Glenoid Labrum: Difference between revisions

No edit summary
(Treatment updated)
 
(6 intermediate revisions by 2 users not shown)
Line 6: Line 6:
== Introduction ==
== Introduction ==
[[File:AC ligs.png|thumb|Glenoid Labrum (marked lig.)]]
[[File:AC ligs.png|thumb|Glenoid Labrum (marked lig.)]]
The glenoid labrum is a fibrocartilaginous complex that attaches as a rim to the articular cartilage of the glenoid fossa. Its role is to: deepen and increase the surface area of the glenoid (acting as a static stabiliser of the glenohumeral joint); resist anterior and posterior movement and; attempting to block dislocation and subluxation at the maximal ranges of motion.<ref name=":0">Radiopedia [https://radiopaedia.org/articles/glenoid-labrum Glenoid Labrum] Available:https://radiopaedia.org/articles/glenoid-labrum (accessed 10.1.2023)</ref>
The glenoid labrum is a fibrocartilaginous complex that attaches as a rim to the articular [[cartilage]] of the glenoid fossa. Its role is to deepen and increase the surface area of the glenoid (acting as a static stabiliser of the [[Glenohumeral Joint|glenohumeral joint]]); resist anterior and posterior movement and assist with blocking [[Shoulder Dislocation|shoulder dislocation]] and [[Shoulder Subluxation|subluxation]] at the maximal ranges of motion.<ref name=":0">Radiopedia [https://radiopaedia.org/articles/glenoid-labrum Glenoid Labrum] Available:https://radiopaedia.org/articles/glenoid-labrum (accessed 10.1.2023)</ref>


The labrum is frequently involved in shoulder pathology, by acute trauma (eg [[Shoulder Dislocation|shoulder dislocation]]) or, more commonly, repeated microtrauma eg [[Shoulder Subluxation|shoulder subluxation]].<ref name=":1" />  
The labrum is frequently involved in shoulder pathology by acute trauma (e.g. shoulder dislocation) or more commonly by repeated microtrauma, e.g. shoulder subluxation.<ref name=":1">Clavert P. [https://www.sciencedirect.com/science/article/pii/S1877056814003259 Glenoid labrum pathology.] Orthopaedics & Traumatology: Surgery & Research. 2015 Feb 1;101(1):S19-24.Available:http://www.sciencedirect.com/science/article/pii/S1877056814003259 (accessed 10.1.2023)</ref>  
== Structure  ==
== Structure  ==
Glenoid labrum basics:  
Glenoid labrum basics<ref name=":0" />:  


* Made of fibrocartilage, 3 mm thick and 4 mm wide (highly variable).  
* Made of fibrocartilage, 3 mm thick and 4 mm wide (highly variable).  
* On cross-section, the labrum is most commonly triangular, can be round.
* The labrum is most commonly triangular or round on cross-section.
* Inferior to the equatorial pole of the glenoid, the labrum gradually becomes rounder and smaller in contrast to superiorly , here it is more triangular in shape and larger.<ref name=":0" />
* Inferior to the equatorial pole of the glenoid, the labrum gradually becomes rounder and smaller in contrast to superiorly , where it is more triangular in shape and larger.


== Attachments ==
== Attachments ==


* Superiorly: tendon of the long head of biceps brachii
* Superiorly: tendon of the long head of [[Biceps Brachii|biceps brachii]]<ref name=":0" />
* Anteriorly: superior glenohumeral ligament; middle glenohumeral ligament (variably)
* Anteriorly: superior glenohumeral ligament; middle glenohumeral ligament (variably)<ref name=":0" />
* Inferiorly: inferior glenohumeral ligament consistenting of an anterior band, axillary pouch, and a posterior band<ref name=":0" />
* Inferiorly: inferior glenohumeral ligament consisting of an anterior band, axillary pouch, and a posterior band<ref name=":0" />


