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一种用于显微外科手术的“智能”力限制器械:实验室及体内验证

A "Smart" Force-Limiting Instrument for Microsurgery: Laboratory and In Vivo Validation.

作者信息

Marcus Hani J, Payne Christopher J, Kailaya-Vasa Ahilan, Griffiths Sara, Clark James, Yang Guang-Zhong, Darzi Ara, Nandi Dipankar

机构信息

The Hamlyn Centre, Institute of Global Health Innovation, Imperial College London, London, United Kingdom.

Department of Neurosurgery, Imperial College Healthcare NHS Trust, London, United Kingdom.

出版信息

PLoS One. 2016 Sep 13;11(9):e0162232. doi: 10.1371/journal.pone.0162232. eCollection 2016.

Abstract

Residents are required to learn a multitude of skills during their microsurgical training. One such skill is the judicious application of force when handling delicate tissue. An instrument has been developed that indicates to the surgeon when a force threshold has been exceeded by providing vibrotactile feedback. The objective of this study was to validate the use of this "smart" force-limiting instrument for microsurgery. A laboratory and an in vivo experiment were performed to evaluate the force-limiting instrument. In the laboratory experiment, twelve novice surgeons were randomly allocated to use either the force-limiting instrument or a standard instrument. Surgeons were then asked to perform microsurgical dissection in a model. In the in vivo experiment, an intermediate surgeon performed microsurgical dissection in a stepwise fashion, alternating every 30 seconds between use of the force-limiting instrument and a standard instrument. The primary outcomes were the forces exerted and the OSATS scores. In the laboratory experiment, the maximal forces exerted by novices using the force-limiting instrument were significantly less than using a standard instrument, and were comparable to intermediate and expert surgeons (0.637N versus 4.576N; p = 0.007). In the in vivo experiment, the maximal forces exerted with the force-limiting instrument were also significantly less than with a standard instrument (0.441N versus 0.742N; p <0.001). Notably, use of the force-limiting instrument did not significantly impede the surgical workflow as measured by the OSATS score (p >0.1). In conclusion, the development and use of this force-limiting instrument in a clinical setting may improve patient safety.

摘要

住院医师在显微外科培训期间需要学习多种技能。其中一项技能是在处理 delicate 组织时明智地施加 force。已经开发出一种仪器,当 force 阈值被超过时,通过提供振动触觉反馈向外科医生发出指示。本研究的目的是验证这种“智能”force 限制仪器在显微外科中的使用。进行了一项实验室和一项体内实验来评估该 force 限制仪器。在实验室实验中,12 名新手外科医生被随机分配使用 force 限制仪器或标准仪器。然后要求外科医生在一个模型中进行显微外科解剖。在体内实验中,一名中级外科医生以逐步方式进行显微外科解剖,每隔 30 秒交替使用 force 限制仪器和标准仪器。主要结果是施加的 forces 和 OSATS 评分。在实验室实验中,使用 force 限制仪器的新手施加的最大 forces 明显小于使用标准仪器时,并且与中级和专家外科医生相当(0.637N 对 4.576N;p = 0.007)。在体内实验中,使用 force 限制仪器施加的最大 forces 也明显小于使用标准仪器时(0.441N 对 0.742N;p <0.001)。值得注意的是,通过 OSATS 评分衡量,使用 force 限制仪器并没有显著阻碍手术流程(p >0.1)。总之,在临床环境中开发和使用这种 force 限制仪器可能会提高患者安全性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6363/5021258/8469b647730d/pone.0162232.g001.jpg

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