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利用双层柔性印刷电路板制造用于软机器人心脏标测导管的可拉伸电子器件。

Creating Stretchable Electronics from Dual Layer Flex-PCB for Soft Robotic Cardiac Mapping Catheters.

作者信息

Lahcen Abdellatif Ait, Caprio Alexandre, Hsue Weihow, Tschabrunn Cory, Liu Christopher, Mosadegh Bobak, Dunham Simon

机构信息

Dalio Institute for Cardiovascular Imaging, Department of Radiology, Weill Cornell Medicine, New York, NY 10021, USA.

Department of Clinical Sciences, College of Veterinary Medicine, Cornell University, Ithaca, NY 14853, USA.

出版信息

Micromachines (Basel). 2023 Apr 20;14(4):884. doi: 10.3390/mi14040884.

Abstract

The authors present in this study the development of a novel method for creating stretchable electronics from dual-layer flex printed circuit boards (flex-PCBs) as a platform for soft robotic sensor arrays (SRSAs) for cardiac voltage mapping applications. There is a crucial need for devices that utilize multiple sensors and provide high performance signal acquisition for cardiac mapping. Previously, our group demonstrated how single-layer flex-PCB can be postprocessed to create a stretchable electronic sensing array. In this work, a detailed fabrication process for creating a dual-layer multielectrode flex-PCB SRSA is presented, along with relevant parameters to achieve optimal postprocessing with a laser cutter. The dual-layer flex-PCB SRSA's ability to acquire electrical signals is demonstrated both in vitro as well as in vivo on a Leporine cardiac surface. These SRSAs could be extended into full-chamber cardiac mapping catheter applications. Our results show a significant contribution towards the scalable use of dual-layer flex-PCB for stretchable electronics.

摘要

在本研究中,作者提出了一种新颖的方法,该方法以双层柔性印刷电路板(flex-PCB)为平台制造可拉伸电子器件,用作心脏电压映射应用的软机器人传感器阵列(SRSA)。对于利用多个传感器并为心脏映射提供高性能信号采集的设备有着迫切需求。此前,我们团队展示了如何对单层flex-PCB进行后处理以创建可拉伸电子传感阵列。在这项工作中,展示了创建双层多电极flex-PCB SRSA的详细制造过程,以及使用激光切割机实现最佳后处理的相关参数。双层flex-PCB SRSA采集电信号的能力在体外以及兔心脏表面的体内实验中均得到了证明。这些SRSA可扩展到全腔心脏映射导管应用中。我们的结果表明,双层flex-PCB在可拉伸电子器件的可扩展应用方面做出了重大贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de64/10146302/f1dddc1f1abd/micromachines-14-00884-g001.jpg

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