Showing results (11-20 of 36) with videos related to
Sort By:
Pageof 4
Materials Today. Bio|November 19, 2025
Increased substrate stiffness disrupts nuclear-cytoskeletal mechanical coupling in senescent cellsMina Sohrabi Molina, Erik Brauer, Rebecca Günther, et al.Biomechanics and Modeling in Mechanobiology|April 11, 2014
The emergence of extracellular matrix mechanics and cell traction forces as important regulators of cellular self-organizationSara Checa, Manuel K Rausch, Ansgar Petersen, et al.Expert Opinion on Biological Therapy|January 9, 2014
Initiation and early control of tissue regeneration - bone healing as a model system for tissue regenerationKatharina Schmidt-Bleek, Ansgar Petersen, Anke Dienelt, et al.Materials Science & Engineering. C, Materials for Biological Applications|April 4, 2021
Inner strut morphology is the key parameter in producing highly porous and mechanically stable poly(ε-caprolactone) scaffolds via selective laser sinteringMartina Tortorici, Christoph Gayer, Alessandro Torchio, et al.Journal of the Royal Society, Interface|August 10, 2018
Mesoscale substrate curvature overrules nanoscale contact guidance to direct bone marrow stromal cell migrationMaike Werner, Nicholas A Kurniawan, Gabriela Korus, et al.Annals of Biomedical Engineering|June 22, 2011
Combined in vivo/in silico study of mechanobiological mechanisms during endochondral ossification in bone healingFlorian Witt, Ansgar Petersen, Robin Seidel, et al.Communications Biology|August 30, 2024
Temporal regulation of BMP2 growth factor signaling in response to mechanical loading is linked to cytoskeletal and focal adhesion remodelingSophie Görlitz, Erik Brauer, Rebecca Günther, et al.Nature Reviews. Rheumatology|January 9, 2023
The decisive early phase of bone regenerationGeorg N Duda, Sven Geissler, Sara Checa, et al.Plos One|September 17, 2013
Geometry-driven cell organization determines tissue growths in scaffold pores: consequences for fibronectin organizationPascal Joly, Georg N Duda, Martin Schöne, et al.Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|May 9, 2019
Collagen Fibrils Mechanically Contribute to Tissue Contraction in an In Vitro Wound Healing ScenarioErik Brauer, Evi Lippens, Oliver Klein, et al.Pageof 4