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Annals of the Royal College of Surgeons of England|June 20, 2000
Circumcision using bipolar diathermy scissors: a simple, safe and acceptable new techniqueI D Fraser, J TjoeThe American Journal of Surgical Pathology|May 1, 1994
Immunohistochemical profile of monoclonal antibody O13: antibody that recognizes glycoprotein p30/32MIC2 and is useful in diagnosing Ewing's sarcoma and peripheral neuroepitheliomaN Weidner, J TjoeThe Journal of Biological Chemistry|August 25, 1995
In vitro motility analysis of smooth muscle caldesmon control of actin-tropomyosin filament movementI D Fraser, S B MarstonThe Journal of Laryngology and Otology|March 1, 1975
Spontaneous rupture of the pharynxI D Fraser, G T WilliamsThe Journal of Biological Chemistry|April 7, 1995
In vitro motility analysis of actin-tropomyosin regulation by troponin and calcium. The thin filament is switched as a single cooperative unitI D Fraser, S B MarstonThe Biochemical Journal|November 14, 1997
Troponin I and troponin T interact with troponin C to produce different Ca2+-dependent effects on actin-tropomyosin filament motilityW Bing, I D Fraser, S B MarstonThe Biochemical Journal|December 1, 1995
Location of smooth-muscle myosin and tropomyosin binding sites in the C-terminal 288 residues of human caldesmonP A Huber, I D Fraser, S B MarstonThe Journal of Biological Chemistry|December 23, 1994
Smooth muscle caldesmon controls the strong binding interaction between actin-tropomyosin and myosinS B Marston, I D Fraser, P A HuberJournal of Clinical Pathology|December 1, 1983
Effect of new plastics and leucocyte contamination on in vitro storage of platelet concentratesM A Taylor, N P Tandy, I D FraserBiochemistry|May 6, 1997
The inhibitory complex of smooth muscle caldesmon with actin and tropomyosin involves three interacting segments of the C-terminal domain 4I D Fraser, O Copeland, W Bing, et al.Pageof 5