14 Oscillations, Rhythms and Synchronized Time Bases …
243
121. E. Mochan, K. Pye, Respiratory oscillations in adapting yeast cultures. Nature New Biol. 242,
177–179 (1973)
122. M. Moser, M. Fruehwirth, R. Penter, R. Winker, Why life oscillates-from a topographical
towards functional chronobiology. Cancer Cuses Control 17, 591–599 (2006)
123. M. Moser, M. Fruehwirth, T. Kenner, The symphony of life-importance, interaction and
visualization of biological rhythms. IEEE Eng. Med. Biol. Mag. 27, 29–37 (2008)
124. D.B. Murray, D. Lloyd, A tunable attractor underlies yeast respiratory dynamics. Biosystems
90, 287–294 (2007)
125. D.B. Murray, R.R. Klevecz, D. Lloyd, Generation and maintenance of synchrony in
Saccharomyces cerevisiae continuous culture. Exp. Cell Res. 287, 10–15 (2003)
126. D.B. Murray, M. Beckmann, H. Kitano, Regulation of yeast oscillatory dynamics. Proc. Nat.
Acad. Sci. USA 104, 2241–2246 (2007)
127. D.B. Murray, M. Keuler, F. Englen, D. Lloyd, H. Kuriyama, Involvement of glutathione in the
regulation of respiratory oscillation during a continuous culture of Saccharomyces cerevisiae.
Microbiology 145, 2739–2745 (1999)
128. D.B. Murray, S. Roller, H. Kuriyama, D. Lloyd, Clock control of respiratory oscillations found
during yeast continuous culture. J. Bacteriol. 183, 7253–7259 (2001)
129. D.B. Murray, C. Amariei, K. Sasidharan, R. Machne, M.A. Aon, D. Lloyd, Temporal partitioning of the yeast cellular network, in Systems Biology of Metabolic and Signaling Networks:
Energy, Mass and Information Transfer, vol. 16, ed. by M.A. Aon, V. Saks, U. Schlattner.
Springer Series in Biophysics (Springer, Berlin, Heidelberg, 2014), pp. 323–349
130. M. Noite, M.W. Reimann, J.G. King, H. Markram, E.B. Müller, Cortical reliability admit
noise and chaos. Nat. Commun. 10(1), 3792 (2019)
131. L.F. Olsen, A.Z. Andersen, A. Lunding, J.C. Brasen, A.K. Poulsen, Regulation of glycolytic
oscillations by mitochondria and plasma membrane H+-ATPases. Biophys. J. 96, 3850–3886
(2009)
132. B. O’Rourke, B.M. Ramza, E. Marban, Oscillations of membrane current and excitability
driven by metabolic oscillations in heart cells. Science 265, 962–966 (1994)
133. A. Papagiannakis, B. Niebel, E.C. Wit, M. Heinemann, Autonomous metabolic oscillations
robustly gate the early and late cell cycle. Mol. Cell 65, 285–295 (2017)
134. M. Picard, D.C. Wallace, Y. Burelle, The rise of mitochondria in medicine. Mitochondrion
30, 105–116 (2016)
135. R.K. Poole, D. Lloyd, Changes in enzyme activities in synchronously dividing cultures of
Schizosaccharomyces pombe h _ . Biochem. J. 136, 195–207 (1973)
136. R.K. Poole, D. Lloyd, R.B. Kemp, Respiratory oscillations and heat evolution in synchronous
cultures of fission yeast, Schizosaccharomyces pombe 972 h-. J. Gen. Microbiol. 77, 209–290
(1973)
137. R.K. Poole, D. Lloyd, B. Chance, The development of the cell division cycle of a glucoserepressed fission yeast, Schizosaccharomyces pombe 972 h-. Biochem. J. 138, 201–210 (1974)
138. A.K. Poulsen, O.M. Petersen, L.F. Olsen, Single cell studies and simulation of cell-cell
interactions using oscillating glycolysis in yeast cells. Biophys. Chem. 125(2–3), 275–228
(2007)
139. A.K. Poulsen, A.Z. Andersen, J.C. Brasen, A.M. Scharff-Poulsen, L.F. Olsen, Probing
glycolytic and membrane potential oscillations. Biochemistry 47, 7477–7484 (2008)
