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Biochemical and Biophysical Research Communications|February 21, 2006
Up-regulation of matrix in bovine articular cartilage explants by electric fieldsCarl T Brighton, Wei Wang, Charles C Clark
The Journal of Bone and Joint Surgery. American Volume|May 3, 2006
Up-regulation of bone morphogenetic proteins in cultured murine bone cells with use of specific electric fieldsZhenyu Wang, Charles C Clark, Carl T Brighton
The Journal of Bone and Joint Surgery. American Volume|December 1, 1982
Quantitative zonal analysis of cytoplasmic structures of growth-plate chondrocytes in vivo and in vitroC T Brighton, Y Sugioka, R M Hunt
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|March 20, 2014
Up-regulation of expression of selected genes in human bone cells with specific capacitively coupled electric fieldsCharles C Clark, Wei Wang, Carl T Brighton
Arthritis and Rheumatism|November 1, 1984
Zonal analysis of cytoplasmic components of articular cartilage chondrocytesC T Brighton, T Kitajima, R M Hunt
The Journal of Bone and Joint Surgery. American Volume|April 3, 2008
The effect of electrical fields on gene and protein expression in human osteoarthritic cartilage explantsCarl T Brighton, Wei Wang, Charles C Clark
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|May 1, 1994
Identification of integrin receptors on cultured human bone cellsT Saito, S M Albelda, C T Brighton
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|January 1, 1984
In vitro growth of bovine articular cartilage chondrocytes in various capacitively coupled electrical fieldsC T Brighton, A S Unger, J L Stambough
Clinical Orthopaedics and Related Research|May 1, 1989
Subcellular regulation of the ionized calcium pool in isolated growth-plate chondrocytesJ P Iannotti, C T Brighton, J E Stambough
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|July 1, 1995
Microvessel endothelial cells and pericytes increase proliferation and repress osteoblast phenotypic markers in rat calvarial bone cell culturesA R Jones, C C Clark, C T Brighton
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