1
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Concise review: the periosteum: tapping into a reservoir of clinically useful progenitor cells.
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Stem Cells Transl Med
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2012
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1.22
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2
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Current insights on the regenerative potential of the periosteum: molecular, cellular, and endogenous engineering approaches.
|
J Orthop Res
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2012
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1.21
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3
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Modulation of stem cell shape and fate A: the role of density and seeding protocol on nucleus shape and gene expression.
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Tissue Eng Part A
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2008
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1.13
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4
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Modulation of stem cell shape and fate B: mechanical modulation of cell shape and gene expression.
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Tissue Eng Part A
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2008
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1.08
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5
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Effects of mechanical loading patterns, bone graft, and proximity to periosteum on bone defect healing.
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J Biomech
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2010
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1.05
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6
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Net change in periosteal strain during stance shift loading after surgery correlates to rapid de novo bone generation in critically sized defects.
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Ann Biomed Eng
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2011
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1.00
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7
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Periosteum, bone's "smart" bounding membrane, exhibits direction-dependent permeability.
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J Bone Miner Res
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2013
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0.99
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8
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Elucidating multiscale periosteal mechanobiology: a key to unlocking the smart properties and regenerative capacity of the periosteum?
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Tissue Eng Part B Rev
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2013
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0.97
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9
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Nano-microscale models of periosteocytic flow show differences in stresses imparted to cell body and processes.
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Ann Biomed Eng
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2005
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0.96
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10
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Solid-supported lipid bilayers to drive stem cell fate and tissue architecture using periosteum derived progenitor cells.
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Biomaterials
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2012
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0.96
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11
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Design of tissue engineering scaffolds as delivery devices for mechanical and mechanically modulated signals.
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Tissue Eng
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2007
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0.95
|
12
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The imperative for controlled mechanical stresses in unraveling cellular mechanisms of mechanotransduction.
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Biomed Eng Online
|
2006
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0.94
|
13
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In situ spatiotemporal mapping of flow fields around seeded stem cells at the subcellular length scale.
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PLoS One
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2010
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0.93
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14
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Anisotropic mechanical properties of ovine femoral periosteum and the effects of cryopreservation.
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J Biomech
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2011
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0.90
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15
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Open access to novel dual flow chamber technology for in vitro cell mechanotransduction, toxicity and pharamacokinetic studies.
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Biomed Eng Online
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2007
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0.89
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16
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Arthritic periosteal tissue from joint replacement surgery: a novel, autologous source of stem cells.
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Stem Cells Transl Med
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2014
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0.88
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17
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Structure-function relationships in the stem cell's mechanical world B: emergent anisotropy of the cytoskeleton correlates to volume and shape changing stress exposure.
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Mol Cell Biomech
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2011
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0.87
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18
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Effect of lacunocanalicular architecture on hydraulic conductance in bone tissue: implications for bone health and evolution.
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Anat Rec A Discov Mol Cell Evol Biol
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2003
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0.87
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19
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Flow-induced stress on adherent cells in microfluidic devices.
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Lab Chip
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2015
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0.86
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20
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"Culture shock" from the bone cell's perspective: emulating physiological conditions for mechanobiological investigations.
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Am J Physiol Cell Physiol
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2004
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0.84
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21
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Development of preparation methods for and insights obtained from atomic force microscopy of fluid spaces in cortical bone.
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Scanning
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2002
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0.84
|
22
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Idealization of pericellular fluid space geometry and dimension results in a profound underprediction of nano-microscale stresses imparted by fluid drag on osteocytes.
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J Biomech
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2008
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0.84
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23
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Mapping the mechanome of live stem cells using a novel method to measure local strain fields in situ at the fluid-cell interface.
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PLoS One
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2012
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0.84
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24
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Structure-function relationships in the stem cell's mechanical world A: seeding protocols as a means to control shape and fate of live stem cells.
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Mol Cell Biomech
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2011
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0.83
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25
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Mechanical modulation of nascent stem cell lineage commitment in tissue engineering scaffolds.
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Biomaterials
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2013
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0.83
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26
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Major and minor centroidal axes serve as objective, automatable reference points to test mechanobiological hypotheses using histomorphometry.
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J Biomech
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2011
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0.83
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27
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Periosteal thickness and cellularity in mid-diaphyseal cross-sections from human femora and tibiae of aged donors.
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J Anat
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2013
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0.80
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28
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The linea aspera: a virtual case study testing emergence of form and function.
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Anat Rec (Hoboken)
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2013
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0.78
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29
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Cell and tissue engineering--taking cues from nature's engineering paradigm for developing, growing, and repairing tissues.
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Tissue Eng Part A
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2008
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0.76
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30
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Medial meniscal displacement and strain in three dimensions under compressive loads: MR assessment.
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J Magn Reson Imaging
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2013
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0.76
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31
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In silico stochastic network models that emulate the molecular sieving characteristics of bone.
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Ann Biomed Eng
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2005
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0.75
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32
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Correction: Outside back cover (volume 15, issue 21).
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Lab Chip
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2015
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0.75
|