140. L. Rapkine, Sur les processes chimiques au course de la division cellulaire. Ann. Physiol.
Physicochem. 7, 382–418 (1931)
141. R. Refinetti, G. Cornélissen, F. Halberg, Procedures for numerical analysis of circadian
rhythms. Biol. Rhythm Res. 38(4), 275–325 (2007)
142. J.G. Reich, E.E. Sel’kov, Time hierarchy, equilibrium and non-equilibrium in metabolic
systems. BioSystems 7(1), 39–50 (1975)
143. J.G. Reich, E.E. Sel’kov, in Energy Metabolism of the Cell: A Theoretical Treatise (Academic
Press, London, 1981), pp. viii + 345
144. M.R. Roussel, D. Lloyd, Observation of a chaotic multi-oscillatory metabolic attractor by
real-time monitoring of a yeast continuous culture. FEBS J. 274, 1011–1018 (2007)
243
121. E. Mochan, K. Pye, Respiratory oscillations in adapting yeast cultures. Nature New Biol. 242,
177–179 (1973)
122. M. Moser, M. Fruehwirth, R. Penter, R. Winker, Why life oscillates-from a topographical
towards functional chronobiology. Cancer Cuses Control 17, 591–599 (2006)
123. M. Moser, M. Fruehwirth, T. Kenner, The symphony of life-importance, interaction and
visualization of biological rhythms. IEEE Eng. Med. Biol. Mag. 27, 29–37 (2008)
124. D.B. Murray, D. Lloyd, A tunable attractor underlies yeast respiratory dynamics. Biosystems
90, 287–294 (2007)
125. D.B. Murray, R.R. Klevecz, D. Lloyd, Generation and maintenance of synchrony in
Saccharomyces cerevisiae continuous culture. Exp. Cell Res. 287, 10–15 (2003)
126. D.B. Murray, M. Beckmann, H. Kitano, Regulation of yeast oscillatory dynamics. Proc. Nat.
Acad. Sci. USA 104, 2241–2246 (2007)
127. D.B. Murray, M. Keuler, F. Englen, D. Lloyd, H. Kuriyama, Involvement of glutathione in the
regulation of respiratory oscillation during a continuous culture of Saccharomyces cerevisiae.
Microbiology 145, 2739–2745 (1999)
128. D.B. Murray, S. Roller, H. Kuriyama, D. Lloyd, Clock control of respiratory oscillations found
during yeast continuous culture. J. Bacteriol. 183, 7253–7259 (2001)
129. D.B. Murray, C. Amariei, K. Sasidharan, R. Machne, M.A. Aon, D. Lloyd, Temporal partitioning of the yeast cellular network, in Systems Biology of Metabolic and Signaling Networks:
Energy, Mass and Information Transfer, vol. 16, ed. by M.A. Aon, V. Saks, U. Schlattner.
Springer Series in Biophysics (Springer, Berlin, Heidelberg, 2014), pp. 323–349
130. M. Noite, M.W. Reimann, J.G. King, H. Markram, E.B. Müller, Cortical reliability admit
noise and chaos. Nat. Commun. 10(1), 3792 (2019)
131. L.F. Olsen, A.Z. Andersen, A. Lunding, J.C. Brasen, A.K. Poulsen, Regulation of glycolytic
oscillations by mitochondria and plasma membrane H+-ATPases. Biophys. J. 96, 3850–3886
(2009)
132. B. O’Rourke, B.M. Ramza, E. Marban, Oscillations of membrane current and excitability
driven by metabolic oscillations in heart cells. Science 265, 962–966 (1994)
133. A. Papagiannakis, B. Niebel, E.C. Wit, M. Heinemann, Autonomous metabolic oscillations
robustly gate the early and late cell cycle. Mol. Cell 65, 285–295 (2017)
134. M. Picard, D.C. Wallace, Y. Burelle, The rise of mitochondria in medicine. Mitochondrion
30, 105–116 (2016)
135. R.K. Poole, D. Lloyd, Changes in enzyme activities in synchronously dividing cultures of
Schizosaccharomyces pombe h _ . Biochem. J. 136, 195–207 (1973)
136. R.K. Poole, D. Lloyd, R.B. Kemp, Respiratory oscillations and heat evolution in synchronous
cultures of fission yeast, Schizosaccharomyces pombe 972 h-. J. Gen. Microbiol. 77, 209–290
(1973)
137. R.K. Poole, D. Lloyd, B. Chance, The development of the cell division cycle of a glucoserepressed fission yeast, Schizosaccharomyces pombe 972 h-. Biochem. J. 138, 201–210 (1974)
138. A.K. Poulsen, O.M. Petersen, L.F. Olsen, Single cell studies and simulation of cell-cell
interactions using oscillating glycolysis in yeast cells. Biophys. Chem. 125(2–3), 275–228
(2007)
139. A.K. Poulsen, A.Z. Andersen, J.C. Brasen, A.M. Scharff-Poulsen, L.F. Olsen, Probing
glycolytic and membrane potential oscillations. Biochemistry 47, 7477–7484 (2008)
140. L. Rapkine, Sur les processes chimiques au course de la division cellulaire. Ann. Physiol.
Physicochem. 7, 382–418 (1931)
141. R. Refinetti, G. Cornélissen, F. Halberg, Procedures for numerical analysis of circadian
rhythms. Biol. Rhythm Res. 38(4), 275–325 (2007)
142. J.G. Reich, E.E. Sel’kov, Time hierarchy, equilibrium and non-equilibrium in metabolic
systems. BioSystems 7(1), 39–50 (1975)
143. J.G. Reich, E.E. Sel’kov, in Energy Metabolism of the Cell: A Theoretical Treatise (Academic
Press, London, 1981), pp. viii + 345
144. M.R. Roussel, D. Lloyd, Observation of a chaotic multi-oscillatory metabolic attractor by
real-time monitoring of a yeast continuous culture. FEBS J. 274, 1011–1018 (2007)