== Clinical Presentation ==
== Clinical Presentation ==
Patients with tears of the glenoid labrum present with an extensive range of non-specific symptoms including:
Patients with tears of the glenoid labrum present with an extensive range of non-specific symptoms including:


* Discomfort/pain, unable to pinpoint.
* Discomfort/pain<ref name=":1" />, unable to pinpoint<ref name=":2">Sheikh, Y. (2021) ''Glenoid Labral tear: Radiology reference article'', ''Radiopaedia Blog RSS''. Available at: https://radiopaedia.org/articles/glenoid-labral-tear?lang=us (Accessed: 26 July 2023).</ref>.
* Joint weakness and instability
* Joint weakness<ref name=":2" /> and/or instability<ref name=":1" /><ref name=":2" />
* Clicking<ref name=":0" />
* Clicking<ref name=":2" />


== Anatomic Variants  ==
== Anatomic Variants  ==


* Inconsistent cross-sectional shape: blunted, cleaved, notched or flat.  
* Inconsistent cross-sectional shape: blunted, cleaved, notched or flat.<ref name=":0" />
* Medialised posterior labrum
* Medialised posterior labrum<ref name=":0" />
* Anterior capsulolabral insertion variance<ref name=":0" />
* Anterior capsulolabral insertion variance<ref name=":0" />


== Biomechanics ==
== Biomechanics ==
The labrum major functions include:  
The labrum's most important functions include<ref name=":1" />:  
# To increase the contact area between humeral head and scapula.
# Increasing the contact area between [[Humerus|humeral]] head and [[scapula]].
# Help in the provision of the “Viscoelastic Piston” effect.
# Helping in the provision of the “viscoelastic piston” effect. This is particularly effective against traction traction stress.
# Provides insertion for stabilizing structures, as a fibrous “crossroad”, with the labrum and ligaments working in synergy, each structure contributing to the varying with the position of the limb.<ref name=":1">Clavert P. [https://www.sciencedirect.com/science/article/pii/S1877056814003259 Glenoid labrum pathology.] Orthopaedics & Traumatology: Surgery & Research. 2015 Feb 1;101(1):S19-24.Available:http://www.sciencedirect.com/science/article/pii/S1877056814003259 (accessed 10.1.2023)</ref>
# Providing insertion for stabilising structures, as a fibrous “crossroad”.  


== Accuracy of Assessment ==
== Accuracy of Assessment ==


The ability to predict the presence of a glenoid labral tear by physical examination was compared with that of magnetic resonance imaging (conventional and arthro gram) and confirmed with arthroscopy. Main points of study:
The ability to predict the presence of a glenoid labral tear by physical examination was compared with that of magnetic resonance imaging (conventional and arthro gram) and confirmed with arthroscopy. The main points of study include<ref>Liu SH, Henry MH, Nuccion S, Shapiro MS, Dorey F. [https://journals.sagepub.com/doi/abs/10.1177/036354659602400205 Diagnosis of glenoid labral tears: a comparison between magnetic resonance imaging and clinical examinations.] The American journal of sports medicine. 1996 Mar;24(2):149-54 </ref>:


* 37 men and 17 women (average age, 34 years) in the study group, 64% were throwing athletes and 61% recalled specific traumatic events.  
* 37 men and 17 women (average age, 34 years) in the study group, 64% were throwing athletes and 61% recalled specific traumatic events.  
* Clinical assessment included history with specific attention to pain with overhead activities, clicking, and instances of shoulder instability.  
* Clinical assessment included history with specific attention to pain with overhead activities, clicking, and instances of shoulder instability.  
* Physical examination included the apprehension, relocation, load and shift, inferior sulcus sign, and crank tests.  
* Physical examination included the [[Apprehension Test|apprehension]], relocation, [[Load and Shift|load and shift]], [[Inferior Sulcus Test|inferior sulcus sign]], and [[Crank Test|crank tests]].
* Shoulder arthroscopy confirmed labral tears in 41 patients (76%).  
* Shoulder arthroscopy confirmed labral tears in 41 patients (76%).  
* Magnetic resonance imaging produced a sensitivity of 59% and a specificity of 85%.  
* Magnetic resonance imaging produced a sensitivity of 59% and a specificity of 85%.  
* Physical examination yielded a sensitivity of 90% and a specificity of 85%.  
* Physical examination yielded a sensitivity of 90% and a specificity of 85%.  


