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A New Active Microendoscope for Exploring the Sub-arachnoidSpace in the Spinal Cord

机译:一种用于探索脊髓中亚麻癣空间的新型活性微安镜

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This paper presents the design, development and preliminary test of a new active microendoscope for neuroendoscopy and therapy of the spinal cord. Endoscopy of the spinal sub-arachnoid space is useful for some pathologies, but it is a very challenging task for several reasons: the navigation space is very narrow, there are many blood vessels and delicate structures which could be damaged by manoeuvres and large forces and, finally, the Cerebro-Spinal Fluid (CSF) is a peculiar environment which must be preserved. An innovative method for active safe navigation in the sub-arachnoid space has been devised, based on hydrojets sustentation of the endoscope. The hydrojets, if appropriately tuned and oriented, allow the tip of the endoscope to avoid the delicate structures of the spinal cord and could also assist propulsion. A MATLAB simulation of the hydrojets is illustrated and a digital controller for the regulation of the hydrojets is demonstrated. The pressure ripple is about 5%, as tested experimentally on a 2D simulator. A prototype of steerable microendoscope whose tip is equipped with hydrojets has been fabricated and tested in an artificial path simulating the sub-arachnoid space. Performance are quite interesting.
机译:本文介绍了一种新型活性微内窥镜的设计,开发和初步测试,用于神经形式镜检查和脊髓治疗。由于几种原因,脊髓亚蛛网膜空间的内窥镜是有用的,但这是一个非常具有挑战性的任务:导航空间非常狭窄,有许多血管和精致的结构,可能被操纵和大型力损坏最后,脑脊髓液(CSF)是必须保存的特殊环境。基于内窥镜的液压速率,已经设计了一种用于子蛛网膜型空间中的主动安全导航的创新方法。如果适当调整和定向,则允许内窥镜的尖端避免脊髓的精细结构,并且还可以帮助推进。示出了水研讨会模拟,并证明了用于调节水电站的数字控制器。压力波纹约为5%,如在2D模拟器上实验测试的。可操纵微内窥镜的原型,其尖端配备了水电站,并在人工路径中进行了模拟亚蛛网膜空间的人工路径测试。表现非常有趣。

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