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肩袖修复中自收紧缝线技术的生物力学评估:单环和双环结缝线。

Biomechanical evaluation of self-cinching stitch techniques in rotator cuff repair: The single-loop and double-loop knot stitches.

作者信息

Frosch Stephan, Buchhorn Gottfried, Kück Fabian, Walde Tim Alexander, Lehmann Wolfgang, Spering Christopher

机构信息

Department of Trauma Surgery, Orthopaedics and Plastic Surgery, University Medical Center Göttingen, Robert-Koch-Strasse 40, 37075, Goettingen, Germany.

Department of Medical Statistics, University Medical Center Göttingen, Humboldtallee 32, 37073 Goettingen, Germany.

出版信息

Open Med (Wars). 2021 Feb 12;16(1):293-298. doi: 10.1515/med-2021-0211. eCollection 2021.

Abstract

In rotator cuff repair, strong and reliable suturing is necessary to decrease failure rates. The biomechanics of two self-cinching stitches - the single-loop knot stitch (SLKS) and the double-loop knot stitch (DLKS) - and the modified Mason-Allen stitch (mMAS) were compared. Twenty-seven porcine infraspinatus tendons were randomized among the three stitches. Each was cyclically loaded (10-80-200 N for 50 cycles each) while the gap formation was measured. Next, ultimate load to failure was tested. The gap widths after cyclic loading were 8.72 ± 0.93 mm for the DLKS, 8.65 ± 1.33 mm for the mMAS, and 9.14 ± 0.89 mm for the SLKS, without significant differences. The DLKS showed the highest ultimate load (350.52 ± 38.54 N) compared with the mMAS (320.88 ± 53.29 N; = 0.304) and the SLKS (290.54 ± 60.51 N; < 0.05). The DLKS showed similar reliability and better strength compared with the mMAS, while the SLKS showed a slight but not significant decrease in performance. In our experience, the DLKS and SLKS have clinical advantages, as they are easy to perform and the self-cinching loop knot allows the surgeon to grasp degenerative tendon tissue. Initial intraoperative tightening of the suture complex (preloading) before locking is important in order to decrease postoperative elongation.

摘要

在肩袖修复中,为降低失败率,进行牢固可靠的缝合很有必要。对两种自收紧缝线——单环结缝线(SLKS)和双环结缝线(DLKS)——以及改良梅森 - 艾伦缝线(mMAS)的生物力学性能进行了比较。将27条猪冈下肌腱随机分配至三种缝线组。每种缝线在循环加载(每次10 - 80 - 200 N,各加载50次循环)时测量间隙形成情况。接下来,测试至失败的极限载荷。循环加载后的间隙宽度,DLKS为8.72±0.93 mm,mMAS为8.65±1.33 mm,SLKS为9.14±0.89 mm,无显著差异。与mMAS(320.88±53.29 N;P = 0.304)和SLKS(290.54±60.51 N;P < 0.05)相比,DLKS显示出最高的极限载荷(350.52±38.54 N)。与mMAS相比,DLKS显示出相似的可靠性和更好的强度,而SLKS在性能上有轻微但不显著的下降。根据我们的经验,DLKS和SLKS具有临床优势,因为它们操作简便,且自收紧环结使外科医生能够抓取退变的肌腱组织。在锁定之前对缝线复合体进行术中初始收紧(预加载)对于减少术后伸长很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7659/7892937/aa926031187e/j_med-2021-0211-fig001.jpg

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