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参考工具运动学-动力学和组织表面应变数据在基本手术操作期间。

Reference tool kinematics-kinetics and tissue surface strain data during fundamental surgical acts.

机构信息

Department of Biomedical Engineering, Cleveland Clinic, Cleveland, Ohio, USA.

Computational Biomodeling (CoBi) Core, Lerner Research Institute, Cleveland Clinic, Cleveland, OH, USA.

出版信息

Sci Data. 2020 Jan 15;7(1):21. doi: 10.1038/s41597-020-0359-0.

Abstract

Haptic based surgical simulations are popular training aids in medicine. Previously, surgical tool loads and motion were measured during cutting and needle insertion on non-human tissue and several haptic based simulations were developed to enhance surgical training. However, there was a lack of realistic foundational data regarding the mechanical responses of human tissue and tools during fundamental acts of surgery, i.e., cutting, suturing, retracting, pinching and indenting. This study used four recently developed surgical tools in a variety of procedures on a diverse set of cadaver leg specimens from human donors. The kinematics and kinetics of surgical tools were recorded along with topical three-dimensional strain during commonly performed surgical procedures. Full motion and load signatures of foundational surgical acts can also be used beyond the development of authentic visual and haptic simulations of surgery, i.e., they provide mechanical specifications for the development of autonomous surgical systems.

摘要

基于触觉的手术模拟在医学领域是一种流行的培训辅助工具。此前,已经在非人体组织上测量了切割和针刺过程中的手术工具负载和运动,并开发了几种基于触觉的模拟系统来增强手术培训。然而,在基础手术过程中,即切割、缝合、牵拉、夹捏和压痕,有关人体组织和工具的机械响应的现实基础数据还很缺乏。本研究在来自人类供体的各种尸体腿部标本上的多种程序中使用了最近开发的四种手术工具。记录了手术工具的运动学和动力学以及常见手术过程中的局部三维应变。基础手术动作的完整运动和负载特征不仅可以用于开发真实的手术视觉和触觉模拟,还可以为自主手术系统的开发提供机械规格。

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