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Bone|September 7, 2021
Mechanical loading and parathyroid hormone effects and synergism in bone vary by site and modeling/remodeling regimeSamuel T Robinson, Peter T Shyu, X Edward GuoBiochemical and Biophysical Research Communications|August 19, 2021
Adenylyl cyclase 3 regulates osteocyte mechanotransduction and primary ciliumMichael P Duffy, McKenzie E Sup, X Edward GuoJournal of Orthopaedic Translation|January 24, 2022
Hemodynamic stress shapes subchondral bone in osteoarthritis: An emerging hypothesisRuiyan Ni, X Edward Guo, ChunHoi Yan, et al.Interface Focus|February 9, 2016
Experimental studies of bone mechanoadaptation: bridging in vitro and in vivo studies with multiscale systemsGenevieve N Brown, Rachel L Sattler, X Edward GuoBone|April 25, 2016
T-Type voltage-sensitive calcium channels mediate mechanically-induced intracellular calcium oscillations in osteocytes by regulating endoplasmic reticulum calcium dynamicsGenevieve N Brown, Pui L Leong, X Edward GuoJournal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research|November 25, 2011
Osteocytic network is more responsive in calcium signaling than osteoblastic network under fluid flowX Lucas Lu, Bo Huo, Victor Chiang, et al.Bone|July 4, 2012
Calcium response in osteocytic networks under steady and oscillatory fluid flowX Lucas Lu, Bo Huo, Miri Park, et al.Computer Methods in Biomechanics and Biomedical Engineering|January 16, 2010
Quantification of trabecular bone microdamage using the virtual internal bond model and the individual trabeculae segmentation techniqueGuanhui Fang, Baohua Ji, X Sherry Liu, et al.Journal of Biomedical Materials Research. Part A|February 6, 2004
Effects of end boundary conditions and specimen geometry on the viscoelastic properties of cancellous bone measured by dynamic mechanical analysisX Neil Dong, Yener N Yeni, Clifford M Les, et al.Bio-Medical Materials and Engineering|August 10, 2004
The dependence between the strength and stiffness of cancellous and cortical bone tissue for tension and compression: extension of a unifying principleYener N Yeni, X Neil Dong, David P Fyhrie, et al.Pageof 21