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Elizabeth C Wahl

Showing results (11-20 of 24) with videos related to

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Toxicology and Applied Pharmacology|March 30, 2007
Chronic ethanol exposure inhibits distraction osteogenesis in a mouse model: role of the TNF signaling axisElizabeth C Wahl, James Aronson, Lichu Liu, et al.
Bone|December 4, 2016
Corrigendum to "SGLT2 inhibitor therapy improves blood glucose but does not prevent diabetic bone disease in diabetic DBA/2J male mice" [Bone 82 (2016) 101-107]Kathryn M Thrailkill, R C Bunn, Jeffry S Nyman, et al.
Bone|July 28, 2015
SGLT2 inhibitor therapy improves blood glucose but does not prevent diabetic bone disease in diabetic DBA/2J male miceKathryn M Thrailkill, R Clay Bunn, Jeffry S Nyman, et al.
Endocrinology|December 29, 2007
Runt-related transcription factor 2 (RUNX2) and RUNX2-related osteogenic genes are down-regulated throughout osteogenesis in type 1 diabetes mellitusJohn L Fowlkes, R Clay Bunn, Lichu Liu, et al.
Alcoholism, Clinical and Experimental Research|September 1, 2005
Ethanol-induced inhibition of bone formation in a rat model of distraction osteogenesis: a role for the tumor necrosis factor signaling axisElizabeth C Wahl, Daniel S Perrien, James Aronson, et al.
Alcohol (Fayetteville, N.Y.)|November 28, 2006
A novel mouse model for the study of the inhibitory effects of chronic ethanol exposure on direct bone formationElizabeth C Wahl, Lichu Liu, Daniel S Perrien, et al.
Bone|July 27, 2013
Osteo-promoting effects of insulin-like growth factor I (IGF-I) in a mouse model of type 1 diabetesJohn L Fowlkes, Jeffry S Nyman, R Clay Bunn, et al.
Bone|September 24, 2009
Direct bone formation during distraction osteogenesis does not require TNFalpha receptors and elevated serum TNFalpha fails to inhibit bone formation in TNFR1 deficient miceElizabeth C Wahl, James Aronson, Lichu Liu, et al.
Bone|December 28, 2010
Increasing duration of type 1 diabetes perturbs the strength-structure relationship and increases brittleness of boneJeffry S Nyman, Jesse L Even, Chan-Hee Jo, et al.
Acta Orthopaedica|April 25, 2007
A novel rat model for the study of deficits in bone formation in type-2 diabetesZhendong Liu, James Aronson, Elizabeth C Wahl, et al.
Pageof 3

Showing results (11-20 of 24) with videos related to

Sort By:
Pageof 3
Toxicology and Applied Pharmacology|March 30, 2007
Chronic ethanol exposure inhibits distraction osteogenesis in a mouse model: role of the TNF signaling axisElizabeth C Wahl, James Aronson, Lichu Liu, et al.
Bone|December 4, 2016
Corrigendum to "SGLT2 inhibitor therapy improves blood glucose but does not prevent diabetic bone disease in diabetic DBA/2J male mice" [Bone 82 (2016) 101-107]Kathryn M Thrailkill, R C Bunn, Jeffry S Nyman, et al.
Bone|July 28, 2015
SGLT2 inhibitor therapy improves blood glucose but does not prevent diabetic bone disease in diabetic DBA/2J male miceKathryn M Thrailkill, R Clay Bunn, Jeffry S Nyman, et al.
Endocrinology|December 29, 2007
Runt-related transcription factor 2 (RUNX2) and RUNX2-related osteogenic genes are down-regulated throughout osteogenesis in type 1 diabetes mellitusJohn L Fowlkes, R Clay Bunn, Lichu Liu, et al.
Alcoholism, Clinical and Experimental Research|September 1, 2005
Ethanol-induced inhibition of bone formation in a rat model of distraction osteogenesis: a role for the tumor necrosis factor signaling axisElizabeth C Wahl, Daniel S Perrien, James Aronson, et al.
Alcohol (Fayetteville, N.Y.)|November 28, 2006
A novel mouse model for the study of the inhibitory effects of chronic ethanol exposure on direct bone formationElizabeth C Wahl, Lichu Liu, Daniel S Perrien, et al.
Bone|July 27, 2013
Osteo-promoting effects of insulin-like growth factor I (IGF-I) in a mouse model of type 1 diabetesJohn L Fowlkes, Jeffry S Nyman, R Clay Bunn, et al.
Bone|September 24, 2009
Direct bone formation during distraction osteogenesis does not require TNFalpha receptors and elevated serum TNFalpha fails to inhibit bone formation in TNFR1 deficient miceElizabeth C Wahl, James Aronson, Lichu Liu, et al.
Bone|December 28, 2010
Increasing duration of type 1 diabetes perturbs the strength-structure relationship and increases brittleness of boneJeffry S Nyman, Jesse L Even, Chan-Hee Jo, et al.
Acta Orthopaedica|April 25, 2007
A novel rat model for the study of deficits in bone formation in type-2 diabetesZhendong Liu, James Aronson, Elizabeth C Wahl, et al.
Pageof 3