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The Biochemical Journal|February 15, 1976
Turnover as a control of ribonucleic acid accumulation in bacteria undergoing stepdownJ E MidgleyNuklearmedizin. Nuclear Medicine|October 1, 1982
Methodological background of the Amersham Amerlex free thyroxine RIAJ E MidgleyClinical Chemistry|July 27, 2001
Direct and indirect free thyroxine assay methods: theory and practiceJ E MidgleyThe Biochemical Journal|October 1, 1973
The effect of trimethoprim on macromolecular synthesis in Escherichia coliR J Smith, J E MidgleyThe Biochemical Journal|February 1, 1974
The control of ribonucleic acid synthesis in bacteria. Fluctuations in messenger ribonucleic acid synthesis in cultures recovering from amino acid starvationJ E Midgley, R J SmithThe Biochemical Journal|December 1, 1974
Early changes in the messenger ribonucleic acid concentration of amino acid-starved cells of Escherichia coli are not dependent on the state of the rel geneJ E Midgley, R J SmithNuklearmedizin. Nuclear Medicine|April 1, 1985
Effects of age and health on the euthyroid reference ranges for serum free thyroxine and free triiodothyronineJ E Midgley, K R GrunerThe Biochemical Journal|April 1, 1971
Ribosomal ribonucleic acid synthesis in Bacillus subtilisR J Avery, J E MidgleyThe Biochemical Journal|April 1, 1971
The control of ribonucleic acid synthesis in bacteria. The synthesis and stbility of ribonucleic acid in rifampicin-inhibited cultures of Escherichia coliW J Gray, J E MidgleyThe Biochemical Journal|November 1, 1970
The control of ribonucleic acid synthesis in bacteria. Steady-state content of messenger ribonucleic acid in Escherichia coli M.R.E. 600W J Gray, J E MidgleyPageof 3