Moving Domain Computational Fluid Dynamics to Interface with an Embryonic Model of Cardiac Morphogenesis
Peristaltic contraction of the embryonic heart tube produces time- and spatial-varying wall shear stress (WSS) and pressure gradients (∇P) across the atrioventricular (AV) canal. Zebrafish (Danio rerio) are a genetically tractable system to investigate cardiac morphogenesis. The use of Tg(fli1a:EGFP...
Main Authors: | Lee, Juhyun, Moghadam, Mahdi Esmaily, Kung, Ethan, Cao, Hung, Beebe, Tyler, Miller, Yury, Roman, Beth L., Lien, Ching-Ling, Chi, Neil C., Marsden, Alison L., Hsiai, Tzung K. |
---|---|
Format: | Online |
Language: | English |
Published: |
Public Library of Science
2013
|
Online Access: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3751826/ |
Similar Items
-
A method to quantify mechanobiologic forces during zebrafish cardiac development using 4-D light sheet imaging and computational modeling.
by: Vijay Vedula, et al.
Published: (2017-10-01) -
Review of "Understanding the Human Machine, A Primer for Bioengineering" by Max E. Valentinuzzi
by: Hsiai, Tzung K
Published: (2005) -
Rac GTPase signaling in mechanotransduction during embryonic morphogenesis
by: Labouesse, Michel
Published: (2011) -
Surface landmark quantification of embryonic mouse craniofacial morphogenesis
by: Percival, Christopher J, et al.
Published: (2014) -
EPITHELIAL COLLAGENS AND GLYCOSAMINOGLYCANS IN THE EMBRYONIC CORNEA : Macromolecular Order and Morphogenesis in the Basement Membrane
by: Trelstad, Robert L., et al.
Published: (1974)