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Clinical Orthopaedics and Related Research|July 1, 1988
Hydroxyapatite-coated titanium for orthopedic implant applicationsS D Cook, K A Thomas, J F Kay, et al.Foot & Ankle|June 1, 1991
Biomechanical evaluation of the anterior drawer test: the contribution of the lateral ankle ligamentsC Bulucu, K A Thomas, T L Halvorson, et al.Clinical Orthopaedics and Related Research|May 1, 1988
Hydroxyapatite-coated porous titanium for use as an orthopedic biologic attachment systemS D Cook, K A Thomas, J F Kay, et al.Journal of Biomedical Materials Research|December 1, 1987
The effect of surface macrotexture and hydroxylapatite coating on the mechanical strengths and histologic profiles of titanium implant materialsK A Thomas, J F Kay, S D Cook, et al.Seminars in Arthroplasty|September 6, 1991
Enhanced bone ingrowth and fixation strength with hydroxyapatite-coated porous implantsS D Cook, K A Thomas, J E Dalton, et al.Clinical Orthopaedics and Related Research|October 1, 1992
Tissue growth into porous-coated acetabular components in 42 patients. Effects of adjunct fixationS D Cook, K A Thomas, R L Barrack, et al.The Journal of Arthroplasty|January 1, 1988
Quantitative analysis of tissue growth into human porous total hip componentsS D Cook, R L Barrack, K A Thomas, et al.The Journal of Arthroplasty|January 1, 1989
Quantitative histologic analysis of tissue growth into porous total knee componentsS D Cook, R L Barrack, K A Thomas, et al.The Journal of Arthroplasty|January 11, 1991
Tissue growth into porous primary and revision femoral stemsS D Cook, R L Barrack, K A Thomas, et al.The Journal of Bone and Joint Surgery. American Volume|January 1, 1995
The effect of operative fit and hydroxyapatite coating on the mechanical and biological response to porous implantsJ E Dalton, S D Cook, K A Thomas, et al.Pageof 37