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新型微创手术夹取器。

Novel clip applicator for minimally invasive surgery.

机构信息

Department of Surgery & Cancer, Imperial College London, London, UK.

John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, USA.

出版信息

Surg Endosc. 2019 Aug;33(8):2710-2718. doi: 10.1007/s00464-019-06860-5. Epub 2019 Jun 21.

Abstract

BACKGROUND

Ligation clips are used ubiquitously throughout minimally invasive surgery for apposition of tissues. Their size limits their application beyond ligation of small tubular structures. A novel clip and clip applicator that allows for broad-area clamping and rotation has been developed by our team. The primary aim of this study is to provide preliminary data assessing tensile strength of the clip across apposed segments of bowel.

METHODS

A comparative study evaluating the maximum load (N) held across two apposed tissues by (a) our novel broad-area clip and (b) a conventional commercial clip was performed. Two sections of porcine bowel were clamped together and the maximum load (N) was measured using a tensile strength material testing machine. A preliminary experiment comparing staple line leak pressures in a porcine model ± clip enforcement of staple line was also conducted. p < 0.05 determined statistical significance.

RESULTS

Twenty-four samples (intervention = 15; control = 9) of porcine bowel annealed by surgical clips were tested. The mean maximum force withheld by the bowel and staples was greater for our novel clip design (2.043 ± 0.831 N) than the control clip (1.080 ± 0.466 N, p = 0.004). Ten staple line (intervention = 5; control = 5) pressures of porcine bowel were measured. There was no statistically significant difference between the leak pressures with clip reinforcement (84.8 mmHg; range 71.8-109.8 mmHg), or without (54.1 mmHg; range 26.3-98.9 mmHg).

CONCLUSION

These preliminary results suggest that our novel clip is able to withstand higher tensile force across tissues compared to a leading commercial clip. A small preliminary trial of effect on leak pressures demonstrated no statistical significance; however, increasing reliability of staple line deformation may be a clinically important finding. Whilst further iteration of product design and clinical testing is required, this product may occupy an important clinical niche through staple line reinforcement, enterotomy closure and other applications.

摘要

背景

结扎夹在微创外科中被广泛用于组织贴合。它们的尺寸限制了它们在结扎小管状结构之外的应用。我们的团队开发了一种新型夹和夹应用器,它允许广泛的区域夹持和旋转。本研究的主要目的是提供初步数据,评估夹在贴合的肠段上的拉伸强度。

方法

我们进行了一项对比研究,评估了(a)我们的新型大面积夹和(b)传统商业夹在两个贴合组织上的最大负载(N)。将两段猪肠夹在一起,使用拉伸强度材料试验机测量最大负载(N)。还进行了一项初步的猪模型实验,比较了夹线加固前后的吻合口泄漏压力。p<0.05 确定了统计学意义。

结果

24 个(干预组=15;对照组=9)经手术夹结扎的猪肠样本进行了测试。新型夹设计的肠和钉线保持的最大力(2.043±0.831 N)大于对照组夹(1.080±0.466 N,p=0.004)。测量了 10 个猪肠吻合口(干预组=5;对照组=5)的压力。夹线加固后(84.8mmHg;范围 71.8-109.8mmHg)和未加固时(54.1mmHg;范围 26.3-98.9mmHg)的泄漏压力无统计学差异。

结论

这些初步结果表明,与领先的商业夹相比,我们的新型夹能够在组织之间承受更高的拉伸力。对泄漏压力影响的小初步试验没有统计学意义;然而,增加吻合口变形的可靠性可能是一个重要的临床发现。虽然需要进一步迭代产品设计和临床测试,但该产品可能通过吻合口加固、肠切开闭合和其他应用占据重要的临床利基。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3eb/6647405/45a458a17ff5/464_2019_6860_Fig1_HTML.jpg

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