22. Löwdin P-O (1998) Some comments on the foundations of physics. World Scientific,
Singapore
23. Eldridge-Smith P, Eldridge-Smith V (2010) The Pinocchio paradox. Analysis 70(2):212
24. Gleason AM (1957) Measures on the closed subspaces of a Hilbert space. J Math Mech 6:885
25. Brändas EJ (2015) ) Proposed explanation of the Phi phenomenon from a basic neural
viewpoint. Quant Biosyst 6(1):160
26. Yang CN (1962) Concept of off-diagonal long-range order and the quantum phases of liquid
helium and of superconductors. Rev Mod Phys 34:694
27. Sasaki F (1965) Eigenvalues of fermion density matrices. Phys Rev 138B:1338
28. Coleman AJ (1963) Structure of fermion density matrices. Rev Mod Phys 35:668
29. Carlson BC, Keller JM (1961) Eigenvalues of density matrices. Phys Rev 121:659
30. Schmidt E (1907) Math Ann 63:433
31. Brändas EJ, Hessmo B (1998) Indirect measurements and the mirror theorem. Lecture notes in
physics, vol 504, p 359
32. Reid CE, Brändas EJ (1989) On a theorem for complex symmetric matrices and its relevance
in the study of decay phenomena. Lecture notes in chemistry. Springer, Berlin, pp 325–475
33. Brändas EJ (2009) A theorem for complex symmetric matrices revisited. Int J Quant Chem
109:28960
34. Obcemea CH, Brändas EJ (1983) Analysis of Prigogine’s theory of subdynamics. Ann Phys
151:383
35. Brändas EJ (1997) Resonances and dilation analyticity in Liouville space. Adv Chem Phys
99:211
36. Trehub A (1991) The cognitive brain. MIT Press
37. Trehub A (2007) Space, self, and the theatre of consciousness. Conscious Cogn 16:310
38. Quack M (2011) Fundamental symmetries and symmetry violations from high resolution
spectroscopy. Handbook of high-resolution spectroscopy, vol 1, p 659
39. Ayala JF, Arp R (eds) (2010) Contemporary debates in philosophy of biology.
Wiley-Blackwell, Chichester, West Sussex
40. Torday JS, Miller WB Jr (2016) The unicellular state as a point source in a quantum biological
system. Biology 5(2):25
41. Torday JS (2016) Life is simple—biologic complexity is an epiphenomenon. Biology 5(2):17
42. Jablonka E, Lamb M (2005) Evolution in four dimension—genetic, epigenetic, behavioral,
and symbolic variation in the history of life. The MIT Press, Cambridge
43. Li Y, Sasaki H (2011) Genomic imprinting in mammals: its life cycle, molecular mechanisms
and reprogramming. Cell Res 21:466
44. Hameroff S, Penrose R (2014) Consciousness in the universe a review of the ‘Orch OR’
theory. Phys Life Rev Mar 11(1):39
45. Lee JH, Gleeson JG (2010) The role of primary cilia in neuronal function. Neurobiol Dis 38
(2):167
46. Mayr E (2004) What makes biology unique? Cambridge University Press, New York
47. Sanchez FM (2017) A coherent resonant cosmology approach and its implications in
microphysics and biophysics. In: Tadjer A, Pavlov R, Maruani J, Brändas EJ, Delgado-Barrio
(eds), Quantum systems in physics, chemistry, and biology, vol 30. Springer, Dordrecht,
p 379
48. Maruani J, Lefebvre R, Rantanen M (2003) Science and music: from the music of the depths
to the music of the spheres. In: Maruani J, Lefebvre R, Brändas EJ (eds), Advanced topics in
theoretical chemical physics and physics, vol 12. Kluwer, Dordrecht, p 479
404
E. J. Brändas
Singapore
23. Eldridge-Smith P, Eldridge-Smith V (2010) The Pinocchio paradox. Analysis 70(2):212
24. Gleason AM (1957) Measures on the closed subspaces of a Hilbert space. J Math Mech 6:885
25. Brändas EJ (2015) ) Proposed explanation of the Phi phenomenon from a basic neural
viewpoint. Quant Biosyst 6(1):160
26. Yang CN (1962) Concept of off-diagonal long-range order and the quantum phases of liquid
helium and of superconductors. Rev Mod Phys 34:694
27. Sasaki F (1965) Eigenvalues of fermion density matrices. Phys Rev 138B:1338
28. Coleman AJ (1963) Structure of fermion density matrices. Rev Mod Phys 35:668
29. Carlson BC, Keller JM (1961) Eigenvalues of density matrices. Phys Rev 121:659
30. Schmidt E (1907) Math Ann 63:433
31. Brändas EJ, Hessmo B (1998) Indirect measurements and the mirror theorem. Lecture notes in
physics, vol 504, p 359
32. Reid CE, Brändas EJ (1989) On a theorem for complex symmetric matrices and its relevance
in the study of decay phenomena. Lecture notes in chemistry. Springer, Berlin, pp 325–475
33. Brändas EJ (2009) A theorem for complex symmetric matrices revisited. Int J Quant Chem
109:28960
34. Obcemea CH, Brändas EJ (1983) Analysis of Prigogine’s theory of subdynamics. Ann Phys
151:383
35. Brändas EJ (1997) Resonances and dilation analyticity in Liouville space. Adv Chem Phys
99:211
36. Trehub A (1991) The cognitive brain. MIT Press
37. Trehub A (2007) Space, self, and the theatre of consciousness. Conscious Cogn 16:310
38. Quack M (2011) Fundamental symmetries and symmetry violations from high resolution
spectroscopy. Handbook of high-resolution spectroscopy, vol 1, p 659
39. Ayala JF, Arp R (eds) (2010) Contemporary debates in philosophy of biology.
Wiley-Blackwell, Chichester, West Sussex
40. Torday JS, Miller WB Jr (2016) The unicellular state as a point source in a quantum biological
system. Biology 5(2):25
41. Torday JS (2016) Life is simple—biologic complexity is an epiphenomenon. Biology 5(2):17
42. Jablonka E, Lamb M (2005) Evolution in four dimension—genetic, epigenetic, behavioral,
and symbolic variation in the history of life. The MIT Press, Cambridge
43. Li Y, Sasaki H (2011) Genomic imprinting in mammals: its life cycle, molecular mechanisms
and reprogramming. Cell Res 21:466
44. Hameroff S, Penrose R (2014) Consciousness in the universe a review of the ‘Orch OR’
theory. Phys Life Rev Mar 11(1):39
45. Lee JH, Gleeson JG (2010) The role of primary cilia in neuronal function. Neurobiol Dis 38
(2):167
46. Mayr E (2004) What makes biology unique? Cambridge University Press, New York
47. Sanchez FM (2017) A coherent resonant cosmology approach and its implications in
microphysics and biophysics. In: Tadjer A, Pavlov R, Maruani J, Brändas EJ, Delgado-Barrio
(eds), Quantum systems in physics, chemistry, and biology, vol 30. Springer, Dordrecht,
p 379
48. Maruani J, Lefebvre R, Rantanen M (2003) Science and music: from the music of the depths
to the music of the spheres. In: Maruani J, Lefebvre R, Brändas EJ (eds), Advanced topics in
theoretical chemical physics and physics, vol 12. Kluwer, Dordrecht, p 479
404
E. J. Brändas
