Restoration of Muscle Function Following Distal Biceps Tendon Reinsertion: A Narrative Review
Abstract
1. Introduction
2. Methods
Literature Identification and Selection Process
3. Evidence-Based Background of DBTR
3.1. Etiology and Risk Factors of DBTR
3.2. Anatomical Predispositions to DBTR
3.3. Pathomechanism of DBTR
4. Surgical Intervention and Repair Techniques
4.1. Single-Incision Repair
4.2. Double-Incision Repair
4.3. Comparative Analysis: Single-Incision Versus Double-Incision Technique in DBTR
4.4. Post-Operative Complications
4.5. Non-Operative Treatment
5. Rehabilitation Protocols Following DBTR
5.1. Early Mobilization Versus Immobilization
5.2. Post-DBTR Flexion and Supination Strength Retention
5.3. Return to Work and Play
5.4. Acute and Chronic DBTR
5.5. Future Directions in Research
6. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Abbreviations
| DBTR | Distal biceps tendon rupture |
| CSA | Cross-sectional area |
| ROM | Range of motion |
| BMI | Body mass index |
| FQs | Fluoroquinolones |
| ATTR | Wild-type transthyretin-mediated |
| ATTR-CM | Transthyretin-associated amyloidosis cardiomyopathy |
| PIN | Posterior interosseous nerve |
| SI | Single-incision |
| DI | Double-incision |
| RCTs | Randomized clinical trials |
| DASH | Disabilities of the Arm, Shoulder, and Hand |
| LACN | Lateral antebrachial cutaneous nerve |
| AROM | Active range of motion |
| EMG | Electromyography |
| MEPS | Mayo Elbow Performance Score |
| NFL | National Football League |
| PREE | Patient-Related Elbow Evaluation |
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| Citation | Insights | Population Sample | Dependent Variables | Results |
|---|---|---|---|---|
| Barret et al. [103] | Key factors influencing the restoration of peak strength following distal biceps tendon reinsertions include the surgical technique (double incision), immediate postoperative mobilization, and the patient’s activity level, which collectively contribute to reduced complications and improved functional outcomes. |
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| Morrey et al. [121] | The study indicates that primary repairs performed in high flexion (60–90 degrees) can yield excellent outcomes without significant complications. Additionally, the ability of the biceps muscle to lengthen over time contributes to strength restoration, minimizing the risk of rerupture or flexion contracture. |
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| Faict et al. [122] | Key factors influencing the restoration of peak strength following distal biceps tendon reinsertion include the surgical technique used, the timing of the intervention after conservative treatment, and the patient’s adherence to rehabilitation protocols post-surgery. |
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| Gasparella et al. [123] | Key factors influencing the restoration of peak strength following distal biceps tendon reinsertions include the timing of surgery (delay increases complications), patient age, history of smoking, rheumatologic conditions, and the use of anabolic steroids, which affect functional recovery. |
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| Murena et al. [124] | Key factors influencing the restoration of peak strength following distal biceps tendon reinsertions include the surgical approach used, with a mini-invasive approach showing a positive trend in strength recovery compared to the standard extensile approach. Additionally, the time to return to sports and work, which averaged three months postoperatively, plays a crucial role. The study reported a 93% full return to activities, indicating that effective rehabilitation and surgical technique significantly impact strength restoration outcomes. |
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| Darlis [125] | The restoration of peak strength following distal biceps tendon reinsertions is influenced by several key factors: the anatomical reinsertion of the tendon to the bicipital tuberosity, the technique used (such as the proposed posterior to anterior method), the quality of fixation (utilizing two sutures and an endo-button), and the timing of rehabilitation (active motion starting at three weeks postoperatively). Additionally, minimizing complications like heterotopic ossification and ensuring adequate tendon-to-bone contact are crucial for optimal recovery. |
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| Alech-Tournier et al. [126] | Key factors influencing the restoration of peak strength following distal biceps tendon reinsertions include the timing of surgery, the technique used (such as ToggleLoc™ with ZipLoop™), and the degree of tension applied during the reattachment procedure. |
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| Khwaja et al. [127] | The paper does not specifically address key factors influencing the restoration of peak strength following distal biceps tendon reinsertions. It focuses on patient-reported outcomes, function, complication rates, and radiographic findings related to the dual incision cortical button technique. |
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Harasymczuk, M.; Bręborowicz, E.; Bartkowiak-Graczyk, A.; Madziewicz, A.; Balcerek, T.; Romanowski, L. Restoration of Muscle Function Following Distal Biceps Tendon Reinsertion: A Narrative Review. J. Clin. Med. 2026, 15, 2430. https://doi.org/10.3390/jcm15062430
Harasymczuk M, Bręborowicz E, Bartkowiak-Graczyk A, Madziewicz A, Balcerek T, Romanowski L. Restoration of Muscle Function Following Distal Biceps Tendon Reinsertion: A Narrative Review. Journal of Clinical Medicine. 2026; 15(6):2430. https://doi.org/10.3390/jcm15062430
Chicago/Turabian StyleHarasymczuk, Michał, Ewa Bręborowicz, Aleksandra Bartkowiak-Graczyk, Anna Madziewicz, Tomasz Balcerek, and Leszek Romanowski. 2026. "Restoration of Muscle Function Following Distal Biceps Tendon Reinsertion: A Narrative Review" Journal of Clinical Medicine 15, no. 6: 2430. https://doi.org/10.3390/jcm15062430
APA StyleHarasymczuk, M., Bręborowicz, E., Bartkowiak-Graczyk, A., Madziewicz, A., Balcerek, T., & Romanowski, L. (2026). Restoration of Muscle Function Following Distal Biceps Tendon Reinsertion: A Narrative Review. Journal of Clinical Medicine, 15(6), 2430. https://doi.org/10.3390/jcm15062430

