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Adele L Boskey

Showing results (81-90 of 119) with videos related to

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Biomed Research International|June 27, 2013
Mineral and matrix changes in Brtl/+ teeth provide insights into mineralization mechanismsAdele L Boskey, Kostas Verdelis, Lyudmila Spevak, et al.
Bone|February 2, 2010
Pro416Arg cherubism mutation in Sh3bp2 knock-in mice affects osteoblasts and alters bone mineral and matrix propertiesChiachien J Wang, I-Ping Chen, Boguslawa Koczon-Jaremko, et al.
The Journal of Biological Chemistry|April 19, 2007
A novel regulatory role for stromal-derived factor-1 signaling in bone morphogenic protein-2 osteogenic differentiation of mesenchymal C2C12 cellsWei Zhu, Oheneba Boachie-Adjei, Bernard A Rawlins, et al.
European Journal of Oral Sciences|August 19, 2007
Changes in matrix phosphorylation during bovine dentin developmentKostas Verdelis, Lyudmilla Lukashova, Mitsuo Yamauchi, et al.
BMC Musculoskeletal Disorders|February 25, 2003
Chemical and biomechanical characterization of hyperhomocysteinemic bone disease in an animal modelPriscilla G Massé, Adele L Boskey, Israel Ziv, et al.
Plos One|July 30, 2011
Imaging of alkaline phosphatase activity in bone tissueTerence P Gade, Matthew W Motley, Bradley J Beattie, et al.
Calcified Tissue International|May 8, 2010
Changes in bone microarchitecture and biomechanical properties in the th3 thalassemia mouse are associated with decreased bone turnover and occur during the period of bone accrualMaria G Vogiatzi, Jaime Tsay, Kostas Verdelis, et al.
Pediatric Research|November 1, 2002
Alendronate treatment for infants with osteogenesis imperfecta: demonstration of efficacy in a mouse modelEdith A McCarthy, Cathleen L Raggio, Michael D Hossack, et al.
Journal of Biomechanics|November 16, 2010
Microstructure and nanomechanical properties in osteons relate to tissue and animal ageJayme Burket, Samuel Gourion-Arsiquaud, Lorena M Havill, et al.
The Journal of Biological Chemistry|November 4, 2005
Fgfr4 is required for effective muscle regeneration in vivo. Delineation of a MyoD-Tead2-Fgfr4 transcriptional pathwayPo Zhao, Giuseppina Caretti, Stephanie Mitchell, et al.
Pageof 12

Showing results (81-90 of 119) with videos related to

Sort By:
Pageof 12
Biomed Research International|June 27, 2013
Mineral and matrix changes in Brtl/+ teeth provide insights into mineralization mechanismsAdele L Boskey, Kostas Verdelis, Lyudmila Spevak, et al.
Bone|February 2, 2010
Pro416Arg cherubism mutation in Sh3bp2 knock-in mice affects osteoblasts and alters bone mineral and matrix propertiesChiachien J Wang, I-Ping Chen, Boguslawa Koczon-Jaremko, et al.
The Journal of Biological Chemistry|April 19, 2007
A novel regulatory role for stromal-derived factor-1 signaling in bone morphogenic protein-2 osteogenic differentiation of mesenchymal C2C12 cellsWei Zhu, Oheneba Boachie-Adjei, Bernard A Rawlins, et al.
European Journal of Oral Sciences|August 19, 2007
Changes in matrix phosphorylation during bovine dentin developmentKostas Verdelis, Lyudmilla Lukashova, Mitsuo Yamauchi, et al.
BMC Musculoskeletal Disorders|February 25, 2003
Chemical and biomechanical characterization of hyperhomocysteinemic bone disease in an animal modelPriscilla G Massé, Adele L Boskey, Israel Ziv, et al.
Plos One|July 30, 2011
Imaging of alkaline phosphatase activity in bone tissueTerence P Gade, Matthew W Motley, Bradley J Beattie, et al.
Calcified Tissue International|May 8, 2010
Changes in bone microarchitecture and biomechanical properties in the th3 thalassemia mouse are associated with decreased bone turnover and occur during the period of bone accrualMaria G Vogiatzi, Jaime Tsay, Kostas Verdelis, et al.
Pediatric Research|November 1, 2002
Alendronate treatment for infants with osteogenesis imperfecta: demonstration of efficacy in a mouse modelEdith A McCarthy, Cathleen L Raggio, Michael D Hossack, et al.
Journal of Biomechanics|November 16, 2010
Microstructure and nanomechanical properties in osteons relate to tissue and animal ageJayme Burket, Samuel Gourion-Arsiquaud, Lorena M Havill, et al.
The Journal of Biological Chemistry|November 4, 2005
Fgfr4 is required for effective muscle regeneration in vivo. Delineation of a MyoD-Tead2-Fgfr4 transcriptional pathwayPo Zhao, Giuseppina Caretti, Stephanie Mitchell, et al.
Pageof 12