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通过在针尖处使用光纤布拉格光栅传感器进行力估计来检测针进入组织的阶段。

Detecting stages of needle penetration into tissues through force estimation at needle tip using fiber Bragg grating sensors.

机构信息

Indian Institute of Science, Department of Instrumentation and Applied Physics, Bangalore 560012, IndiabRobert Bosch Engineering and Business Solutions Pvt. Ltd., Research and Technology Center-India, 123, Industrial Layout, Hosur Road, Koramangala, Bangalore 560095, India.

P.E.S. University, Department of Mechanical Engineering, Bangalore 560085, India.

出版信息

J Biomed Opt. 2016 Dec 1;21(12):127009. doi: 10.1117/1.JBO.21.12.127009.

Abstract

Several medical procedures involve the use of needles. The advent of robotic and robot assisted procedures requires dynamic estimation of the needle tip location during insertion for use in both assistive systems as well as for automatic control. Most prior studies have focused on the maneuvering of solid flexible needles using external force measurements at the base of the needle holder. However, hollow needles are used in several procedures and measurements of forces in proximity of such needles can eliminate the need for estimating frictional forces that have high variations. These measurements are also significant for endoscopic procedures in which measurement of forces at the needle holder base is difficult. Fiber Bragg grating sensors, due to their small size, inert nature, and multiplexing capability, provide a good option for this purpose. Force measurements have been undertaken during needle insertion into tissue mimicking phantoms made of polydimethylsiloxane as well as chicken tissue using an 18-G needle instrumented with FBG sensors. The results obtained show that it is possible to estimate the different stages of needle penetration including partial rupture, which is significant for procedures in which precise estimation of needle tip position inside the organ or tissue is required.

摘要

几种医疗程序都涉及到使用针。机器人和机器人辅助程序的出现需要在插入过程中动态估计针尖的位置,以便在辅助系统和自动控制中使用。大多数先前的研究都集中在使用针座底部的外部力测量来操纵实心柔性针。然而,在几种程序中使用空心针,并且在这种针附近测量力可以消除对具有高变化的摩擦力的估计。这些测量对于在针座基部测量力困难的内窥镜程序也很重要。光纤布拉格光栅传感器由于其尺寸小、惰性和复用能力,是一种很好的选择。已经使用带有 FBG 传感器的 18-G 针在由聚二甲基硅氧烷和鸡肉组织制成的组织模拟体中进行了针插入过程中的力测量。获得的结果表明,有可能估计针穿透的不同阶段,包括部分破裂,这对于需要精确估计器官或组织内针尖位置的程序很重要。

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