238
D. Lloyd
9. C. Bernard, in Introduction à l’Etude de la Medicine Experimentale. H.C. Green, trans. (1927).
(McMillan, New York, 1878)
10. V.Y. Brodsky, Protein synthesis rhythm. J. Theor. Biol. 55, 167–200 (1975)
11. V.Y. Brodsky, Rhythms of protein synthesis and other circahoralian oscillations: the possible
involvement of fractals, in Ultradian Rhythms in Life Processes: An Inquiry into Fundamental
Principles of Chronobiology and Psychology, ed. by D. Lloyd, E.L. Rossi (Springer, London),
pp. 24–40, (Springer Science+Business Media BV, London), pp. 85–104
12. V.Y. Brodsky, Circahoralian (ultradian) rhythms. Biochemistry (Mosc.) 79(6), 483–495 (2014)
13. A.J. Burnetti, M. Aydin, N.E. Buchler, Cell cycle Start is coupled to entry into the yeast
metabolic cycle across diverse strains and growth rates. Mol. Biol. Cell 27, 64–74 (2016)
14. W.B. Cannon, The Wisdom of the Body (Norton, New York, 1932), p. 340
15. B. Chance, R. Williams, Respiratory enzymes in oxidative phosphorylation. 1. Kinetics of
oxygen utilization. J. Biol. Chem. 217(1), 383–394 (1955)
16. B. Chance, G. Williamson, I.Y. Lee, L. Mela, D. DeVault, A.K. Ghosh, E.K. Pye, Synchronization phenomena in oscillations in yeast cells and isolated mitochondria, in Biological and
Biochemical Oscillators. A Colloquium of the Johnson Foundation, ed. by B. Chance, E.K.
Pye, A.K. Ghosh, A.B. Hess (Academic Press, New York & London, 1973), pp. 285–302
17. B. Chance, V. Legallais, J. Sorge, N. Graham, A versatile time-sharing multichannel
spectrophotometer, reflectometer, and fluorometer. Anal. Biochem. 66(2), 498–514 (1975)
18. S.L. Chin, I.M. Marcus, R.R. Klevecz, C.M. Li, Dynamics of oscillatory phenotypes in Saccharomyces cerevisiae reveal a network of genome-wide transcriptional oscillators. FEBS J. 279,
1119–1130 (2012)
19. P. Cohen, Targeting protein kinases for the development of anti-inflamatory drugs. Curr. Opin.
Cell Biol. 21(2), 317–324 (2009)
20. S. Cortassa, M.A. Aon, E. Marbán, R.L. Winslow, O’Rourke, An integrated model of cardiac
mitochondrial metabolism. Biophys. J. 84, 2734–2755 (2003)
21. S. Cortassa, M.A. Aon, S.J. Sollot, Control and regulation of substrate selection in cytoplasmic
and mitochondrial catabolic networks. A systems biology analysis. Front Physiol. 10, 201
(2019)
22. S. Cortassa, M.A. Aon, A.A. Iglesias, J.C. Aon, D. Lloyd, in An Introduction to Metabolic
and Cellular Engineering, 2nd. edn. (World Scientific, Singapore, 2012), pp. xiv + 428
23. H.M. Davey, C.L. Davey, A.M. Woodward, A.N. Edmonds, A.W. Lee, D.B. Kell, Oscillatory,
stochastic and chaotic growth rate fluctuations in permittistatically controlled yeast cultures.
Biosystems 39, 43–61 (1996)
24. H. Degn, Oscillating chemical reactions in homogeneous phase. J. Chem. Edu. 49, 302–307
(1972)
25. H. Degn, D.E. Harrison, Theory of oscillations of respitation rate in continuous cultures of
Klebsiella aerogenes. J. Theor. Biol. 22(2), 238–248 (1969)
26. H. Degn, D.E. Harrison, Undamped short period oscillations of flavin in respiring non-growing
bacteria. Biochem. Biophys. Res. Commun. 45(6), 1554–1559 (1971)
27. L.N.M. Duysens, J. Amesz, Fluorescence spectrophotometry of reduced phosphopyridine
nucleotide in intact cells in the near ultraviolet and visible region. Biochim. Biophys. Acta
24(1), 19–26 (1957)
28. J.P. Eckmann, D. Ruelle, Ergodic theory of chaos and strange attractors. Rev. Mod. Phys. 57,
617–656 (1985)
29. S.W. Edwards, D. Lloyd, Mitochondrial adenosine triphosphate of the fission yeast Schizosaccharomyces pombe 972 h-. Changes in activity and oligomycin sensitivity during the cell cycle
of catabolite–repressed and -derepressed cells. Biochem. J. 162, 39–46 (1977)
30. S.W. Edwards, D. Lloyd, Oscillations of respiration and adenine nucleotides in synchronous
cultures of Acanthamoeba castellanii: mitochondrial respiratory control in vivo. J. Gen.
