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Seminars in Cell & Developmental Biology
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September 28, 2025
Viscoelasticity during development: What is it? and why should you care?
Yicheng Dong, Spandan Maiti, Lance A Davidson
Bioinformatics (Oxford, England)
|
April 6, 2010
An integer programming formulation to identify the sparse network architecture governing differentiation of embryonic stem cells
Ipsita Banerjee, Spandan Maiti, Natesh Parashurama, et al.
Development (Cambridge, England)
|
February 12, 2015
Force production and mechanical accommodation during convergent extension
Jian Zhou, Siladitya Pal, Spandan Maiti, et al.
Soft Matter
|
January 6, 2017
Stretching-induced wrinkling in plastic-rubber composites
Junyu Yang, Sameer Damle, Spandan Maiti, et al.
Biomechanics and Modeling in Mechanobiology
|
June 6, 2019
Computational modeling reveals the relationship between intrinsic failure properties and uniaxial biomechanical behavior of arterial tissue
Ronald N Fortunato, Anne M Robertson, Chao Sang, et al.
Journal of Biomechanics
|
July 12, 2014
Varying degrees of nonlinear mechanical behavior arising from geometric differences of urogynecological meshes
Andrew Feola, Siladitya Pal, Pamela Moalli, et al.
Journal of Biomechanical Engineering
|
March 12, 2026
Load Transfer along Continuous Collagen Fibers Reduces the Importance of Wall Thickness Variations
Yamnesh Agrawal, Masoud Zamani, James Thunes, et al.
Journal of Biomechanical Engineering
|
January 8, 2019
Swine Vagina Under Planar Biaxial Loads: An Investigation of Large Deformations and Tears
Jeffrey A McGuire, Steven D Abramowitch, Spandan Maiti, et al.
Journal of Biomechanical Engineering
|
May 30, 2019
A Validated, Specimen-Specific Finite Element Model of the Supraspinatus Tendon Mechanical Environment
R Matthew Miller, James Thunes, Volker Musahl, et al.
Arxiv
|
November 19, 2025
Load Transfer along Continuous Collagen Fibers Reduces the Importance of Wall Thickness Variations
Yamnesh Agrawal, Masoud Zamani, James R Thunes, et al.
Page
of 4
Search research articles
Search
Showing results (1-10 of 35) with videos related to
Sort By:
Page
of 4
Seminars in Cell & Developmental Biology
|
September 28, 2025
Viscoelasticity during development: What is it? and why should you care?
Yicheng Dong, Spandan Maiti, Lance A Davidson
Bioinformatics (Oxford, England)
|
April 6, 2010
An integer programming formulation to identify the sparse network architecture governing differentiation of embryonic stem cells
Ipsita Banerjee, Spandan Maiti, Natesh Parashurama, et al.
Development (Cambridge, England)
|
February 12, 2015
Force production and mechanical accommodation during convergent extension
Jian Zhou, Siladitya Pal, Spandan Maiti, et al.
Soft Matter
|
January 6, 2017
Stretching-induced wrinkling in plastic-rubber composites
Junyu Yang, Sameer Damle, Spandan Maiti, et al.
Biomechanics and Modeling in Mechanobiology
|
June 6, 2019
Computational modeling reveals the relationship between intrinsic failure properties and uniaxial biomechanical behavior of arterial tissue
Ronald N Fortunato, Anne M Robertson, Chao Sang, et al.
Journal of Biomechanics
|
July 12, 2014
Varying degrees of nonlinear mechanical behavior arising from geometric differences of urogynecological meshes
Andrew Feola, Siladitya Pal, Pamela Moalli, et al.
Journal of Biomechanical Engineering
|
March 12, 2026
Load Transfer along Continuous Collagen Fibers Reduces the Importance of Wall Thickness Variations
Yamnesh Agrawal, Masoud Zamani, James Thunes, et al.
Journal of Biomechanical Engineering
|
January 8, 2019
Swine Vagina Under Planar Biaxial Loads: An Investigation of Large Deformations and Tears
Jeffrey A McGuire, Steven D Abramowitch, Spandan Maiti, et al.
Journal of Biomechanical Engineering
|
May 30, 2019
A Validated, Specimen-Specific Finite Element Model of the Supraspinatus Tendon Mechanical Environment
R Matthew Miller, James Thunes, Volker Musahl, et al.
Arxiv
|
November 19, 2025
Load Transfer along Continuous Collagen Fibers Reduces the Importance of Wall Thickness Variations
Yamnesh Agrawal, Masoud Zamani, James R Thunes, et al.
Page
of 4