AbstractSystematic studies of cardiac structure-function relationships to date have been hindered by the intrinsic complexity and variability of in vivo and ex vivo model systems. Thus, we set out to develop a reproducible cell culture system that can accurately replicate the realistic microstructure of native cardiac tissues. Using cell micropatterning techniques, we aligned cultured cardiomyocytes at micro- and macroscopic spatial scales to follow local directions of cardiac fibers in murine ventricular cross sections, as measured by high-resolution diffusion tensor magnetic resonance imaging. To elucidate the roles of ventricular tissue microstructure in macroscopic impulse conduction, we optically mapped membrane potentials in micropatt...
<p>Engineered monolayers created by using microabrasion and micropatterning methods have provided a ...
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
Cardiac tissue engineering has a potential to provide functional, synchronously contractile tissue c...
<p>The role of cardiac tissue structure in both normal and abnormal impulse conduction has been exte...
Abstract—Structural and functional cardiac anisotropy varies with the development, location, and pat...
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
Cardiac myocytes and fibroblasts are essential elements of myocardial tissue structure and function....
Cardiac myocytes and fibroblasts are essential elements of myocardial tissue structure and function....
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
Objective: Unidirectional conduction block (UCB) and reentry may occur as a consequence of an abrupt...
Objective: Unidirectional conduction block (UCB) and reentry may occur as a consequence of an abrupt...
Cardiac tissue engineering has a potential to provide functional, synchronously contractile tissue c...
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
<p>Engineered monolayers created by using microabrasion and micropatterning methods have provided a ...
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
Cardiac tissue engineering has a potential to provide functional, synchronously contractile tissue c...
<p>The role of cardiac tissue structure in both normal and abnormal impulse conduction has been exte...
Abstract—Structural and functional cardiac anisotropy varies with the development, location, and pat...
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
Cardiac myocytes and fibroblasts are essential elements of myocardial tissue structure and function....
Cardiac myocytes and fibroblasts are essential elements of myocardial tissue structure and function....
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
Objective: Unidirectional conduction block (UCB) and reentry may occur as a consequence of an abrupt...
Objective: Unidirectional conduction block (UCB) and reentry may occur as a consequence of an abrupt...
Cardiac tissue engineering has a potential to provide functional, synchronously contractile tissue c...
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
<p>Engineered monolayers created by using microabrasion and micropatterning methods have provided a ...
Current platforms for in vitro drug development utilize confluent, unorganized monolayers of heart c...
Cardiac tissue engineering has a potential to provide functional, synchronously contractile tissue c...