Conclusion: Physical examination is more accurate in predicting glenoid labral tears than magnetic resonance imaging. In this era of cost containment, completing the diagnostic workup in the clinic without expensive ancillary studies allows the patient's care to proceed in the most timely and economic fashion.<ref>http://journals.sagepub.com/doi/abs/10.1177/036354659602400205</ref>
Conclusion: Physical examination is more accurate in predicting glenoid labral tears than magnetic resonance imaging. In this era of cost containment, completing the diagnostic workup in the clinic without expensive additional studies allows the patient's care to proceed in the most timely and economic fashion.
== Particular Places ==
== Location of Injuries ==
Labral injuries are named according to localisation
[[File:Shoulder dislocation, anteroposterior after reduction, with Bankart and Hill-Sachs lesions, with labels.jpeg|thumb|Bankart lesion, a glenoid labrum injury]]
Labral injuries are named according to their location:


* Superior labrum: [[SLAP Lesion|SLAP]] lesion
* Superior labrum: [[SLAP Lesion|SLAP]] lesions are the most common and includes 8 types of SLAP tears. Less frequently, Andrew's lesion can occur<ref name=":1" />.
* Anteroinferior labrum: [[Bankart lesion]]; Perthes lesion; Glenolabral articular disruption lesion (GLAD); Anterior labroligamentous periosteal sleeve avulsion lesion (ALPSA)
* Anterior labral tear: This is very rare and is a pure anterior tear associated with a medial glenohumeral ligament tear<ref name=":1" />.
* Posteroinferior labrum: Reverse Bankart lesion; Posterior GLAD; Posterior labrocapsular periosteal sleeve avulsion lesion (POLPSA); Kim lesion (superficial tears between the posterior glenoid labrum and glenoid articular cartilage without labral detachment)
* Posterior labrum: Less frequent when compared to anterior tears. It is caused by Walch’s internal impingement in the stable shoulder. There are various contributing factors including anterior capsule insufficiency, humeral retroversion or posteroinferior capsule contracture<ref name=":1" />.
* Circumferential labral lesion<div class="researchbox"></div>
* Anteroinferior labrum: Typically found in shoulders with acute or chronic anterior instability. Injury types include: [[Bankart lesion]]; Perthes lesion; glenolabral articular disruption lesion (GLAD); anterior labroligamentous periosteal sleeve avulsion lesion (ALPSA). Bankart lesions are the most common type of injury in the unstable shoulder<ref name=":1" />.
* Posteroinferior labrum: These injuries are found in the rare cases of posterior instability. Injuries include reverse Bankart lesion; and Kim's lesion (superficial tears between the posterior glenoid labrum and glenoid articular cartilage without labral detachment)<ref name=":1" />. Other lesions include posterior GLAD and posterior labrocapsular periosteal sleeve avulsion lesion (POLPSA).
* Circumferential labral lesion
 
== Treatment and prognosis ==
'''Painful tears:'''
 
SLAP: There is debate between tenodesis of the long head of biceps brachii tendon versus suturing the labral tear. In flap or bucket-handle tears, treatment can be as simple as a resection of the bucket-handle followed by a check of the biceps footplate insertion stability. Tenodesis is probably the most effective and final option<ref name=":1" />. The French Arthroscopy Society suggests that suturing can be done in athletic, under 20 years old persons and that for the rest, biceps tenodesis and tenotomy should be done<ref name=":1" />.
 
