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Motorized Force-Sensing Micro-Forceps with Tremor Cancelling and Controlled Micro-Vibrations for Easier Membrane Peeling

机译:具有震颤消除和受控微振动功能的电动力传感微型前叉可轻松进行膜剥离

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摘要

Retinal microsurgery requires the manipulation of extremely delicate tissues by various micron scale maneuvers and the application of very small forces. Among vitreoretinal procedures, membrane peeling is a standard procedure requiring the delamination of a very thin fibrous membrane on the retina surface. This study presents the development and evaluation of an integrated assistive system for membrane peeling. This system combines a force-sensing motorized micro-forceps with an active tremor-canceling handheld micromanipulator, Micron. The proposed system (1) attenuates hand-tremor when accurate positioning is needed, (2) provides auditory force feedback to keep the exerted forces at a safe level, and (3) pulsates the tool tip at high frequency to provide ease in delaminating membranes. Experiments on bandages and raw chicken eggs have revealed that controlled micro-vibrations provide significant ease in delaminating membranes. Applying similar amount of forces, much faster delamination was observed when the frequency of these vibrations were increased (up to 50 Hz).
机译:视网膜显微外科手术需要通过各种微米尺度的操作和极小的力来操纵极其脆弱的组织。在玻璃体视网膜手术中,膜剥离是一种标准程序,需要在视网膜表面上剥离非常薄的纤维膜。这项研究提出了膜剥离综合辅助系统的开发和评估。该系统将力感测电动微型镊子与主动消除颤动的手持微型操纵器Micron相结合。拟议的系统(1)在需要精确定位时减弱手震,(2)提供听觉力反馈,以将施加的力保持在安全水平,并且(3)以高频率脉动工具尖端,以使膜容易分层。在绷带和生鸡蛋上进行的实验表明,受控的微振动可大大简化膜的分层。施加相似数量的力,当这些振动的频率增加(高达50 Hz)时,观察到更快的分层。

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