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Biochemical and Biophysical Research Communications|August 4, 2011
A role for the primary cilium in paracrine signaling between mechanically stimulated osteocytes and mesenchymal stem cellsDavid A Hoey, Daniel J Kelly, Christopher R JacobsJournal of Biomechanics|September 9, 2011
The mechanics of the primary cilium: an intricate structure with complex functionDavid A Hoey, Matthew E Downs, Christopher R JacobsFrontiers in Endocrinology|June 19, 2012
The primary cilium as a novel extracellular sensor in boneDavid A Hoey, Julia C Chen, Christopher R JacobsJournal of Biomechanics|December 18, 2002
Osteoblastic cells have refractory periods for fluid-flow-induced intracellular calcium oscillations for short bouts of flow and display multiple low-magnitude oscillations during long-term flowSeth W Donahue, Henry J Donahue, Christopher R JacobsStem Cells International|December 10, 2019
Prx1-Expressing Progenitor Primary Cilia Mediate Bone Formation in response to Mechanical Loading in MiceEmily R Moore, Julia C Chen, Christopher R JacobsThe Journal of Biological Chemistry|October 12, 2002
P2Y purinoceptors are responsible for oscillatory fluid flow-induced intracellular calcium mobilization in osteoblastic cellsJun You, Christopher R Jacobs, Thomas H Steinberg, et al.Calcified Tissue International|March 10, 2010
Beta1 integrins mediate mechanosensitive signaling pathways in osteocytesJulie B Litzenberger, Jae-Beom Kim, Padmaja Tummala, et al.Bone|July 25, 2006
Oscillatory fluid flow-induced shear stress decreases osteoclastogenesis through RANKL and OPG signalingChi Hyun Kim, Lidan You, Clare E Yellowley, et al.Biorheology|August 10, 2004
Cycle number and waveform of fluid flow affect bovine articular chondrocytesMaximilian Edlich, Clare E Yellowley, Christopher R Jacobs, et al.Journal of Cell Science|January 29, 2009
Mechanically induced osteogenic differentiation--the role of RhoA, ROCKII and cytoskeletal dynamicsEmily J Arnsdorf, Padmaja Tummala, Ronald Y Kwon, et al.Pageof 9