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PERFORMANCE EVALUATION OF A SENSORIZED ARTHROSCOPIC GRASPER

机译:传感关节镜克拉珀的性能评价

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Force sensing minimally invasive instruments have gained increasing attention in recent years. Integrating these instruments within currently available surgical simulators can enhance the learning experience by measuring the forces applied by trainees and supplementing objective performance assessment. Recently, an arthroscopic grasper was designed and sensorized with Fiber Bragg Grating Sensors at Canadian Surgical Technologies and Advanced Robotics (CSTAR). Moreover, a custom low-cost (LC) interrogation system was developed to accompany the proposed sensorized tool. In this study, the custom LC interrogator was used and compared to the commercially-available Micron Optics sm130 (MO) interrogator. The hypothesis is that both of these systems can be used to measure forces within ±0.5 N as the acceptable margin for accuracy. Experimental results showed that the MO system meets the required accuracy for certain force directions. The LC system demonstrated 49% of the accuracy of the MO interrogator. The main advantage of the LC interrogator is its cost, which is 18% of the commercial interrogation system. For certain force directions, the performance was comparable to the defined criteria.
机译:近年来,力度感应微创仪器的微创仪器越来越受到关注。将这些仪器集成在当前可用的外科模拟器中,可以通过测量受训人员的力量来增强学习体验,并补充客观性能评估。最近,在加拿大手术技术和先进的机器人(CSTAR)的纤维布拉格光栅传感器中设计和传感了关节镜掌料。此外,开发了一种自定义低成本(LC)询问系统以伴随所提出的传感器工具。在本研究中,使用自定义LC询问器并与市售的微米光学SM130(MO)询问器进行比较。假设是,这两种系统都可用于测量±0.5n内的力,以准确度可接受的余量。实验结果表明,Mo系统符合某些力方向所需的精度。 LC系统展示了Mo询问器精度的49%。 LC询问器的主要优势是其成本,这是商业审讯系统的18%。对于某些力方向,性能与定义的标准相当。

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