An Electromagnetically Controllable Microrobotic Interventional System for Targeted, Real‐Time Cardiovascular Intervention

遥操作 介入心脏病学 生物医学工程 介入性磁共振成像 医学 计算机科学 放射科 人工智能 外科 机器人 磁共振成像
作者
Junsun Hwang,Sungwoong Jeon,Beomjoo Kim,Jin‐young Kim,Chaewon Jin,Ara Yeon,Byung‐Ju Yi,Chang‐Hwan Yoon,Hun‐Jun Park,Salvador Pané,Bradley J. Nelson,Hongsoo Choi
出处
期刊:Advanced Healthcare Materials [Wiley]
卷期号:11 (11) 被引量:46
标识
DOI:10.1002/adhm.202102529
摘要

Abstract Robotic magnetic manipulation systems offer a wide range of potential benefits in medical fields, such as precise and selective manipulation of magnetically responsive instruments in difficult‐to‐reach vessels and tissues. However, more preclinical/clinical studies are necessary before robotic magnetic interventional systems can be widely adopted. In this study, a clinically translatable, electromagnetically controllable microrobotic interventional system (ECMIS) that assists a physician in remotely manipulating and controlling microdiameter guidewires in real time, is reported. The ECMIS comprises a microrobotic guidewire capable of active magnetic steering under low‐strength magnetic fields, a human‐scale electromagnetic actuation (EMA) system, a biplane X‐ray imaging system, and a remote guidewire/catheter advancer unit. The proposed ECMIS demonstrates targeted real‐time cardiovascular interventions in vascular phantoms through precise and rapid control of the microrobotic guidewire under EMA. Further, the potential clinical effectiveness of the ECMIS for real‐time cardiovascular interventions is investigated through preclinical studies in coronary, iliac, and renal arteries of swine models in vivo, where the magnetic steering of the microrobotic guidewire and control of other ECMIS modules are teleoperated by operators in a separate control booth with X‐ray shielding. The proposed ECMIS can help medical physicians optimally manipulate interventional devices such as guidewires under minimal radiation exposure.
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