Showing results (1-10 of 70) with videos related to
Sort By:
Pageof 7
Acta Biomaterialia|July 10, 2020
Interstitial fluid-solid interaction within aneurysmal and non-pathological human ascending aortic tissue under translational sinusoidal shear deformationHenry W Haslach, Jenna Gipple, Jason Harwerth, et al.Clinical Biomechanics (Bristol, Avon)|July 18, 2018
Comparison of aneurysmal and non-pathologic human ascending aortic tissue in shearHenry W Haslach, Jenna Gipple, Bradley Taylor, et al.Biomechanics and Modeling in Mechanobiology|November 13, 2004
Nonlinear viscoelastic, thermodynamically consistent, models for biological soft tissueHenry W HaslachJournal of Mathematical Biology|November 9, 2002
A nonlinear dynamical mechanism for bruit generation by an intracranial saccular aneurysmHenry W HaslachJournal of Rehabilitation Research and Development|July 25, 2013
Experimental characterization of axillary/underarm interface pressure in swing-through crutch walkingJames Borrelli, Henry W HaslachJournal of the Mechanical Behavior of Biomedical Materials|August 3, 2020
Damage to the rat cerebrum under in vitro sinusoidal translational shear deformationJenna M Gipple, Henry W HaslachJournal of the Mechanical Behavior of Biomedical Materials|February 4, 2017
Influence of high deformation rate, brain region, transverse compression, and specimen size on rat brain shear stress morphology and magnitudeHenry W Haslach, Jenna M Gipple, Lauren N LeahyJournal of the Mechanical Behavior of Biomedical Materials|April 28, 2015
Transient solid-fluid interactions in rat brain tissue under combined translational shear and fixed compressionHenry W Haslach, Lauren N Leahy, Adam H HsiehActa Biomaterialia|January 3, 2018
Fracture mechanics of shear crack propagation and dissection in the healthy bovine descending aortic mediaHenry W Haslach, Ahmed Siddiqui, Amanda Weerasooriya, et al.Journal of the Mechanical Behavior of Biomedical Materials|October 3, 2013
Solid-extracellular fluid interaction and damage in the mechanical response of rat brain tissue under confined compressionHenry W Haslach, Lauren N Leahy, Peter Riley, et al.Pageof 7