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腹壁关闭后手术技能对缝线生物力学性能的影响。

Effect of Surgical Expertise on Biomechanical Properties of Sutures After Abdominal Wall Closure.

机构信息

Tecnologico de Monterrey, Escuela de Medicina y Ciencias de la Salud, Monterrey, Nuevo León, Mexico.

Tecnologico de Monterrey, Escuela de Medicina y Ciencias de la Salud, Monterrey, Nuevo León, Mexico.

出版信息

J Surg Res. 2020 Jan;245:403-409. doi: 10.1016/j.jss.2019.07.062. Epub 2019 Aug 17.

Abstract

BACKGROUND

Despite preventive methods and careful surgical technique, surgical site infection and incisional hernias are of main concern after the closure of surgical incisions and keep haunting abdominal wall wound healing. The aim of this study is to find how surgical expertise level modifies biomechanical properties of sutures commonly used in abdominal wall fascial closure (polypropylene, polyglactin 910, polydioxanone).

MATERIALS AND METHODS

Surgery residents with different experience levels performed abdominal wall fascial closure in swine models with the previously mentioned suture materials. A standardized technique was used. Sutures were removed, and a tensile stress test was performed on the removed sutures. A total of 81 abdominal fascial closures were achieved. Time, extension, maximum tensile force (F), and maximum stress were measured and analyzed.

RESULTS

The results of the polydioxanone stress test present a trend in three variables: extension, tensile force, and stress. The trend shows higher medians in the expert group and lower medians in the novice group. While using polypropylene sutures, medians in the expert group are the highest; however, a trend is not observed. Polyglactin 910 sutures have nonspecific behavior among the different experience groups and variables. Polypropylene is the material with the lowest F tested and fails at 42.64 (IQR 40.98-44.89) N. Regarding the elastic properties of the material, polyglactin demonstrates the least extension of all sutures tested, with a 14 (IQR 13.33-14.83) mm extension. This study demonstrates that polydioxanone has a superior F compared with polypropylene and has a superior extension at failure properties compared with polyglactin, confirming that polydioxanone could be the suture of choice used for abdominal wall fascial closure.

CONCLUSIONS

Study results do not show statistically significant differences regarding the impact of the experience level of different general surgery residents in the biomechanical properties of sutures used in abdominal wall fascial closure.

摘要

背景

尽管有预防方法和精细的手术技术,但手术部位感染和切口疝仍然是手术切口关闭后主要关注的问题,并一直困扰着腹壁伤口愈合。本研究旨在探讨手术专业水平如何改变腹部壁筋膜闭合(聚丙烯、聚乳酸 910、聚二氧杂环己酮)中常用缝线的生物力学特性。

材料和方法

不同经验水平的外科住院医师在猪模型中使用上述缝线材料进行腹壁筋膜闭合。采用标准化技术。取出缝线,并对取出的缝线进行拉伸应力测试。总共完成了 81 例腹壁筋膜闭合。测量和分析时间、延伸度、最大拉伸力(F)和最大应力。

结果

聚二氧杂环己酮的应力测试结果显示三个变量(延伸度、拉伸力和应力)呈趋势。趋势显示,专家组的中位数较高,新手组的中位数较低。使用聚丙烯缝线时,专家组的中位数最高;然而,没有观察到趋势。聚乳酸 910 缝线在不同经验组和变量之间表现出非特异性行为。聚丙烯是测试中拉伸力最低的材料,失效时为 42.64(IQR 40.98-44.89)N。关于材料的弹性特性,聚乳酸在所有测试缝线中表现出最小的延伸度,为 14(IQR 13.33-14.83)mm。本研究表明,聚二氧杂环己酮的 F 优于聚丙烯,失效时的延伸度优于聚乳酸,证实聚二氧杂环己酮可能是腹部壁筋膜闭合的首选缝线。

结论

研究结果表明,不同普通外科住院医师经验水平对腹部壁筋膜闭合中使用缝线的生物力学特性没有统计学上的显著影响。

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