arXiv:2511.01199cs.RO2025-11

可遥控弯曲的气囊内窥镜实现心脏内精准导航与操作

Closed-loop Control of Steerable Balloon Endoscopes for Robot-assisted Transcatheter Intracardiac Procedures

  • 用气压独立控制气囊直径和弯曲角度,实现视野与方向双调控
  • 支持直接心腔内成像,避免传统影像方式的局限性
  • 适用于瓣膜修复等微创手术,适合机器人辅助介入场景

为减少开胸手术风险,推动更安全的经导管心脏介入治疗,亟需改进成像与机器人导航技术。传统影像如透视和超声存在局限,而心腔镜(cardioscopy)可实现心脏搏动时的直接光学可视化。本文提出一种可转向的气囊式心腔镜:可压缩通过血管,进入心脏后充气展开,通过集成的工作通道完成成像与器械输送。通过优化气囊壁厚设计,仅通过单一输入——气囊压力,即可独立控制两个输出:气囊直径(对应视野范围)与弯曲角度(用于精确对准工作通道)。该技术可适配多种心脏内操作任务。以主动脉瓣叶切开为例,展示了具体应用方案。同时,基于图像的闭环控制方法被验证,可在器械插入与撤出过程中实现稳定的方向控制。

原文摘要 · Abstract (English)

To move away from open-heart surgery towards safer transcatheter procedures, there is a growing need for improved imaging techniques and robotic solutions to enable simple, accurate tool navigation. Common imaging modalities, such as fluoroscopy and ultrasound, have limitations that can be overcome using cardioscopy, i.e., direct optical visualization inside the beating heart. We present a cardioscope designed as a steerable balloon. As a balloon, it can be collapsed to pass through the vasculature and subsequently inflated inside the heart for visualization and tool delivery through an integrated working channel. Through careful design of balloon wall thickness, a single input, balloon inflation pressure, is used to independently control two outputs, balloon diameter (corresponding to field of view diameter) and balloon bending angle (enabling precise working channel positioning). This balloon technology can be tuned to produce cardioscopes designed for a range of intracardiac tasks. To illustrate this approach, a balloon design is presented for the specific task of aortic leaflet laceration. Image-based closed-loop control of bending angle is also demonstrated as a means of enabling stable orientation control during tool insertion and removal.

机器人手术内窥镜心脏介入闭环控制

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。