Rotator Cuff Tear
Published on September 10, 2026
Risk Factors
Age >40, repetitive overhead activity (painters, swimmers, baseball pitchers), smoking, diabetes mellitus, dominant arm, prior shoulder impingement, acute trauma (fall on outstretched hand)
Etiology
Degenerative tendinopathy from chronic subacromial impingement; acute traumatic avulsion in younger patients
Presentation
Shoulder pain (worse at night, especially lying on the affected side), weakness with overhead activities, progressive loss of active range of motion
Classic Exam
Positive drop arm test, positive empty can (Jobe) test, painful arc between 60 and 120 degrees of abduction, weakness in external rotation or abduction against resistance
Diagnostics
X-ray as first-line (may show superior migration of the humeral head); MRI is the gold standard confirming tear location, size, and degree (partial vs. full-thickness)
Management
Partial tears and low-demand patients: NSAIDs, physical therapy, subacromial corticosteroid injection. Full-thickness tears or failed conservative therapy: arthroscopic surgical repair
01Pathophysiology
The rotator cuff is a group of four muscles and their tendons that stabilize the glenohumeral joint: the supraspinatus, infraspinatus, teres minor, and subscapularis (often remembered by the mnemonic SITS). Each muscle has a distinct action. The supraspinatus initiates abduction (the first 15 degrees), the infraspinatus and teres minor perform external rotation, and the subscapularis handles internal rotation. Of these four, the supraspinatus is the most commonly torn, and it is the tendon that exam vignettes test most frequently.
The reason the supraspinatus is so vulnerable lies in its anatomy. Its tendon passes through the narrow subacromial space, sandwiched between the humeral head below and the acromion and coracoacromial ligament above. With repetitive overhead movements, the tendon is repeatedly compressed against the undersurface of the acromion, a process known as subacromial impingement. Over years, this mechanical irritation leads to tendinopathy, microtearing, and eventual macroscopic rupture.
A second contributing factor is the tendon's blood supply. The supraspinatus tendon has a "critical zone" of relative hypovascularity located approximately 1 cm proximal to its insertion on the greater tuberosity of the humerus. This watershed area receives poor perfusion, which impairs the tendon's ability to heal from repetitive microtrauma. This is why degenerative tears tend to occur at this exact location.
In younger patients, the mechanism is typically traumatic: a fall on an outstretched hand (FOOSH) or a sudden forceful abduction or deceleration injury (as in throwing athletes). These tears are usually acute, full-thickness, and involve otherwise healthy tendon tissue. In contrast, older patients develop tears gradually through the degenerative process described above, often presenting with insidious onset of weakness and pain.
The connection between pathophysiology and symptoms is direct. Because the supraspinatus initiates abduction, a full-thickness tear causes inability to maintain the arm in abduction (the drop arm sign). Pain occurs in the subacromial space during the mid-arc of abduction (60 to 120 degrees), because this is the range where the torn or inflamed tendon is maximally compressed under the acromion, producing the classic painful arc. Night pain results from the dependent position of the arm compressing the inflamed subacromial structures against the acromion while lying down.
02Classification and Clinical Manifestation
CLASSIFICATION | DESCRIPTION | CLINICAL FEATURES |
|---|---|---|
Partial-thickness tear | Incomplete disruption of tendon fibers; may be articular-sided, bursal-sided, or intratendinous | Pain with overhead activity and positive impingement signs (Neer, Hawkins); strength may be preserved or only mildly reduced; drop arm test usually negative |
Full-thickness tear (small, <1 cm) | Complete disruption through the entire tendon thickness, limited width | Pain and mild weakness in abduction or external rotation; may mimic impingement clinically; imaging required for confirmation |
Full-thickness tear (medium, 1 to 3 cm) | Moderate complete tear, typically involving the supraspinatus | Clear weakness in abduction; positive drop arm test; painful arc present; night pain common |
Full-thickness tear (large, 3 to 5 cm) | Extensive complete tear, may extend into the infraspinatus | Marked weakness in abduction and external rotation; pseudoparalysis may begin to develop; functional limitation is significant |
Full-thickness tear (>5 cm, extensive) | Involves two or more rotator cuff tendons | Severe functional loss; pseudoparalysis (inability to actively raise the arm); may present with superior migration of the humeral head on imaging |
Acute traumatic tear | Sudden onset after a fall, dislocation, or forceful movement; occurs in younger patients with healthy tendon | Sudden pain, immediate weakness, often with bruising; commonly full-thickness; surgical repair favored early |
Chronic degenerative tear | Gradual onset in patients >40 years, related to impingement and hypovascularity | Insidious pain and weakness; atrophy of the supraspinatus or infraspinatus fossa may be visible on exam; fatty infiltration of muscle on MRI |
The distinction between acute traumatic and chronic degenerative tears is high-yield for exam purposes. A vignette describing a 25-year-old baseball pitcher with sudden shoulder pain and weakness after a forceful throw points to an acute traumatic tear requiring early surgical consultation. A vignette describing a 60-year-old with months of progressive shoulder pain and weakness during overhead reaching points to a chronic degenerative tear, where conservative management is tried first.
