents a joint effusion.
1:52
However, if you see an interface that is a straight line
1:56
between that effusion rather than this rounded
1:59
or ovoid contour between the fat
2:02
and the fluid, then this becomes diagnostic
2:05
of a lipo orthosis
2:07
and you are very suspicious for intraarticular
2:11
fracture causing expression of the fat.
2:14
And in this case an MRI was done.
2:17
And we see that there is a posterior column,
2:21
tibial plateau fracture that extends the articular margin
2:25
and that's the reason that this person had the
2:27
lipo orthosis.
2:29
The fat is dark on this fat suppressed sequence.
2:33
Here the fluid is bright,
2:35
but one can visualize a straight line
2:38
on this supine acquired MRI.
2:41
So here's a, a case of a large joint effusion,
2:45
somewhat dense and there is a
2:46
differential diagnosis for that.
2:49
Most commonly in the emergency department,
2:52
it's gonna be related to an acute injury of an ACL tear.
2:56
So with ACL tears, you do get a substantial amount
2:58
Of hemorrhage.
2:59
And when that hemorrhage gets into the joint, in addition
3:03
to the joint fluid can produce a lot of distension to the
3:07
sup patella recess, but also look relatively radio opaque.
3:11
In a non-traumatic setting, uh,
3:13
or minor trauma, it might be an issue related
3:16
to a bleeding disorder.
3:18
And in a young male, such as in the case here,
3:21
could represent bleeding related to hemophilia.
Interactive Transcript
0:00
So here we have a lateral projection
0:03
of the knee showing this very large supra
0:05
patellar joint effusion.
0:07
And on a cross table lateral we identify
0:11
that there is a fat fluid level.
0:13
And so this represents a lipo orthosis.
0:16
Here's a diagram showing how that finding is generated.
0:21
So when you have a joint effusion,
0:23
the knee joint actually has a very large capacity, can hold
0:27
probably an excess of 30 mls of uh, fluid.
0:30
So when a joint effusion occurs, it often works its way
0:34
into the supra patellar recess
0:36
and that's where it's best visualized
0:38
and detected on radiography.
0:41
So on the lateral projection, particularly if it's done
0:44
supine, the so-called cross table lateral,
0:47
we then can see in tangent that there is the fluid
0:51
or blood products which are less dense than fat.
0:55
So that will be in a dependent position.
0:58
And then fat which can be expressed into the joint related
1:02
to an intraarticular fracture, tends to be lighter
1:06
and it will aggregate in an anti dependent position
1:10
and create this interface that we can see on the radiograph.
1:15
So when we're looking at our cross table laterals
1:18
of the knee, we want to pay particular attention
1:21
to the supra patella recess
1:23
and identify whether there is
1:27
a fluid density collection in that area.
1:30
Typical criteria
1:31
that people use is in the pre femoral fat is that zero
1:34
to five would be a normal thickness, five
1:38
to 10 would be indeterminate or maybe a small effusion,
1:41
and then greater than 10 is
1:43
considered positive for a effusion.
1:44
And they can be small, medium,
1:46
or large, just like I showed you previously, a large one.
1:49
And so this represents a joint effusion.
1:52
However, if you see an interface that is a straight line
1:56
between that effusion rather than this rounded
1:59
or ovoid contour between the fat
2:02
and the fluid, then this becomes diagnostic
2:05
of a lipo orthosis
2:07
and you are very suspicious for intraarticular
2:11
fracture causing expression of the fat.
2:14
And in this case an MRI was done.
2:17
And we see that there is a posterior column,
2:21
tibial plateau fracture that extends the articular margin
2:25
and that's the reason that this person had the
2:27
lipo orthosis.
2:29
The fat is dark on this fat suppressed sequence.
2:33
Here the fluid is bright,
2:35
but one can visualize a straight line
2:38
on this supine acquired MRI.
2:41
So here's a, a case of a large joint effusion,
2:45
somewhat dense and there is a
2:46
differential diagnosis for that.
2:49
Most commonly in the emergency department,
2:52
it's gonna be related to an acute injury of an ACL tear.
2:56
So with ACL tears, you do get a substantial amount
2:58
Of hemorrhage.
2:59
And when that hemorrhage gets into the joint, in addition
3:03
to the joint fluid can produce a lot of distension to the
3:07
sup patella recess, but also look relatively radio opaque.
3:11
In a non-traumatic setting, uh,
3:13
or minor trauma, it might be an issue related
3:16
to a bleeding disorder.
3:18
And in a young male, such as in the case here,
3:21
could represent bleeding related to hemophilia.
Report
Faculty
John A Carrino, MD, MPH
Vice-Chairman, Radiology and Imaging
Hospital for Special Surgery
Tags
X-Ray (Plain Films)
Trauma
Musculoskeletal (MSK)
MRI
Knee
Emergency
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