arXiv:2502.09813cs.ROcs.SY2025-02ICRA被引 2

用控制屏障函数建模缝线动态,兼顾真实与实时性。

Suture Thread Modeling Using Control Barrier Functions for Autonomous Surgery

  • 基于控制屏障函数统一建模缝线行为与避障
  • 无需解微分方程,计算开销显著降低
  • 适用于机器人手术与虚拟训练系统

自动化手术系统可提升精度与安全性,减少高风险环境下的人工参与。缝合操作的自动化面临关键挑战:缝线作为高度柔性的组件,其建模需兼顾精度与实时性。现有模型或精度不足,或计算成本过高。本文提出一种基于控制屏障函数(CBFs)的新方法,将缝线行为、碰撞规避、刚度与阻尼统一纳入CBF与控制李亚普诺夫函数(CLF)框架,无需计算复杂受力或求解微分方程,大幅降低计算负担,同时保持高真实性,适用于自动化系统与虚拟现实手术训练。该框架还能根据缝线与环境交互提供视觉反馈,提升操作体验。模型在磁控缝合系统(MagnetoSuture)上验证,该平台利用磁场操控缝针,实现微创手术解决方案。

原文摘要 · Abstract (English)

Automating surgical systems enhances precision and safety while reducing human involvement in high-risk environments. A major challenge in automating surgical procedures like suturing is accurately modeling the suture thread, a highly flexible and compliant component. Existing models either lack the accuracy needed for safety critical procedures or are too computationally intensive for real time execution. In this work, we introduce a novel approach for modeling suture thread dynamics using control barrier functions (CBFs), achieving both realism and computational efficiency. Thread like behavior, collision avoidance, stiffness, and damping are all modeled within a unified CBF and control Lyapunov function (CLF) framework. Our approach eliminates the need to calculate complex forces or solve differential equations, significantly reducing computational overhead while maintaining a realistic model suitable for both automation and virtual reality surgical training systems. The framework also allows visual cues to be provided based on the thread's interaction with the environment, enhancing user experience when performing suture or ligation tasks. The proposed model is tested on the MagnetoSuture system, a minimally invasive robotic surgical platform that uses magnetic fields to manipulate suture needles, offering a less invasive solution for surgical procedures.

手术机器人动态建模控制理论

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