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Clinical Physiology (Oxford, England)|May 1, 1991
A morphometrical comparison of right and left whole human vastus lateralis muscle: how to reduce sampling errors in biopsy techniquesJ Lexell, C C TaylorActa Neuropathologica|January 1, 1991
The occurrence of fibre-type grouping in healthy human muscle: a quantitative study of cross-sections of whole vastus lateralis from men between 15 and 83 yearsJ Lexell, D Y DownhamJournal of Anatomy|February 1, 1991
Variability in muscle fibre areas in whole human quadriceps muscle: effects of increasing ageJ Lexell, C C TaylorClinical Physiology (Oxford, England)|August 1, 1989
Variability in muscle fibre areas in whole human quadriceps muscle: how to reduce sampling errors in biopsy techniquesJ Lexell, C C TaylorJournal of the Neurological Sciences|September 1, 1984
Distribution of different fibre types in human skeletal muscles. A statistical and computational study of the fibre type arrangement in m. vastus lateralis of young, healthy malesJ Lexell, D Downham, M SjöströmJournal of the Neurological Sciences|February 1, 1986
Distribution of different fibre types in human skeletal muscles. Fibre type arrangement in m. vastus lateralis from three groups of healthy men between 15 and 83 yearsJ Lexell, D Downham, M SjöströmJournal of the Neurological Sciences|October 1, 1983
Distribution of different fibre types in human skeletal muscles. A statistical and computational model for the study of fibre type grouping and early diagnosis of skeletal muscle fibre denervation and reinnervationJ Lexell, D Downham, M SjöströmMuscle & Nerve|July 27, 1999
Superimposed single impulse and pulse train electrical stimulation: A quantitative assessment during submaximal isometric knee extension in young, healthy menM Miller, D Downham, J LexellLakartidningen|November 21, 2000
[Sports and head injuries. Guidelines for the management and subsequent return to training and competition]J Lexell, B Romner, Y TegnerEuropean Journal of Applied Physiology and Occupational Physiology|January 1, 1995
Submaximal-exercise-induced impairment of human muscle to develop and maintain force at low frequencies of electrical stimulationA Ratkevicius, A Skurvydas, J LexellPageof 6