Detection of Membrane Puncture with Haptic Feedback using a Tip-Force Sensing Needle.

Santhi Elayaperumal, Jung Hwa Bae, Bruce L Daniel, Mark R Cutkosky
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引用次数: 29

Abstract

This paper presents calibration and user test results of a 3-D tip-force sensing needle with haptic feedback. The needle is a modified MRI-compatible biopsy needle with embedded fiber Bragg grating (FBG) sensors for strain detection. After calibration, the needle is interrogated at 2 kHz, and dynamic forces are displayed remotely with a voice coil actuator. The needle is tested in a single-axis master/slave system, with the voice coil haptic display at the master, and the needle at the slave end. Tissue phantoms with embedded membranes were used to determine the ability of the tip-force sensors to provide real-time haptic feedback as compared to external sensors at the needle base during needle insertion via the master/slave system. Subjects were able to determine the position of the embedded membranes with significantly better accuracy using FBG tip feedback than with base feedback using a commercial force/torque sensor (p = 0.045) or with no added haptic feedback (p = 0.0024).

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指尖力感应针触觉反馈检测膜穿刺。
本文介绍了一种具有触觉反馈的三维尖端力传感针的标定和用户测试结果。该针是一种改良的mri兼容活检针,内置光纤布拉格光栅(FBG)传感器,用于应变检测。校准后,以2 kHz询问针,并通过音圈执行器远程显示动态力。针在单轴主从系统中测试,音圈触觉显示在主端,针在从端。采用嵌入膜的组织模型,通过主/从系统确定在针插入过程中,与位于针基的外部传感器相比,尖端力传感器提供实时触觉反馈的能力。与使用商用力/扭矩传感器(p = 0.045)或不添加触觉反馈(p = 0.0024)的基础反馈相比,使用FBG尖端反馈的受试者能够以更好的精度确定嵌入膜的位置。
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