医学物理学
介入心脏病学
生物医学工程
医学
系统工程
导管
重症监护医学
纳米技术
烧蚀
风险分析(工程)
计算机科学
材料科学
射频消融术
介入放射学
医源性损伤
临床前研究
临床实习
微创手术
生物相容性材料
作者
Shibang Li,Ru Wang,Le Song,Zhiqiang Xu,Jianchen Xie,Jingjing Li,Han Chen,Xiu Wei Jia,Dae‐Hyeong Kim,Liu Wang
标识
DOI:10.1002/adma.202513239
摘要
Cardiovascular diseases (CVDs), such as heart attacks and strokes, are the top causes of death and disability globally. The standard treatment for CVDs usually involves interventional procedures, in which slender instruments such as guidewires and catheters are navigated through blood vessels to reach target lesions. However, the inability to accurately quantify the contact force (CF) between interventional instruments and tissues raises the risks of vascular injury, poor ablation results, and high rates of recurrence after the procedure. With rapid advancements in robot-assisted interventional surgery, the need for accurate CF measurement and feedback has become increasingly urgent. This review systematically examines the latest research on CF sensing in interventional procedure, organized into four main areas: 1) a comparative analysis of CF sensing methods and their strengths and limitations; 2) an overview of functional materials for CF sensing and their properties; 3) a comparative evaluation of sensor designs regarding performance and constraints; and 4) a practical summary of CF sensing applications in guidewire navigation, occlusion penetration, catheter ablation, and related procedures. Finally, future directions for CF sensing, highlighting its critical role in advancing biomedical applications, are discussed.
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