首页> 外文期刊>Surgical Endoscopy >Ergonomic aspects of five different types of laparoscopic instrument handles under dynamic conditions with respect to specific laparoscopic tasks: an electromyographic-based study.
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Ergonomic aspects of five different types of laparoscopic instrument handles under dynamic conditions with respect to specific laparoscopic tasks: an electromyographic-based study.

机译:在动态条件下,针对特定的腹腔镜任务,五种不同类型的腹腔镜仪器手柄的人体工程学方面:基于肌电图的研究。

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BACKGROUND: The ergonomic deficiencies of various minimally invasive surgery (MIS) instrument handles are well-known. In the past, many studies have been performed to gain a better understanding of ergonomics in MIS. The current study investigates muscle strain during various dynamic tasks with different instrument handles. METHODS: Five different handle designs were tested: the axial handle (Aesculap), the vario handle (own model), multifunctional and ring handles (both Karl Storz), and the shank handle (Wilo). Ten subjects without any surgical training tested the following instrument functions: precise dynamic movement, rotation of the closed instrument, and simultaneous opening and closing of the effector. During these three trials, task performance (errors/duration) and the electromyographic activity of the hand and lower arm muscles were measured. RESULTS: Regarding the errors and the time required to carry out the tasks, the five handles showed similar results. The muscle activity was lowest for the precise dynamic movement task and highest during the rotation task. The axial handle required significantly more muscle activity than all other handles. CONCLUSION: On the basis of these data, it was possible to construct characteristic muscle activation patterns for each handle. However, these patterns were not task specific. Accordingly, they may form a basis to improve the ergonomics of MIS handles with regard to muscle strain.
机译:背景技术:各种微创手术(MIS)仪器手柄的人体工程学缺陷是众所周知的。过去,进行了许多研究以更好地了解MIS中的人体工程学。当前的研究调查了使用不同仪器手柄进行的各种动态任务期间的肌肉拉伤。方法:测试了五种不同的手柄设计:轴向手柄(Aesculap),可变手柄(自己的型号),多功能和环形手柄(均为Karl Storz)和小腿手柄(Wilo)。十名未经任何外科手术训练的受试者测试了以下器械功能:精确的动态运动,闭合器械的旋转以及同时打开和关闭执行器。在这三个试验中,测量了任务表现(错误/持续时间)以及手和下臂肌肉的肌电图活动。结果:关于错误和执行任务所需的时间,五个手柄显示出相似的结果。对于精确的动态运动任务,肌肉活动最低,而在旋转任务中,肌肉活动最高。轴向手柄比所有其他手柄需要更多的肌肉活动。结论:基于这些数据,可以为每个手柄构建特征性的肌肉激活模式。但是,这些模式不是特定于任务的。因此,它们可以构成改善MIS手柄关于人体劳损的人体工程学的基础。

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