Hou Ruizhe, Wang Hongying, Zou Jincheng, Cao Bo, Zhao Shiqing, Zhang Aili
School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai 200030, P.R. China.
iScience. 2025 Jul 5;28(8):113074. doi: 10.1016/j.isci.2025.113074. eCollection 2025 Aug 15.
Development of micro-surgical robotic and high-resolution navigation techniques has enabled reach of micro-lesions . However, the small size, special shape, and location of these lesions make conformal treatment a challenge, especially for atherosclerotic lesion. A programmable conformal transluminal ablation device, including multi-channel and multi-level (MCML) radiofrequency (RF) system and RF balloon with circulating low-temperature flow inside, was designed to realize treatment for irregular remote lesions automatically. The system outputs different RF levels for each electrode. With embedding multi-physics-based algorithm, the system optimizes operating parameters and delivers energy accordingly for different targets, achieving sub-millimeter accuracy. Feasibility of the developed device was validated using both lesion-visible phantoms and porcine vessels. For irregular lesions with different shapes and locations, the ablated region closely matched the target. The application of the developed system may also be extended for automatic programmable treatment of other transluminal targets such as lung cancer, and bladder cancer.
显微外科机器人和高分辨率导航技术的发展使得能够触及微小病变。然而,这些病变的小尺寸、特殊形状和位置使得适形治疗成为一项挑战,尤其是对于动脉粥样硬化病变。一种可编程适形腔内消融装置,包括多通道和多级(MCML)射频(RF)系统以及内部有循环低温流的射频球囊,旨在实现对不规则远程病变的自动治疗。该系统为每个电极输出不同的射频水平。通过嵌入基于多物理场的算法,该系统针对不同目标优化操作参数并相应地输送能量,实现亚毫米级精度。使用病变可见模型和猪血管验证了所开发装置的可行性。对于具有不同形状和位置的不规则病变,消融区域与目标紧密匹配。所开发系统的应用还可扩展用于对其他腔内靶点如肺癌和膀胱癌的自动可编程治疗。