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Computer Methods in Biomechanics and Biomedical Engineering|May 9, 2012
Layered water in crystal interfaces as source for bone viscoelasticity: arguments from a multiscale approachLukas Eberhardsteiner, Christian Hellmich, Stefan Scheiner
Chaos, Solitons, and Fractals|June 9, 2020
Mathematical modeling of COVID-19 fatality trends: Death kinetics law versus infection-to-death delay ruleStefan Scheiner, Niketa Ukaj, Christian Hellmich
Biomechanics and Modeling in Mechanobiology|July 30, 2015
Poromicromechanics reveals that physiological bone strains induce osteocyte-stimulating lacunar pressureStefan Scheiner, Peter Pivonka, Christian Hellmich
International Journal of Fracture|April 10, 2020
Strength increase during ceramic biomaterial-induced bone regeneration: a micromechanical studyStefan Scheiner, Vladimir S Komlev, Christian Hellmich
Bone|November 25, 2017
A mathematical multiscale model of bone remodeling, accounting for pore space-specific mechanosensationMaria-Ioana Pastrama, Stefan Scheiner, Peter Pivonka, et al.
Computerized Medical Imaging and Graphics : the Official Journal of the Computerized Medical Imaging Society|August 9, 2015
X-ray physics- and bone composition-based estimation of thickness characteristics from clinical mandibular radiographsStefan Scheiner, Christian Hellmich, Christoph Müller, et al.
Biomaterials|January 13, 2009
Micromechanics of bone tissue-engineering scaffolds, based on resolution error-cleared computer tomographyStefan Scheiner, Raffaele Sinibaldi, Bernhard Pichler, et al.
Materials Science & Engineering. C, Materials for Biological Applications|December 22, 2018
X-ray physics-based CT-to-composition conversion applied to a tissue engineering scaffold, enabling multiscale simulation of its elastic behaviorKarol Szlazak, Viktoria Vass, Patricia Hasslinger, et al.
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