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具有任意接触角的用于组织刚性检测的压电触觉传感器。

A Piezoelectric Tactile Sensor for Tissue Stiffness Detection with Arbitrary Contact Angle.

机构信息

College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China.

出版信息

Sensors (Basel). 2020 Nov 18;20(22):6607. doi: 10.3390/s20226607.

Abstract

In this paper, a piezoelectric tactile sensor for detecting tissue stiffness in robot-assisted minimally invasive surgery (RMIS) is proposed. It can detect the stiffness not only when the probe is normal to the tissue surface, but also when there is a contact angle between the probe and normal direction. It solves the problem that existing sensors can only detect in the normal direction to ensure accuracy when the degree of freedom (DOF) of surgical instruments is limited. The proposed senor can distinguish samples with different stiffness and recognize lump from normal tissue effectively when the contact angle varies within [0°, 45°]. These are achieved by establishing a new detection model and sensor optimization. It deduces the influence of contact angle on stiffness detection by sensor parameters design and optimization. The detection performance of the sensor is confirmed by simulation and experiment. Five samples with different stiffness (including lump and normal samples with close stiffness) are used. Through blind recognition test in simulation, the recognition rate is 100% when the contact angle is randomly selected within 30°, 94.1% within 45°, which is 38.7% higher than the unoptimized sensor. Through blind classification test and automatic k-means clustering in experiment, the correct rate is 92% when the contact angle is randomly selected within 45°. We can get the proposed sensor can easily recognize samples with different stiffness with high accuracy which has broad application prospects in the medical field.

摘要

本文提出了一种用于检测机器人辅助微创手术(RMIS)中组织硬度的压电触觉传感器。它不仅可以在探头垂直于组织表面时检测硬度,还可以在探头与法向之间存在接触角时检测硬度。它解决了现有传感器只能在探头垂直于组织表面时检测的问题,以确保在手术器械自由度有限时的准确性。所提出的传感器可以通过建立新的检测模型和传感器优化,在接触角在[0°,45°]范围内变化时,有效区分不同硬度的样本,并从正常组织中识别出肿块。通过传感器参数设计和优化来推断接触角对硬度检测的影响。通过仿真和实验确认了传感器的检测性能。使用了五个具有不同硬度的样本(包括具有接近硬度的肿块和正常样本)。通过在仿真中的盲识别测试,当接触角在 30°内随机选择时,识别率为 100%,在 45°内随机选择时,识别率为 94.1%,比未优化的传感器提高了 38.7%。通过实验中的盲分类测试和自动 k-均值聚类,当接触角在 45°内随机选择时,准确率为 92%。我们可以得出结论,所提出的传感器可以轻松地以高精度识别具有不同硬度的样本,在医学领域具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f21d/7698970/6a8e658f7735/sensors-20-06607-g001.jpg

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