Walch’s internal impingement: Rehabilitation by a physiotherapist is the first-line of treatment. Should conservative management fail, the old successful surgery option is Lévigne glenoidplasty<ref name=":1" />.
 
'''Cases of instability:'''
 
Anterior instability: In summary, arthroscopy is performed to reinsert the detached anterior labrum and capsule and to treat any associated lesions. When bone-blocks are done, resection of the anterior labral tear will be done<ref name=":1" />.
 
Posterior instability: Reliability of arthroscopic posterior stabilisation is improving and includes suturing the labrum onto the posterior edge of the glenoid cavity<ref name=":1" />.
 
For anterior and posterior instability, prognosis depends on associated (especially cartilage) lesions<ref name=":1" />.
== References  ==
== References  ==



Latest revision as of 15:32, 26 July 2023

Original Editor - Priyanka Chugh

Top Contributors - Priyanka Chugh, Kim Jackson, Lucinda hampton, Naomi O'Reilly, Wendy Snyders, 127.0.0.1 and Wanda van Niekerk

Introduction[edit | edit source]

Glenoid Labrum (marked lig.)

The glenoid labrum is a fibrocartilaginous complex that attaches as a rim to the articular cartilage of the glenoid fossa. Its role is to deepen and increase the surface area of the glenoid (acting as a static stabiliser of the glenohumeral joint); resist anterior and posterior movement and assist with blocking shoulder dislocation and subluxation at the maximal ranges of motion.[1]

The labrum is frequently involved in shoulder pathology by acute trauma (e.g. shoulder dislocation) or more commonly by repeated microtrauma, e.g. shoulder subluxation.[2]

Structure[edit | edit source]

Glenoid labrum basics[1]:

  • Made of fibrocartilage, 3 mm thick and 4 mm wide (highly variable).
  • The labrum is most commonly triangular or round on cross-section.
  • Inferior to the equatorial pole of the glenoid, the labrum gradually becomes rounder and smaller in contrast to superiorly , where it is more triangular in shape and larger.

Attachments[edit | edit source]

  • Superiorly: tendon of the long head of biceps brachii[1]
  • Anteriorly: superior glenohumeral ligament; middle glenohumeral ligament (variably)[1]
  • Inferiorly: inferior glenohumeral ligament consisting of an anterior band, axillary pouch, and a posterior band[1]

Clinical Presentation[edit | edit source]

Patients with tears of the glenoid labrum present with an extensive range of non-specific symptoms including:

  • Discomfort/pain[2], unable to pinpoint[3].
  • Joint weakness[3] and/or instability[2][3]
  • Clicking[3]

Anatomic Variants[edit | edit source]

  • Inconsistent cross-sectional shape: blunted, cleaved, notched or flat.[1]
  • Medialised posterior labrum[1]
  • Anterior capsulolabral insertion variance[1]

Biomechanics[edit | edit source]

The labrum's most important functions include[2]:

  1. Increasing the contact area between humeral head and scapula.
  2. Helping in the provision of the “viscoelastic piston” effect. This is particularly effective against traction traction stress.
  3. Providing insertion for stabilising structures, as a fibrous “crossroad”.

Accuracy of Assessment[edit | edit source]

The ability to predict the presence of a glenoid labral tear by physical examination was compared with that of magnetic resonance imaging (conventional and arthro gram) and confirmed with arthroscopy. The main points of study include[4]:

  • 37 men and 17 women (average age, 34 years) in the study group, 64% were throwing athletes and 61% recalled specific traumatic events.
  • Clinical assessment included history with specific attention to pain with overhead activities, clicking, and instances of shoulder instability.
  • Physical examination included the apprehension, relocation, load and shift, inferior sulcus sign, and crank tests.
  • Shoulder arthroscopy confirmed labral tears in 41 patients (76%).
  • Magnetic resonance imaging produced a sensitivity of 59% and a specificity of 85%.
  • Physical examination yielded a sensitivity of 90% and a specificity of 85%.

