Larry A. Taber
Affiliations: | Biomedical Engineering | Washington University, Saint Louis, St. Louis, MO |
Area:
Biomedical Engineering, Biomechanics BiophysicsGoogle:
"Larry Taber"Children
Sign in to add traineeEvan A. Zamir | grad student | 2003 | Washington University |
Mathieu C. Remond | grad student | 2006 | Washington University |
Patrick W. Alford | grad student | 2007 | Washington University |
Victor D. Varner | grad student | 2011 | Washington University |
Benjamen A. Filas | grad student | 2012 | Washington University |
Yunfei Shi | grad student | 2014 | Washington University |
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Publications
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Oltean A, Taber LA. (2021) A Chemomechanical Model for Regulation of Contractility in the Embryonic Brain Tube. Journal of Elasticity. 145: 77-98 |
Garcia KE, Stewart WG, Espinosa MG, et al. (2019) Molecular and mechanical signals determine morphogenesis of the cerebral hemispheres in the chicken embryo. Development (Cambridge, England). 146 |
Espinosa MG, Taber LA, Wagenseil JE. (2018) Reduced embryonic blood flow impacts extracellular matrix deposition in the maturing aorta. Developmental Dynamics : An Official Publication of the American Association of Anatomists |
Hosseini HS, Taber LA. (2018) How mechanical forces shape the developing eye. Progress in Biophysics and Molecular Biology |
Oltean A, Taber LA. (2017) Apoptosis Generates Mechanical Forces that Close the Lens Vesicle in the Chick Embryo. Physical Biology |
Hosseini HS, Garcia KE, Taber LA. (2017) A new hypothesis for foregut and heart tube formation based on differential growth and actomyosin contraction. Development (Cambridge, England) |
Hosseini S, Taber LA. (2017) Physical and Mechanical Forces that Shape Heart Tube in the Chick Embryo Biophysical Journal. 112: 304a-305a |
Chen Z, Guo Q, Dai E, et al. (2016) How the embryonic chick brain twists. Journal of the Royal Society, Interface. 13 |
Garcia KE, Okamoto RJ, Bayly PV, et al. (2016) Contraction and stress-dependent growth shape the forebrain of the early chicken embryo. Journal of the Mechanical Behavior of Biomedical Materials. 65: 383-397 |
Oltean A, Huang J, Beebe DC, et al. (2016) Tissue growth constrained by extracellular matrix drives invagination during optic cup morphogenesis. Biomechanics and Modeling in Mechanobiology |