03Diagnostic Workup
TEST | ROLE | KEY FINDINGS |
|---|---|---|
Plain radiograph (X-ray) | Best initial test | May show superior migration of the humeral head (indicating large chronic tear), acromial spurring, calcific tendinopathy; primarily used to exclude fracture, dislocation, or arthritis |
MRI (without contrast) | Most accurate (gold standard) | Directly visualizes tear size, location (partial vs. full-thickness), tendon retraction, and degree of muscle atrophy or fatty infiltration |
MR arthrography | Used when standard MRI is equivocal | Gadolinium contrast injected into the joint enhances detection of small partial-thickness articular-sided tears |
Ultrasound | Alternative to MRI | Operator-dependent; can detect full-thickness tears with good sensitivity; increasingly used in clinic for rapid assessment |
Physical examination maneuvers | Clinical screening | Drop arm test (supraspinatus full-thickness tear), empty can / Jobe test (supraspinatus), external rotation lag sign (infraspinatus), lift-off / belly press test (subscapularis), Neer and Hawkins signs (impingement) |
The workup begins with a thorough physical examination. When a patient presents with shoulder pain and weakness, the examiner should test each rotator cuff muscle individually. The empty can test (Jobe test) is performed by having the patient abduct the arms to 90 degrees in the scapular plane (about 30 degrees forward of the coronal plane) with the thumbs pointing downward, then resist downward pressure. Pain or weakness indicates supraspinatus pathology. The drop arm test asks the patient to slowly lower the arm from full abduction; inability to control the descent (the arm drops suddenly) strongly suggests a full-thickness supraspinatus tear and is one of the most tested physical exam findings.
For imaging, the best initial test is a plain radiograph. While X-rays cannot directly visualize soft tissue tears, they are essential to rule out fractures, glenohumeral dislocation, and osteoarthritis. In chronic, large rotator cuff tears, the X-ray may reveal superior migration of the humeral head, because the torn supraspinatus no longer holds the humeral head down against the pull of the deltoid. This finding, when described in a vignette, is a strong clue pointing toward an advanced rotator cuff tear.
The most accurate test is MRI. It is ordered after the X-ray when a rotator cuff tear is clinically suspected. MRI provides detailed information about the tear type, the number of tendons involved, the degree of tendon retraction, and the presence of fatty infiltration of the muscle belly (a sign of chronicity that predicts poorer surgical outcomes). If the standard MRI is inconclusive, particularly for small partial-thickness tears on the articular side, MR arthrography with intra-articular gadolinium can increase diagnostic sensitivity.
04Management and Treatment
CLINICAL SCENARIO | MANAGEMENT | DETAILS |
|---|---|---|
Partial-thickness tear, low-demand patient | Conservative | NSAIDs (ibuprofen 400 to 800 mg TID or naproxen 500 mg BID with meals) for 2 to 4 weeks; structured physical therapy focusing on rotator cuff strengthening and scapular stabilization for 6 to 12 weeks; subacromial corticosteroid injection (e.g., triamcinolone 40 mg with lidocaine) if pain limits rehabilitation; limit to 3 injections per year |
Full-thickness tear, elderly or low-demand patient | Conservative trial first | Same conservative regimen as above for a minimum of 6 to 12 weeks; many elderly patients regain adequate function without surgery |
Full-thickness tear, young or active patient | Surgical repair | Arthroscopic rotator cuff repair; followed by 4 to 6 weeks of sling immobilization, then progressive physical therapy for 4 to 6 months total |
Acute traumatic full-thickness tear, young patient | Early surgical repair | Surgery ideally within 3 to 6 weeks of injury to prevent retraction and fatty degeneration; better outcomes with early intervention |
Failed conservative therapy (>3 to 6 months) | Surgical repair | Arthroscopic repair if the tear is repairable; if irreparable (severe retraction, advanced fatty infiltration), consider tendon transfer, superior capsular reconstruction, or reverse total shoulder arthroplasty in older patients |
Management follows a logical decision tree that exam questions frequently test. The first decision point is whether the tear is partial or full-thickness, and the second is the patient's age and functional demand.
For partial-thickness tears and chronic degenerative full-thickness tears in older, low-demand patients, the next best step is conservative management. This includes oral NSAIDs for pain control (with gastroprotection if risk factors are present), activity modification (avoiding overhead movements), and a structured physical therapy program. Physical therapy is the cornerstone of conservative management and should target rotator cuff strengthening, periscapular muscle conditioning, and posterior capsule stretching. If pain prevents the patient from participating in physical therapy, a subacromial corticosteroid injection can be offered to reduce inflammation and facilitate rehabilitation. However, repeated steroid injections (more than 3 per year) should be avoided, as they can weaken the tendon and promote further tearing.