Conclusion: Physical examination is more accurate in predicting glenoid labral tears than magnetic resonance imaging. In this era of cost containment, completing the diagnostic workup in the clinic without expensive additional studies allows the patient's care to proceed in the most timely and economic fashion.

Location of Injuries[edit | edit source]

Bankart lesion, a glenoid labrum injury

Labral injuries are named according to their location:

  • Superior labrum: SLAP lesions are the most common and includes 8 types of SLAP tears. Less frequently, Andrew's lesion can occur[2].
  • Anterior labral tear: This is very rare and is a pure anterior tear associated with a medial glenohumeral ligament tear[2].
  • Posterior labrum: Less frequent when compared to anterior tears. It is caused by Walch’s internal impingement in the stable shoulder. There are various contributing factors including anterior capsule insufficiency, humeral retroversion or posteroinferior capsule contracture[2].
  • Anteroinferior labrum: Typically found in shoulders with acute or chronic anterior instability. Injury types include: Bankart lesion; Perthes lesion; glenolabral articular disruption lesion (GLAD); anterior labroligamentous periosteal sleeve avulsion lesion (ALPSA). Bankart lesions are the most common type of injury in the unstable shoulder[2].
  • Posteroinferior labrum: These injuries are found in the rare cases of posterior instability. Injuries include reverse Bankart lesion; and Kim's lesion (superficial tears between the posterior glenoid labrum and glenoid articular cartilage without labral detachment)[2]. Other lesions include posterior GLAD and posterior labrocapsular periosteal sleeve avulsion lesion (POLPSA).
  • Circumferential labral lesion

Treatment and prognosis[edit | edit source]

Painful tears:

SLAP: There is debate between tenodesis of the long head of biceps brachii tendon versus suturing the labral tear. In flap or bucket-handle tears, treatment can be as simple as a resection of the bucket-handle followed by a check of the biceps footplate insertion stability. Tenodesis is probably the most effective and final option[2]. The French Arthroscopy Society suggests that suturing can be done in athletic, under 20 years old persons and that for the rest, biceps tenodesis and tenotomy should be done[2].

Walch’s internal impingement: Rehabilitation by a physiotherapist is the first-line of treatment. Should conservative management fail, the old successful surgery option is Lévigne glenoidplasty[2].

Cases of instability:

Anterior instability: In summary, arthroscopy is performed to reinsert the detached anterior labrum and capsule and to treat any associated lesions. When bone-blocks are done, resection of the anterior labral tear will be done[2].

Posterior instability: Reliability of arthroscopic posterior stabilisation is improving and includes suturing the labrum onto the posterior edge of the glenoid cavity[2].

For anterior and posterior instability, prognosis depends on associated (especially cartilage) lesions[2].

References[edit | edit source]

  1. 1.0 1.1 1.2 1.3 1.4 1.5 1.6 1.7 Radiopedia Glenoid Labrum Available:https://radiopaedia.org/articles/glenoid-labrum (accessed 10.1.2023)
  2. 2.00 2.01 2.02 2.03 2.04 2.05 2.06 2.07 2.08 2.09 2.10 2.11 2.12 2.13 2.14 Clavert P. Glenoid labrum pathology. Orthopaedics & Traumatology: Surgery & Research. 2015 Feb 1;101(1):S19-24.Available:http://www.sciencedirect.com/science/article/pii/S1877056814003259 (accessed 10.1.2023)
  3. 3.0 3.1 3.2 3.3 Sheikh, Y. (2021) Glenoid Labral tear: Radiology reference article, Radiopaedia Blog RSS. Available at: https://radiopaedia.org/articles/glenoid-labral-tear?lang=us (Accessed: 26 July 2023).
  4. Liu SH, Henry MH, Nuccion S, Shapiro MS, Dorey F. Diagnosis of glenoid labral tears: a comparison between magnetic resonance imaging and clinical examinations. The American journal of sports medicine. 1996 Mar;24(2):149-54