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Advanced Drug Delivery Reviews|September 2, 2014
Biomechanical forces in the skeleton and their relevance to bone metastasis: biology and engineering considerationsMaureen E Lynch, Claudia FischbachCurrent Osteoporosis Reports|January 10, 2024
The Role of Osteocytes in Pre-metastatic Niche FormationEmma N Briggs, Maureen E LynchAnnual Review of Biomedical Engineering|May 7, 2013
Engineered culture models for studies of tumor-microenvironment interactionsDavid W Infanger, Maureen E Lynch, Claudia FischbachBiotechnology and Bioengineering|January 25, 2021
Multiphysics simulation of a compression-perfusion combined bioreactor to predict the mechanical microenvironment during bone metastatic breast cancer loading experimentsBoyuan Liu, Suyue Han, Yahya Modarres-Sadeghi, et al.Frontiers in Endocrinology|July 24, 2018
Mechanically-Loaded Breast Cancer Cells Modify Osteocyte Mechanosensitivity by Secreting Factors That Increase Osteocyte Dendrite Formation and Downstream ResorptionWenbo Wang, Blayne A Sarazin, Gabriel Kornilowicz, et al.Current Osteoporosis Reports|November 3, 2021
Mechanobiology of Bone Metastatic CancerBlayne A Sarazin, Claire L Ihle, Philip Owens, et al.Computers in Biology and Medicine|January 1, 2025
High-fidelity computational fluid dynamics modeling to simulate perfusion through a bone-mimicking scaffoldShreya Venkatesh, Chayut Teeraratkul, Nick Rovito, et al.Journal of Biomechanics|August 3, 2010
In vivo tibial stiffness is maintained by whole bone morphology and cross-sectional geometry in growing female miceRussell P Main, Maureen E Lynch, Marjolein C H van der MeulenThe Journal of Experimental Biology|March 1, 2014
Load-induced changes in bone stiffness and cancellous and cortical bone mass following tibial compression diminish with age in female miceRussell P Main, Maureen E Lynch, Marjolein C H van der MeulenHeliyon|September 28, 2023
Bone-homing metastatic breast cancer cells impair osteocytes' mechanoresponse in a 3D loading modelBlayne A Sarazin, Boyuan Liu, Elaine Goldman, et al.Pageof 3