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Nephron|January 1, 1996
Effect of parathyroid hormone on rat skeletal muscle in vivoC H Thompson, G J Kemp, G K RaddaEuropean Journal of Endocrinology|August 1, 1995
Triiodothyronine-induced changes in proton efflux from rat skeletal muscle in vivoC H Thompson, G J Kemp, G K RaddaBiochimica Et Biophysica Acta|October 6, 1992
Skeletal muscle Pi transport and cellular [Pi] studied in L6 myoblasts and rabbit muscle-membrane vesiclesG J Kemp, K E Polgreen, G K RaddaJournal of the Neurological Sciences|December 20, 1994
Bioenergetics of skeletal muscle in mitochondrial myopathyD J Taylor, G J Kemp, G K RaddaBiochimica Et Biophysica Acta|April 2, 1987
1H- and 31P-NMR studies on smooth muscle of bullfrog stomachK Yoshizaki, G K Radda, T Inubushi, et al.The American Journal of Physiology|December 1, 1987
Influence of intracellular acidosis on contractile function in the working rat heartF M Jeffrey, C R Malloy, G K RaddaThe Biochemical Journal|May 15, 1990
Spatially resolved changes in diabetic rat skeletal muscle metabolism in vivo studied by 31P-n.m.r. spectroscopyR A Challiss, M J Blackledge, G K RaddaBiochimica Et Biophysica Acta|January 28, 1975
NMR studies on phospholipid bilayers. Some factors affecting lipid distributionJ A Berden, R W Barker, G K RaddaBiochimica Et Biophysica Acta|March 11, 1977
Tightly bound nucleotides of the energy-transducing ATPase, and their role in oxidative phosphorylation. II. The beef heart mitochondrial systemD A Harris, G K Radda, E C SlaterThe Journal of Biological Chemistry|July 25, 1986
Electron transfer across the chromaffin granule membrane. Use of EPR to demonstrate reduction of intravesicular ascorbate radical by the extravesicular mitochondrial NADH:ascorbate radical oxidoreductaseL M Wakefield, A E Cass, G K RaddaPageof 35