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首页> 外文期刊>IEEE Robotics and Automation Letters >A Novel Sensing Method to Detect Tissue Boundaries During Robotic Needle Insertion Based on Laser Doppler Flowmetry
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A Novel Sensing Method to Detect Tissue Boundaries During Robotic Needle Insertion Based on Laser Doppler Flowmetry

机译:一种新颖的检测基于激光多普勒流量的机器人针插入组织边界的感应方法

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摘要

This study investigates the use of Laser Doppler Flowmetry (LDF) as a method to detect tissue transitions during robotic needle insertions. Insertions were performed in gelatin tissue phantoms with different optical and mechanical properties and into ex-vivo sheep brain. The effect of changing the optical properties of gelatin tissue phantoms was first investigated and it was shown that using gelatin concentration to modify the stiffness of samples was suitable. Needle insertion experiments were conducted into both one-layer and two-layer gelatin phantoms. In both cases, three stages could be observed in the perfusion values: tissue loading, rupture and tissue cutting. These were correlated to force values measured from the tip of the needle during insertion. The insertions into ex-vivo sheep brain also clearly showed the time of rupture in both force and perfusion values, demonstrating that tissue puncture can be detected using an LDF sensor at the tip of a needle.
机译:本研究研究了激光多普勒流动(LDF)作为检测机器人针插入期间的组织过渡的方法。在明胶组织幽灵中进行插入,具有不同的光学和机械性能并进入前体内绵羊脑。首先研究改变明胶组织杂色的光学性质的效果,并显示使用明胶浓度来改变样品的刚度是合适的。将针插入实验进行到单层和两层明胶模拟中。在这两种情况下,在灌注值中可以观察到三个阶段:组织载荷,破裂和组织切割。这些与在插入期间从针尖端测量的力值相关。进入ex-Vivo绵羊大脑的插入也清楚地显示了两种力和灌注值的破裂时,证明可以使用针头尖端的LDF传感器检测组织穿刺。

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