Title | Creating Stretchable Electronics from Dual Layer Flex-PCB for Soft Robotic Cardiac Mapping Catheters. |
Publication Type | Journal Article |
Year of Publication | 2023 |
Authors | Lahcen AAit, Caprio A, Hsue W, Tschabrunn C, Liu C, Mosadegh B, Dunham S |
Journal | Micromachines (Basel) |
Volume | 14 |
Issue | 4 |
Date Published | 2023 Apr 20 |
ISSN | 2072-666X |
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. |
DOI | 10.3390/mi14040884 |
Alternate Journal | Micromachines (Basel) |
PubMed ID | 37421117 |
PubMed Central ID | PMC10146302 |
Grant List | R61 HL156153 / HL / NHLBI NIH HHS / United States |
Related Institute:
Dalio Institute of Cardiovascular Imaging (Dalio ICI)