27. Craddock T. J., Friesen D., Mane J., Hameroff S. and Tuszynski J. A. (2014). The feasibility of coherent energy transfer in microtubules. J. R. Soc. Interface 11, 20140677.
28. Craddock T. J., Priel A. and Tuszynski J. A. (2014). Keeping time: could quantum beating in microtubules be the basis for the neural synchrony related to consciousness? J. Integr. Neurosci. 13, 293–311.
29. Winkler J.R. and Gray H.B. (2014). Long-range electron tunneling. J. Am. Chem. Soc. 136, 2930–2939.
30. Hayashi T. and Stuchebrukhov A. A. (2011). Quantum electron tunneling in respiratory complex I. J. Phys Chem. B115, 5354–5364.
31. Moser C. C., Farid T. A., Chobot S. E. and Dutton P. L. (2006). Electron tunneling chains of mitochondria. Biochim. Biophys. Acta. 1757, 1096–1109.
32. De Vries S., Dorner K., Strampraad M. J. and Friedrich T. (2015). Electron tunneling rates in respiratory complex I are tuned for efficient energy conversion. Angew Chem. Int. Ed. Engl. 54, 2844–2848.
33. Trixler F. (2013). Quantum tunnelling to the origin and evolution of life. Curr. Org. Chem. 17, 1758–1770.
34. Vattay G., Salahub D., Csabai I., Nassimi A. and Kaufmann S. A. (2015). Quantum criticality at the origin of life. J. Phys. Conf. Ser. 626, 012023.
35. Zhang Y., Gennady P. B. and Kais S. (2015). The radical pair mechanism and the avian chemical compass: quantum coherence and entanglment. Int. J. Quantum Chem. 115, 1327–1341.
36. Gane S., Georganakis D., Maniati K., Vamvakias M., Ragoussis N., Skoulakis E. M. and Turin L. (2013). Molecular vibration-sensing component in human olfaction. PloS One8, e55780.
37. Vattay G., Kauffman S. and Niiranen S. (2014). Quantum biology on the edge of quantum chaos. PloS One9, e8901.
38. Aon M. A., Cortassa S. and O’Rourke B. (2008). Mitochondrial oscillations in physiology and pathophysiology. Adv. Exp. Med. Biol. 641, 98–117.
39. Cortassa S., O’Rourke B. and Aon M. A. (2014). Redox-optimized ROSbalance and the relationship between mitochondrial respiration and ROS. Biochim. Biophys. Acta. 1837, 287–295.
40. Allen J. F. (2015). Why chloroplasts and mitochondria retain their own genomes and genetic systems: colocation for redox regulation of gene expression. Proc. Natl. Acad. Sci. USA. 112, 10231–10238.
41. Mailloux R. J. and Harper, M.E. (2011). Uncoupling proteins and the control of mitochondrial reactive oxygen species production. Free Radic. Biol. Med. 51, 1106–111.
42. Moradi N., Scholkmann F. and Salari V. (2015) A study of quantum mechanical probabilities in the classical Hodgkin – Huxley model. J. Integr. Neurosci. 14, 1–17.
43. Summhammer J., Salari V. and Bernroide, G. (2012). Aquantum-mechanical description of ion motion within the confining potentials of voltage-gated ion channels. J. Integr. Neurosci. 11, 123–135.
44. Skulachev V. P. (2001). Mitochondrial filaments and clusters as intracellular power-transmitting cables. Trends Biochem. Sci. 26, 23–29.
45. Wai T. and Langer T. (2016). Mitochondrial dynamics and metabolic regulation. Trends Endocrinol. Metab. 27, 105–117.
46. Tamulis A. and Grigalavicius M. (2011). The emergence and evolution of life in a «fatty acid world» based on quantum mechanics. Orig. Life Evol. Biosph. 41, 51–71.
47. McGlynn S. E., Chadwick G. L., Kempes C. P. and Orphan V. J. (2015). Single cell activity reveals direct electron transfer in methanotrophic consortia. Nature 526, 531–535.
48. Pfeffer C., Larsen S., Song J., Dong M., Besenbacher F., Meyer, R. L., Kjeldsen, K. U., Schreiber L., Gorby Y. A., El-Naggar M. Y. et al. (2012). Filamentous bacteria transport electrons over centimeter distances. Nature 491, 218–221.