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液态金属基柔性生物电极用于支架内再狭窄管理:潜在应用。

Liquid Metal-Based Flexible Bioelectrodes for Management of In-Stent-Restenosis: Potential Application.

机构信息

Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

School of Future Technology, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Biosensors (Basel). 2023 Aug 7;13(8):795. doi: 10.3390/bios13080795.

Abstract

Although vascular stents have been widely used in clinical practice, there is still a risk of in-stent restenosis after their implantation. Combining conventional vascular stents with liquid metal-based electrodes with impedance detection, irreversible electroporation, and blood pressure detection provides a new direction to completely solve the restenosis problem. Compared with conventional rigid electrodes, liquid metal-based electrodes combine high conductivity and stretchability, and are more compliant with the implantation process of vascular stents and remain in the vasculature for a long period of time. This perspective reviews the types and development of conventional vascular stents and proposes a novel stent that integrates liquid metal-based electrodes on conventional vascular stents. This vascular stent has three major functions of prediction, detection and treatment, and is expected to be a new generation of cardiovascular implant with intelligent sensing and real-time monitoring.

摘要

虽然血管内支架已广泛应用于临床实践,但在植入后仍存在支架内再狭窄的风险。将传统的血管内支架与基于液态金属的电极相结合,结合阻抗检测、不可逆电穿孔和血压检测,为彻底解决再狭窄问题提供了新的方向。与传统的刚性电极相比,基于液态金属的电极结合了高导电性和可拉伸性,更符合血管内支架的植入过程,并能在血管内长时间保持。本综述讨论了传统血管内支架的类型和发展,并提出了一种在传统血管内支架上集成基于液态金属的电极的新型支架。这种血管支架具有预测、检测和治疗三大功能,有望成为新一代具有智能传感和实时监测功能的心血管植入物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56a2/10452354/7a8ffd24dad3/biosensors-13-00795-g003.jpg

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