arrow
Return

Three-Dimensional Flexible Electronics Enabled by Shape Memory Polymer Substrates for Responsive Neural Interfaces

delete2012-11-20
delete148
delete
OA
AI
T
Taylor H. Ware
D
Dustin Simon
K
Keith Hearon
H
H. Clive Liu
S
Sagar Shah
J
Jonathan T. Reeder
N
Navid Khodaparast
M
Michael P. Kilgard
D
Duncan J. Maitland
R
Robert L. Rennaker
W
Walter Voit *
DOI:10.1002/mame.201200241delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Planar electronics processing methods have enabled neural interfaces to become more precise and deliver more information. However, this processing paradigm is inherently 2D and rigid. The resulting mechanical and geometrical mismatch at the biotic abiotic interface can elicit an immune response that prevents effective stimulation. In this work, a thiol-ene/acrylate shape memory polymer is utilized to create 3D softening substrates for stimulation electrodes. This substrate system is shown to soften in vivo from more than 600 to 6 MPa. A nerve cuff electrode that coils around the vagus nerve in a rat and that drives neural activity is demonstrated.
Keywords:
flexible electronics
neural interfaces
shape memory polymers
stimuli-sensitive polymers
thermosets

Journal

Macromolecular Materials and Engineering cover
Macromolecular Materials and Engineering
IF:
4.6
Papers:
4.1K
Citations:
9.5K

Organization

U
University of Texas Dallas
Scholars:
5.6K
Papers: 5.0K
Citations: 15
U
university of texas system
Scholars:
18.5W
Papers: 15.6W
Citations: 210
T
Texas A&M University System
Scholars:
4.4W
Papers: 4.0W
Citations: 4.0K
researcher View more organizations