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Experimental Physiology|July 1, 1995
Muscle cell function during prolonged activity: cellular mechanisms of fatigueD G Allen, J Lännergren, H WesterbladActa Physiologica Scandinavica|December 28, 1999
The use of caged adenine nucleotides and caged phosphate in intact skeletal muscle fibres of the mouseD G Allen, J Lännergren, H WesterbladThe Journal of Physiology|February 1, 1997
The role of ATP in the regulation of intracellular Ca2+ release in single fibres of mouse skeletal muscleD G Allen, J Lännergren, H WesterbladAdvances in Experimental Medicine and Biology|January 1, 1995
The role of intracellular acidosis in muscle fatigueD G Allen, H Westerblad, J LännergrenThe Journal of General Physiology|March 1, 1997
Slowed relaxation in fatigued skeletal muscle fibers of Xenopus and Mouse. Contribution of [Ca2+]i and cross-bridgesH Westerblad, J Lännergren, D G AllenThe American Journal of Physiology|August 1, 1991
Cellular mechanisms of fatigue in skeletal muscleH Westerblad, J A Lee, J Lännergren, et al.Sports Medicine (Auckland, N.Z.)|February 1, 1992
Role of excitation-contraction coupling in muscle fatigueD G Allen, H Westerblad, J A Lee, et al.European Journal of Applied Physiology|December 5, 2000
Functional significance of Ca2+ in long-lasting fatigue of skeletal muscleH Westerblad, J D Bruton, D G Allen, et al.The Journal of Physiology|March 1, 1991
Slowing of relaxation during fatigue in single mouse muscle fibresH Westerblad, J LännergrenJournal of Muscle Research and Cell Motility|June 1, 1994
Changes of the force-velocity relation, isometric tension and relaxation rate during fatigue in intact, single fibres of Xenopus skeletal muscleH Westerblad, J LännergrenPageof 29