For full-thickness tears in young, active patients, or for acute traumatic tears, the next best step is surgical referral for arthroscopic repair. Early repair (within 3 to 6 weeks) is preferred in acute traumatic tears because delayed intervention allows the torn tendon to retract and the muscle to undergo fatty infiltration, both of which reduce the likelihood of a successful repair. Post-operatively, the arm is immobilized in a sling for 4 to 6 weeks, followed by a progressive rehabilitation protocol lasting 4 to 6 months.
Contraindications and special considerations: Corticosteroid injections should be used cautiously in patients with diabetes (they can acutely worsen glycemic control). NSAIDs should be avoided or used with caution in patients with chronic kidney disease, peptic ulcer disease, or cardiovascular risk. In patients who have failed conservative therapy and have an irreparable tear (commonly seen in chronic, retracted tears with advanced fatty infiltration), alternative surgical options such as tendon transfer or reverse total shoulder arthroplasty should be considered.
05Differential Diagnosis and Distractors
DIFFERENTIAL | WHY IT IS SIMILAR | KEY DISCRIMINATOR |
|---|---|---|
Subacromial impingement syndrome (without tear) | Shoulder pain with overhead activity, positive Neer and Hawkins signs, painful arc | Impingement preserves strength on resisted testing; there is no weakness in abduction or external rotation. Drop arm test is negative. MRI shows tendinopathy without a defined tear. |
Adhesive capsulitis (frozen shoulder) | Shoulder pain and reduced range of motion | Frozen shoulder restricts both active and passive range of motion equally (especially external rotation). Rotator cuff tears reduce active motion while passive motion is preserved. |
Glenohumeral osteoarthritis | Shoulder pain and stiffness, especially in older patients | Presents with crepitus, joint line tenderness, and X-ray showing joint space narrowing, subchondral sclerosis, and osteophytes. Weakness is from pain inhibition, not tendon disruption. |
Biceps tendinopathy or rupture | Anterior shoulder pain, may occur with rotator cuff pathology | Pain localizes to the bicipital groove (anterior shoulder). Speed test and Yergason test are positive. A "Popeye" deformity indicates biceps long head rupture. |
Cervical radiculopathy (C5) | Shoulder pain and deltoid/rotator cuff weakness | Pain radiates from the neck, follows a dermatomal pattern, and is reproduced by Spurling test (axial loading with neck extension and ipsilateral rotation). Shoulder exam and imaging are normal. |
Acromioclavicular (AC) joint pathology | Superior shoulder pain, worsened by overhead activity | Pain is localized to the AC joint (top of the shoulder), reproduced by cross-body adduction test. Point tenderness is over the AC joint, not the lateral shoulder or subacromial space. |
Calcific tendinitis | Acute shoulder pain, may mimic acute rotator cuff tear | Sudden onset of severe pain, often in a patient aged 30 to 50. X-ray reveals calcium deposits within the rotator cuff tendon. Treatment focuses on NSAIDs and aspiration of the calcium deposit. |
The single most tested differential on exams is adhesive capsulitis vs. rotator cuff tear. The critical distinguishing feature is passive range of motion. In a rotator cuff tear, the patient cannot actively raise the arm, but the examiner can passively move it through the full range. In adhesive capsulitis, both active and passive motion are restricted. When a vignette describes a patient whose shoulder "cannot be moved by the examiner," think adhesive capsulitis first.
06Traps and High-Yield Pearls
The most common way students miss rotator cuff tear questions is by confusing it with subacromial impingement syndrome. Both conditions cause shoulder pain with overhead activity and share positive impingement signs (Neer and Hawkins). The critical separator is weakness on strength testing. If the vignette states that the patient has pain but full strength, the answer is impingement. If the vignette includes weakness in abduction or external rotation, think rotator cuff tear.
A second frequent trap involves the drop arm test. Students sometimes associate any shoulder pain with a positive drop arm test, but this finding is characteristic of a full-thickness tear only. Partial tears and impingement will not produce a truly positive drop arm sign.
Another tested concept is the imaging sequence. Students may jump directly to MRI, but the best initial test remains a plain radiograph. The exam tests whether you know to order the X-ray first (to exclude fracture, dislocation, or arthritis) before moving to MRI for soft tissue evaluation. Selecting MRI as the first step, without an X-ray, is a common wrong answer.
Finally, watch for the vignette describing an older patient with a chronic full-thickness tear who is managing well with physical therapy. The exam may tempt you to select surgical repair, but in an elderly, low-demand patient with acceptable function, continued conservative management is correct. Surgery is reserved for young or active patients, acute traumatic tears, and those who have failed a proper trial of conservative therapy lasting at least 6 to 12 weeks.
The core competency being tested across rotator cuff tear questions is your ability to (1) distinguish a tear from impingement using strength testing, (2) differentiate it from adhesive capsulitis using passive range of motion, (3) order the correct imaging sequence, and (4) match the treatment plan to the patient's age, activity level, and tear characteristics.