arXiv:2503.05791eess.SYcs.RO2025-03中稿 · IEEE Transactions …被引 3

用虚拟导钻+非线性弹簧控制,提升手术钻孔精度与安全性

Collaborative Drill Alignment in Surgical Robotics

  • 通过虚拟滑动关节与非线性弹簧实现工具轴向约束
  • 在3D打印骨模型上验证,角度精度更高且出口偏移更小
  • 适合需要高精度钻孔的外科手术,如动物骨科手术

机器人辅助手术可在外科医生直接监督下可靠、精准地执行,融合机器人技术与医生经验。本文提出一种基于虚拟导钻的机器人系统,采用新型虚拟机制控制器实现虚拟约束功能,并加入视觉反馈。控制器将器械限制在目标轴线上,同时保持轴向运动由医生控制。相比以往仅依赖线性弹簧和阻尼的能量整形方法,本方案使用虚拟滑动关节与非线性弹簧,可灵活调节系统动力学。文中详细说明了实现高精度所需的标定流程及控制器实现方法。系统应用于犬类颞下颌骨螺钉置入术的钻孔环节。在3D打印骨骼模型上的实验结果表明,该系统具备足够精度完成操作,且相比患者特异性导板(PSG),展现出更优的角度准确性和更少的出口偏移误差。最后讨论了当前局限与未来改进方向。

原文摘要 · Abstract (English)

Robotic assistance allows surgeries to be reliably and accurately executed while still under direct supervision of the surgeon, combining the strengths of robotic technology with the surgeon's expertise. This paper describes a robotic system designed to assist in surgical procedures by implementing a virtual drill guide. The system integrates virtual-fixture functionality using a novel virtual-mechanism controller with additional visual feedback. The controller constrains the tool to the desired axis, while allowing axial motion to remain under the surgeon's control. Compared to prior virtual-fixture approaches -- which primarily perform pure energy-shaping and damping injection with linear springs and dampers -- our controller uses a virtual prismatic joint to which the robot is constrained by nonlinear springs, allowing us to easily shape the dynamics of the system. We detail the calibration procedures required to achieve sufficient precision, and describe the implementation of the controller. We apply this system to a veterinary procedure: drilling for transcondylar screw placement in dogs. The results of the trials on 3D-printed bone models demonstrate sufficient precision to perform the procedure and suggest improved angular accuracy and reduced exit translation errors compared to patient specific guides (PSG). Discussion and future improvements follow.

手术机器人虚拟导钻精准医疗非线性控制

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