Roshanfar Majid, Salimi Mohammadhossein, Kaboodrangi Amir Hossein, Jang Sun-Joo, Sinusas Albert J, Wong Shing-Chiu, Mosadegh Bobak
Department of Mechanical Engineering, Gina Cody School of Engineering, Concordia University, Montreal, QC H3G 1M8, Canada.
Department of Mechanical Engineering, York University, Toronto, ON M3J 1P3, Canada.
Micromachines (Basel). 2025 Mar 22;16(4):363. doi: 10.3390/mi16040363.
With an increasing number of elderly individuals, the demand for advanced technologies to treat cardiac diseases has become more critical than ever. Additionally, there is a pressing need to reduce the learning curve for cardiac interventionalists to keep pace with the rapid development of new types of procedures and devices and to expand the adoption of established procedures in more hospitals. This comprehensive review aims to shed light on recent advancements in novel robotic systems for cardiac interventions. To do so, this review provides a brief overview of the history of previously developed robotic systems and describes the necessity for advanced technologies for cardiac interventions to address the technological limitations of current systems. Moreover, this review explores the potential of cutting-edge technologies and methods in developing the next generation of intra-procedure autonomous navigation. Each highlighted topic undergoes a critical analysis to evaluate its technical limitations and the challenges that must be addressed for successful clinical implementation.
随着老年人口数量的增加,对治疗心脏病的先进技术的需求比以往任何时候都更加迫切。此外,迫切需要缩短心脏介入医生的学习曲线,以跟上新型手术和设备的快速发展,并在更多医院推广现有手术的应用。这篇综述旨在阐明用于心脏介入的新型机器人系统的最新进展。为此,本综述简要概述了先前开发的机器人系统的历史,并描述了心脏介入先进技术解决当前系统技术局限性的必要性。此外,本综述探讨了前沿技术和方法在开发下一代术中自主导航方面的潜力。对每个突出主题进行批判性分析,以评估其技术局限性以及成功临床应用必须解决的挑战。