Microbiol. 108, 197–204 (1978)
31. S.W. Edwards, D. Lloyd, Oscillations in protein and RNA during synchronous growth of
Acanthamoeba castellanii: evidence for periodic turnover of macromolecules during the cell
cycle. FEBS Lett. 109, 21–26 (1980)
D. Lloyd
9. C. Bernard, in Introduction à l’Etude de la Medicine Experimentale. H.C. Green, trans. (1927).
(McMillan, New York, 1878)
10. V.Y. Brodsky, Protein synthesis rhythm. J. Theor. Biol. 55, 167–200 (1975)
11. V.Y. Brodsky, Rhythms of protein synthesis and other circahoralian oscillations: the possible
involvement of fractals, in Ultradian Rhythms in Life Processes: An Inquiry into Fundamental
Principles of Chronobiology and Psychology, ed. by D. Lloyd, E.L. Rossi (Springer, London),
pp. 24–40, (Springer Science+Business Media BV, London), pp. 85–104
12. V.Y. Brodsky, Circahoralian (ultradian) rhythms. Biochemistry (Mosc.) 79(6), 483–495 (2014)
13. A.J. Burnetti, M. Aydin, N.E. Buchler, Cell cycle Start is coupled to entry into the yeast
metabolic cycle across diverse strains and growth rates. Mol. Biol. Cell 27, 64–74 (2016)
14. W.B. Cannon, The Wisdom of the Body (Norton, New York, 1932), p. 340
15. B. Chance, R. Williams, Respiratory enzymes in oxidative phosphorylation. 1. Kinetics of
oxygen utilization. J. Biol. Chem. 217(1), 383–394 (1955)
16. B. Chance, G. Williamson, I.Y. Lee, L. Mela, D. DeVault, A.K. Ghosh, E.K. Pye, Synchronization phenomena in oscillations in yeast cells and isolated mitochondria, in Biological and
Biochemical Oscillators. A Colloquium of the Johnson Foundation, ed. by B. Chance, E.K.
Pye, A.K. Ghosh, A.B. Hess (Academic Press, New York & London, 1973), pp. 285–302
17. B. Chance, V. Legallais, J. Sorge, N. Graham, A versatile time-sharing multichannel
spectrophotometer, reflectometer, and fluorometer. Anal. Biochem. 66(2), 498–514 (1975)
18. S.L. Chin, I.M. Marcus, R.R. Klevecz, C.M. Li, Dynamics of oscillatory phenotypes in Saccharomyces cerevisiae reveal a network of genome-wide transcriptional oscillators. FEBS J. 279,
1119–1130 (2012)
19. P. Cohen, Targeting protein kinases for the development of anti-inflamatory drugs. Curr. Opin.
Cell Biol. 21(2), 317–324 (2009)
20. S. Cortassa, M.A. Aon, E. Marbán, R.L. Winslow, O’Rourke, An integrated model of cardiac
mitochondrial metabolism. Biophys. J. 84, 2734–2755 (2003)
21. S. Cortassa, M.A. Aon, S.J. Sollot, Control and regulation of substrate selection in cytoplasmic
and mitochondrial catabolic networks. A systems biology analysis. Front Physiol. 10, 201
(2019)
22. S. Cortassa, M.A. Aon, A.A. Iglesias, J.C. Aon, D. Lloyd, in An Introduction to Metabolic
and Cellular Engineering, 2nd. edn. (World Scientific, Singapore, 2012), pp. xiv + 428
23. H.M. Davey, C.L. Davey, A.M. Woodward, A.N. Edmonds, A.W. Lee, D.B. Kell, Oscillatory,
stochastic and chaotic growth rate fluctuations in permittistatically controlled yeast cultures.
Biosystems 39, 43–61 (1996)
24. H. Degn, Oscillating chemical reactions in homogeneous phase. J. Chem. Edu. 49, 302–307
(1972)
25. H. Degn, D.E. Harrison, Theory of oscillations of respitation rate in continuous cultures of
Klebsiella aerogenes. J. Theor. Biol. 22(2), 238–248 (1969)
26. H. Degn, D.E. Harrison, Undamped short period oscillations of flavin in respiring non-growing
bacteria. Biochem. Biophys. Res. Commun. 45(6), 1554–1559 (1971)
27. L.N.M. Duysens, J. Amesz, Fluorescence spectrophotometry of reduced phosphopyridine
nucleotide in intact cells in the near ultraviolet and visible region. Biochim. Biophys. Acta
24(1), 19–26 (1957)
28. J.P. Eckmann, D. Ruelle, Ergodic theory of chaos and strange attractors. Rev. Mod. Phys. 57,
617–656 (1985)
29. S.W. Edwards, D. Lloyd, Mitochondrial adenosine triphosphate of the fission yeast Schizosaccharomyces pombe 972 h-. Changes in activity and oligomycin sensitivity during the cell cycle
of catabolite–repressed and -derepressed cells. Biochem. J. 162, 39–46 (1977)
30. S.W. Edwards, D. Lloyd, Oscillations of respiration and adenine nucleotides in synchronous
cultures of Acanthamoeba castellanii: mitochondrial respiratory control in vivo. J. Gen.
Microbiol. 108, 197–204 (1978)
31. S.W. Edwards, D. Lloyd, Oscillations in protein and RNA during synchronous growth of
Acanthamoeba castellanii: evidence for periodic turnover of macromolecules during the cell
cycle. FEBS Lett. 109, 21–26 (1980)
