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Exercise and Sport Sciences Reviews
|
April 6, 2004
Mechanical loading influences bone mass through estrogen receptor alpha
Karla C L Lee, Lance E Lanyon
Bone
|
September 8, 2009
Functional adaptation to mechanical loading in both cortical and cancellous bone is controlled locally and is confined to the loaded bones
Toshihiro Sugiyama, Joanna S Price, Lance E Lanyon
Frontiers in Endocrinology
|
October 18, 2014
The Contribution of Experimental in vivo Models to Understanding the Mechanisms of Adaptation to Mechanical Loading in Bone
Lee B Meakin, Joanna S Price, Lance E Lanyon
Bone
|
October 16, 2016
Sclerostin's role in bone's adaptive response to mechanical loading
Gabriel L Galea, Lance E Lanyon, Joanna S Price
Bonekey Reports
|
January 15, 2014
Estrogen receptors' roles in the control of mechanically adaptive bone (re)modeling
Gabriel L Galea, Joanna S Price, Lance E Lanyon
Endocrinology
|
October 15, 2010
Mechanical loading-related bone gain is enhanced by tamoxifen but unaffected by fulvestrant in female mice
Toshihiro Sugiyama, Gabriel L Galea, Lance E Lanyon, et al.
Bone
|
March 23, 2011
Analysis of multiple bone responses to graded strains above functional levels, and to disuse, in mice in vivo show that the human Lrp5 G171V High Bone Mass mutation increases the osteogenic response to loading but that lack of Lrp5 activity reduces it
Leanne K Saxon, Brendan F Jackson, Toshihiro Sugiyama, et al.
Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research
|
March 20, 2014
Age-related impairment of bones' adaptive response to loading in mice is associated with sex-related deficiencies in osteoblasts but no change in osteocytes
Lee B Meakin, Gabriel L Galea, Toshihiro Sugiyama, et al.
Bone
|
July 6, 2015
Exercise does not enhance aged bone's impaired response to artificial loading in C57Bl/6 mice
Lee B Meakin, Chinedu Udeh, Gabriel L Galea, et al.
Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research
|
November 19, 2005
Sympathetic nervous system does not mediate the load-induced cortical new bone formation
Roberto L de Souza, Andrew A Pitsillides, Lance E Lanyon, et al.
Page
of 5
Search research articles
Search
Showing results (1-10 of 41) with videos related to
Sort By:
Page
of 5
Exercise and Sport Sciences Reviews
|
April 6, 2004
Mechanical loading influences bone mass through estrogen receptor alpha
Karla C L Lee, Lance E Lanyon
Bone
|
September 8, 2009
Functional adaptation to mechanical loading in both cortical and cancellous bone is controlled locally and is confined to the loaded bones
Toshihiro Sugiyama, Joanna S Price, Lance E Lanyon
Frontiers in Endocrinology
|
October 18, 2014
The Contribution of Experimental in vivo Models to Understanding the Mechanisms of Adaptation to Mechanical Loading in Bone
Lee B Meakin, Joanna S Price, Lance E Lanyon
Bone
|
October 16, 2016
Sclerostin's role in bone's adaptive response to mechanical loading
Gabriel L Galea, Lance E Lanyon, Joanna S Price
Bonekey Reports
|
January 15, 2014
Estrogen receptors' roles in the control of mechanically adaptive bone (re)modeling
Gabriel L Galea, Joanna S Price, Lance E Lanyon
Endocrinology
|
October 15, 2010
Mechanical loading-related bone gain is enhanced by tamoxifen but unaffected by fulvestrant in female mice
Toshihiro Sugiyama, Gabriel L Galea, Lance E Lanyon, et al.
Bone
|
March 23, 2011
Analysis of multiple bone responses to graded strains above functional levels, and to disuse, in mice in vivo show that the human Lrp5 G171V High Bone Mass mutation increases the osteogenic response to loading but that lack of Lrp5 activity reduces it
Leanne K Saxon, Brendan F Jackson, Toshihiro Sugiyama, et al.
Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research
|
March 20, 2014
Age-related impairment of bones' adaptive response to loading in mice is associated with sex-related deficiencies in osteoblasts but no change in osteocytes
Lee B Meakin, Gabriel L Galea, Toshihiro Sugiyama, et al.
Bone
|
July 6, 2015
Exercise does not enhance aged bone's impaired response to artificial loading in C57Bl/6 mice
Lee B Meakin, Chinedu Udeh, Gabriel L Galea, et al.
Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research
|
November 19, 2005
Sympathetic nervous system does not mediate the load-induced cortical new bone formation
Roberto L de Souza, Andrew A Pitsillides, Lance E Lanyon, et al.
Page
of 5