Mechanical loading stimulates differentiation of periodontal osteoblasts in a mouse osteoinduction model: effect on type I collagen and alkaline phosphatase genes

D Pavlin, SB Dove, R Zadro… - Calcified tissue …, 2000 - Springer
The effects of mechanical loading on the osteoblast phenotype remain unclear because of
many variables inherent to the current experimental models. This study reports on utilization …

Mechanical Loading Stimulates Differentiation of Periodontal Osteoblasts in a Mouse Osteoinduction Model: Effect on Type I Collagen and Alkaline Phosphatase …

D Pavlin, SB Dove, R Zadro… - Calcified Tissue …, 2000 - elibrary.ru
The effects of mechanical loading on the osteoblast phenotype remain unclear because of
many variables inherent to the current experimental models. This study reports on utilization …

[PDF][PDF] Mechanical Loading Stimulates Differentiation of Periodontal Osteoblasts in a Mouse Osteoinduction Model: Effect on Type I Collagen and Alkaline …

D Pavlin, SB Dove, R Zadro, J Gluhak-Heinrich - Calcif Tissue Int, 2000 - academia.edu
The effects of mechanical loading on the osteoblast phenotype remain unclear because of
many variables inherent to the current experimental models. This study reports on utilization …

Mechanical loading stimulates differentiation of periodontal osteoblasts in a mouse osteoinduction model: effect on type I collagen and alkaline phosphatase genes.

D Pavlin, SB Dove, R Zadro… - Calcified Tissue …, 2000 - search.ebscohost.com
The effects of mechanical loading on the osteoblast phenotype remain unclear because of
many variables inherent to the current experimental models. This study reports on utilization …

Mechanical Loading Stimulates Differentiation of Periodontal Osteoblasts in a Mouse Osteoinduction Model: Effect on Type I Collagen and Alkaline Phosphatase …

D Pavlin, SB Dove, R Zadro… - Calcified Tissue …, 2000 - infona.pl
The effects of mechanical loading on the osteoblast phenotype remain unclear because of
many variables inherent to the current experimental models. This study reports on utilization …

Mechanical loading stimulates differentiation of periodontal osteoblasts in a mouse osteoinduction model: effect on type I collagen and alkaline phosphatase genes.

D Pavlin, SB Dove, R Zadro… - Calcified Tissue …, 2000 - europepmc.org
The effects of mechanical loading on the osteoblast phenotype remain unclear because of
many variables inherent to the current experimental models. This study reports on utilization …

Mechanical loading stimulates differentiation of periodontal osteoblasts in a mouse osteoinduction model: effect on type I collagen and alkaline phosphatase genes

D Pavlin, SB Dove, R Zadro… - Calcified tissue …, 2000 - pubmed.ncbi.nlm.nih.gov
The effects of mechanical loading on the osteoblast phenotype remain unclear because of
many variables inherent to the current experimental models. This study reports on utilization …

Mechanical Loading Stimulates Differentiation of Periodontal Osteoblasts in a Mouse Osteoinduction Model: Effect on Type I Collagen and Alkaline Phosphatase …

D Pavlin, SB Dove, R Zadro… - Calcified Tissue …, 2000 - search.proquest.com
The effects of mechanical loading on the osteoblast phenotype remain unclear because of
many variables inherent to the current experimental models. This study reports on utilization …

[引用][C] Mechanical Loading Stimulates Differentiation of Periodontal Osteoblasts in a Mouse Osteoinduction Model: Effect on Type I Collagen and Alkaline …

D Pavlin, SB Dove, R Zadro… - Calcified Tissue …, 2000 - cir.nii.ac.jp
Mechanical Loading Stimulates Differentiation of Periodontal Osteoblasts in a Mouse
Osteoinduction Model: Effect on Type I Collagen and Alkaline Phosphatase Genes | CiNii …

Mechanical loading stimulates differentiation of periodontal osteoblasts in a mouse osteoinduction model: effect on type I collagen and alkaline phosphatase genes.

D Pavlin, SB Dove, R Zadro… - Calcified Tissue …, 2000 - search.ebscohost.com
The effects of mechanical loading on the osteoblast phenotype remain unclear because of
many variables inherent to the current experimental models. This study reports on utilization …