# Nondisruptive Full-Thickness Double-Row Repair Technique for Bursal-Sided Partial-Thickness Rotator Cuff Tears

**Authors:** Qiangqiang Li, Yuejian Ding, Yu Zhang, Jianghui Qin, Qing Jiang, Dongyang Chen

PMC · DOI: 10.1016/j.eats.2025.103912 · Arthroscopy Techniques · 2025-11-10

## TL;DR

This paper introduces a new surgical technique for repairing partial-thickness rotator cuff tears without damaging intact tendon fibers.

## Contribution

A novel nondisruptive full-thickness double-row repair technique is proposed for bursal-sided rotator cuff tears.

## Key findings

- The technique uses a spinal needle to pass anchor sutures through the intact tendon.
- Lateral-row fixation is achieved with a down-pressing anchor to restore tendon anatomy.
- The method aims to enhance healing while preserving the articular surface fibers.

## Abstract

A variety of surgical techniques have been described for managing bursal-sided partial-thickness rotator cuff tears (PTRCTs). A key consideration when treating these lesions is whether to complete the tear or to preserve the remaining intact fibers. Accordingly, current surgical strategies for bursal-sided PTRCTs include in situ and tear completion repair; each approach has its own limitations. We describe a nondisruptive full-thickness double-row repair technique, which captures the full thickness of the rotator cuff tendon while minimizing disruption to the preserved articular surface fibers. After full-thickness passage of the anchor sutures through the intact tendon assisted with a spinal needle, lateral-row fixation is achieved with a down-pressing anchor. This technique aims to enhance tendon healing and maximize restoration of the native tendon to its anatomic footprint in patients with bursal-sided PTRCTs.

## Full-text entities

- **Diseases:** PTRCTs (MESH:D000070636)
- **Species:** Homo sapiens (human, species) [taxon 9606]

## Full text

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## Figures

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## References

15 references — full list in the complete paper: https://tomesphere.com/paper/PMC12800972/full.md

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Source: https://tomesphere.com/paper/PMC12800972