离体
生物医学工程
心力衰竭
体内
软机器人
人的心脏
功能(生物学)
医学
软组织
心脏病学
计算机科学
外科
生物
细胞生物学
机器人
人工智能
生物技术
作者
Ellen T. Roche,Markus A. Horvath,Isaac Wamala,Ali Alazmani,Sang‐Eun Song,William Whyte,Zurab Machaidze,Christopher J. Payne,James Weaver,Gregory A. Fishbein,Joseph D. Kuebler,Nikolay V. Vasilyev,David Mooney,Frank A. Pigula,Conor J. Walsh
标识
DOI:10.1126/scitranslmed.aaf3925
摘要
There is much interest in form-fitting, low-modulus, implantable devices or soft robots that can mimic or assist in complex biological functions such as the contraction of heart muscle. We present a soft robotic sleeve that is implanted around the heart and actively compresses and twists to act as a cardiac ventricular assist device. The sleeve does not contact blood, obviating the need for anticoagulation therapy or blood thinners, and reduces complications with current ventricular assist devices, such as clotting and infection. Our approach used a biologically inspired design to orient individual contracting elements or actuators in a layered helical and circumferential fashion, mimicking the orientation of the outer two muscle layers of the mammalian heart. The resulting implantable soft robot mimicked the form and function of the native heart, with a stiffness value of the same order of magnitude as that of the heart tissue. We demonstrated feasibility of this soft sleeve device for supporting heart function in a porcine model of acute heart failure. The soft robotic sleeve can be customized to patient-specific needs and may have the potential to act as a bridge to transplant for patients with heart failure.
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