触觉技术
遥操作
计算机科学
成像体模
形势意识
支气管镜检查
幻觉
计算机视觉
人工智能
柔性支气管镜检查
遥控机器人学
患者安全
可视化
感知
自然口腔镜手术
模拟
碰撞
医学
工作流程
碰撞检测
人机交互
作者
Bodong Fan,Luhao Xie,Lifeng Zhu,Xiaoliang Jin,Jian Lu,Gao‐Jun Teng,Aiguo Song
摘要
BACKGROUND: Teleoperated flexible bronchoscopy lacks distal haptic feedback, increasing the risk of unobservable iatrogenic tissue trauma during endoluminal exploration. METHODS: This study proposes a robot-assisted bronchoscopy system integrated with a dual-modal safety framework. A visual module utilises image moments to provide predictive alerts for collision avoidance. Concurrently, a Transformer-based network estimates distal interaction torques from proximal actuation, enabling real-time haptic perception at the leader console. RESULTS: Phantom validations across fragile tissue rupture, sidewall approximation, and luminal exploration tasks demonstrated the framework's efficacy. The visual warnings helped decrease excessive force contacts, while the learning-based estimator delivered reliable distal force perception. CONCLUSIONS: The proposed dual-modal teleoperated safety architecture resolves the trade-off between operational dexterity and safety in flexible bronchoscopy. By integrating predictive visual warnings and real-time haptic feedback, the system improves the operator's situational awareness, decreasing the risk of iatrogenic trauma during the operation.
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