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Clinical Orthopaedics and Related Research|November 1, 1979
An in vitro study of electrical osteogenesis using direct and pulsating currentsR W Treharne, C T Brighton, E Korostoff, et al.
The Journal of Bone and Joint Surgery. American Volume|April 1, 1985
Treatment of recalcitrant non-union with a capacitively coupled electrical field. A preliminary reportC T Brighton, S R Pollack
The Journal of Trauma|February 1, 1984
Treatment of nonunion of the tibia with a capacitively coupled electrical fieldC T Brighton, S R Pollack
Journal of Biomedical Materials Research|September 1, 1979
Microelectrode studies of stress-generated potentials in four-point bending of boneW Starkebaum, S R Pollack, E Korostoff
Journal of Biomedical Materials Research|September 1, 1979
Microelectrode study of stress-generated potentials obtained from uniform and nonuniform compression of human boneW Iannacone, E Korostoff, S R Pollack
Journal of Biomedical Materials Research|September 1, 1976
An in vitro investigation of the anodic polarization and capacitance behavior of 316-L stainless steelE J Sutow, S R Pollack, E Korostoff
Journal of Biomedical Materials Research|November 11, 1975
Viscoelastic properties of human dentinE Korostoff, S R Pollack, M G Duncanson
IEEE Transactions on Bio-Medical Engineering|June 1, 1990
Theoretical determination of the current density distributions in human vertebral bodies during electrical stimulationE L Carter, S R Pollack, C T Brighton
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|January 1, 1983
In vivo growth plate stimulation in various capacitively coupled electrical fieldsC T Brighton, G B Pfeffer, S R Pollack
The Journal of Bone and Joint Surgery. American Volume|September 1, 1985
Treatment of sciatic denervation disuse osteoporosis in the rat tibia with capacitively coupled electrical stimulation. Dose response and duty cycleC T Brighton, G T Tadduni, S R Pollack
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