16. Koch, C. (2012), Consciousness: Confessions of a Romantic Reductionist
(London: MIT Press), p. 65.17. Quian Quiroga, R., et al. (2008), Trends in Cognitive Science
12:87–91.18. Waydo, S., et al. (2006), Journal of Neuroscience
26:10232–4.19. Yuste, R. (2015), Nature Reviews Neuroscience
16:487–97, p. 488.20. Goodale, M. and Milner, A. (1992), Trends in Neuroscience
15:20–25.21. Milner, A. (2017), Experimental Brain Research
235:1297–308.22. Vargas-Irwin, C., et al. (2015), Journal of Neuroscience
35:10888–97.23. Saur, D., et al. (2008), Proceedings of the National Academy of Sciences USA
105:18035–40.24. Barlow, H. (1972), Perception
1:371–94; Barlow, H. (2009), Perception 38:795–807.25. Crick, F. (1958), Symposia of the Society of Experimental Biology
12:138–63.26. Boden (2006), vol. 2, p. 1206.
27. James (1890), vol. 1, p. 179.
28. Barlow (1972), p. 390.
29. Там же, p. 381.
30. Barlow (2009), p. 797.
31. White, J., et al. (1986), Philosophical Transactions of the Royal Society of London: B
314:1–340.32. White J. (2013), in The C. elegans
Research Community (eds.), WormBook, https://tinyurl.com/mindofworm.33. Crick, F. and Jones, E. (1993), Nature
361:109–10.34. Felleman, D. and Van Essen, D. (1991), Cerebral Cortex
1:1–47.35. Sporns O., et al. (2005), PLoS Computational Biology
1:e42, p. 245; Hagmann, P. (2005), ‘From Diffusion MRI to Brain Connectomics’ (PhD Thesis, Lausanne: EPFL), doi:10.5075/epfl-thesis-3230; Seung, S. (2012), Connectome: How the Brain’s Wiring Makes Us Who We Are (Boston: Houghton Mifflin Harcourt).36. Morabito, C. (2017), Nuncius
32:472–500.37. Swanson, L. and Lichtman, J. (2016), Annual Review of Neuroscience
39:197–216, p. 197.38. Bardin, J. (2012), Nature
483:394–6.39. Smith, S., et al. (2015), Nature Neuroscience
18:1565–7.40. Ingalhalikar, M., et al. (2014), Proceedings of the National Academy of Sciences USA
111:823–8; Joel, D. and Tarrasch, R. (2014), Proceedings of the National Academy of Sciences USA 111:E637; Cahill, L. (2015), Proceedings of the National Academy of Sciences USA 111:577–8.41. Morgan, J. and Lichtman, J. (2013), Nature Methods
10:494–500, p. 497.42. E conomo, M., et al. (2016), eLife
5:e10566.43. Wolff, S. and Olveczky, B. (2018), Current Opinion in Neurobiology
49:84–94; Winnubst. J., et al. (2019), Cell, 179:268–8144. Ero, C., et al. (2018), Frontiers in Neuroinformatics
12:00084.45. Bargmann, C. (2013), Bioessays
34:458–65, p. 464.46. White (2013).
47. Swanson and Lichtman (2016), p. 198.
48. Bargmann, C. and Marder, E. (2013), Nature Methods
10:483–90.49. Shimizu, K. and Stopfer, M. (2013), Current Biology
23:R1026–R1031.50. Ohyama, T., et al. (2015), Nature
520:633–9.51. Morgan, J. and Lichtman, J. (2019), https://www.biorxiv.org/content/ 10.1101/683276v1
52. Sasaki, T., et al. (2012), Proceedings of the National Academy of Sciences USA
109:20720–5.53. Mu, Y., et al. (2019), Cell
178:27–43.54. Savtchouk I. and Volterra, A. (2018), Journal of Neuroscience
38:14–25; Fiacco, T. and McCarthy, K. (2018), Journal of Neuroscience 38:3–13.55. Fitzsimonds, R., et al. (1997), Nature
388:439–48.56. Bullock, T., et al. (2005), Science
310:791–2.57. Yuste (2015).
58. Harvey, C., et al. (2012), Nature
484:62–8.59. Yuste (2015), p. 494.
60. Buzsaki, G. (2010), Neuron
68:362–85; Buzsaki, G. (2019), The Brain from Inside Out (New York: Oxford University Press).61. Saxena, S. and Cunningham, J. (2019), Current Opinion in Neurobiology
55:103–11.62. Простое объяснение низкоразмерных многообразий: Richard Gao’s blog post: https://tinyurl.com/manifold-explanation.
63. Gallego, J., et al. (2017), Neuron
94:978–84; Gonzalez, W., et al. (2019), Science 365:821–5; Oby, E., et al. (2019), Proceedings of the National Academy of Sciences 116:15210–5.64. Nassim, C. (2018), Lessons from the Lobster: Eve Marder’s Work in Neuroscience
(Cambridge, MA: MIT Press).