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The Journal of Physiology|November 3, 2001
Temperature dependence of active tension in mammalian (rabbit psoas) muscle fibres: effect of inorganic phosphateM E Coupland, E Puchert, K W RanatungaThe Biochemical Journal|May 27, 2003
Evaluation of the symmetric model for myosin-linked regulation: effect of site-directed mutations in the regulatory light chain on scallop myosinMelanie Colegrave, Hitesh Patel, Gerald Offer, et al.The Journal of Physiology|June 19, 2003
A mechanical stretch induces contractile activation in unstimulated developing rat skeletal muscle in vitroGabriel Mutungi, K A P Edman, K W RanatungaThe Journal of Physiology|April 22, 2006
Crossbridge and non-crossbridge contributions to tension in lengthening rat muscle: force-induced reversal of the power strokeG J Pinniger, K W Ranatunga, G W OfferThe Journal of Physiology|January 15, 1994
Contractile activation and force generation in skinned rabbit muscle fibres: effects of hydrostatic pressureN S Fortune, M A Geeves, K W RanatungaJournal of Muscle Research and Cell Motility|December 1, 1987
Transformation of contraction speed in muscle following cross-reinnervation; dependence on muscle sizeA J Buller, C J Kean, K W RanatungaJournal of Muscle Research and Cell Motility|July 8, 2005
Tension responses to rapid (laser) temperature-jumps during twitch contractions in intact rat muscle fibresM E Coupland, G J Pinniger, K W RanatungaBiophysical Journal|December 1, 1990
Hydrostatic compression in glycerinated rabbit muscle fibersK W Ranatunga, N S Fortune, M A GeevesThe Journal of Physiology|November 1, 1987
Transient tension changes initiated by laser temperature jumps in rabbit psoas muscle fibresY E Goldman, J A McCray, K W RanatungaThe Journal of Physiology|June 25, 2005
Endothermic force generation, temperature-jump experiments and effects of increased [MgADP] in rabbit psoas muscle fibresM E Coupland, G J Pinniger, K W RanatungaPageof 8