Keyphrases
Electrically Conductive
100%
Design Approach
100%
Bioresorbable
100%
Cardiac Patch
100%
Material Approaches
100%
Myocardial Infarction
66%
Cause of Disability
16%
Leading Causes of Death
16%
Electrical Signal
16%
Hybrid Materials
16%
Finite Element Analysis
16%
Material Structure
16%
Biopolymers
16%
Mechanical Performance
16%
Biointerface
16%
Human Induced Pluripotent Stem Cell-derived Cardiomyocytes (hiPSC-CMs)
16%
Cardiac Contraction
16%
Cardiac Disease
16%
Ex Vivo Studies
16%
Conducting Polymer
16%
Mechanical Support
16%
Highly Conductive
16%
Temporary Implants
16%
Signal Propagation
16%
High Impedance
16%
Electrical Performance
16%
Healing Period
16%
Patch-based
16%
Infarction Area
16%
Elastic Mechanical Properties
16%
Conductive Path
16%
Serpentine Geometry
16%
Impedance Interface
16%
Bioresorbable Metal
16%
Cardiac Excitation
16%
Engineering
Conductive
100%
Cardiac Patch
100%
Cardiomyocytes
16%
Mechanical Performance
16%
Electrical Signal
16%
Electrical Performance
16%
Conductive Polymer
16%
Induced Pluripotent Stem Cell
16%
Conductive Path
16%
Implant
16%
Finite Element Analysis
16%