Литмир - Электронная Библиотека
Содержание  
A
A

2

Kempermann G. (2012). New neurons for “survival of the fittest” // Nature Reviews Neuroscience, 13. P. 727–736.

3

Treffert D.A., Christensen D. D. (2005). Inside the mind of a savant // Scientific American, 293. P. 108–113.

4

West M.J., Coleman P. D., Flood D. G. and Troncoso J. C. (1994). Differences in the pattern of hippocampal neuronal loss in normal ageing and Alzheimer’s disease // Lancet, 344. P. 769–772.

5

Altman J., Das G.D. (1965). Autoradiographic and histological evidence of postnatal hippocampal neurogenesis in rats // The Journal of Comparative Neurology, 124. P. 319–335.

6

Altman J. (1962). Are new neurons formed in the brains of adult mammals? // Science, 135. P. 1128–1129.

7

Altman J. (1963). Autoradiographic investigation of cell proliferation in the brains of rats and cats // The Anatomical Record, 145. P. 573–591.

8

Hagner M. (2006). Der Geist bei der Arbeit. Göttingen: Wallstein Verlag.

9

Altman J. (1969). Autoradiographic and histological studies of postnatal neurogenesis. IV. Cell proliferation and migration in the anterior forebrain, with special reference to persisting neurogenesis in the olfactory bulb // The Journal of Comparative Neurology, 137. P. 433–457.

10

Reynolds B. A., Weiss S. (1992). Generation of neurons and astrocytes from isolated cells of the adult mammalian central nervous system // Science, 255. P. 1707–1710.

11

Palmer T. (1995). FGF-2-Responsive neuronal progenitors reside in proliferative and quiescent regions of the adult rodent brain // Molecular and Cellular Neuroscience, 6. P. 474–486.

12

Rakic P. (1985). Limits of neurogenesis in primates // Science, 227. P. 1054–1056. doi: 10.1126/science.3975601

13

Eriksson P.S. et al. (1998). Neurogenesis in the adult human hippocampus // Nature Medicine, 4. P. 1313–1317.

14

Palmer T.D. et al. (2001). Cell culture. Progenitor cells from human brain after death // Nature, 411. P. 42–43.

15

Knoth R. et al. (2010). Murine features of neurogenesis in the human Hippocampus across the lifespan from 0 to 100 years // PLoS ONE, 5. P. e8809.

16

Bhardwaj R.D. et al. (2006). Neocortical neurogenesis in humans is restricted to development // Proceedings of the National Academy of Sciences, 103. P. 12564–12568.

17

Spalding K.L. et al. (2013). Dynamics of hippocampal neurogenesis in adult humans // Cell, 153. P. 1227.

18

Altman J. (2011). The discovery of adult mammalian neurogenesis // Neurogenesis in the adult brain I. Springer Japan. P. 3–46. doi: 10.1007/ 978-4-431- 53933-9_1

19

Somjen G.G. (1988). Nervenkitt: notes on the history of the concept of neuroglia // Glia, 1. P. 2–9.

20

Delbrück M. (1935). Über die Natur der Genmutationen und der Genstruktur. Dritter Teil. Atomphysicalisches Modell der Genmutation // Nachrichten von der Königl. Gesellschaft der Wissenschaften und der Georg-Augusts-Universität zu Göttingen. Math-phys. Klasse. doi: 10.1007/BF00623570.pdf

21

Cajal S.R., May R.M. (1928). Degeneration & regeneration of the nervous system. Vol. 1. London.

22

Cajal S. (1894). The Croonian Lecture: La fine structure des centres nerveux// Proceedings of the Royal Society of London, 55. P. 444–468.

23

Jessberger S. et al. (2009). Dentate gyrus-specific knockdown of adult neurogenesis impairs spatial and object recognition memory in adult rats // Learning and Memory, 16. P. 147–154.

24

Kaplan M.S., Hinds J. W. (1977). Neurogenesis in the adult rat: electron microscopic analysis of light radioautographs // Science, 197. P.1092–1094.

25

Kaplan M.S. (2001). Environment complexity stimulates visual cortex neurogenesis: death of a dogma and a research career // Trends in Neurosciences, 24. P. 617–620.

26

Stanfield B.B., Trice J.E. (1988). Evidence that granule cells generated in the dentate gyrus of adult rats extend axonal projections // Experimental Brain Research, 72. P. 399–406.

27

Работы были выполнены на взрослых мышах. См.: Reynolds B. A., Weiss S. (1992, Marсh 27). Generation of neurons and astrocytes from isolated cells of the adult mammalian central nervous system // Science, 255 (5052). P. 1707–1710.

28

Cameron H.A., Woolley C.S., McEwen B.S. and Gould E. (1993). Differentiation of newly born neurons and glia in the dentate gyrus of the adult rat // Neuroscience, 56. P. 337–344.

29

Lois C., García-Verdugo J.M. and Alvarez-Buylla A. (1996). Chain migration of neuronal precursors // Science, 271. P. 978–981.

30

Sanai N. et al. (2011). Corridors of migrating neurons in the human brain and their decline during infancy // Nature, 478. P. 382–386.

31

Bergmann O. et al. (2012). The age of olfactory bulb neurons in humans // Neuron, 74. P. 634–639.

32

Gage F.H. (2000). Mammalian neural stem cells // Science, 287. P. 1433–1438.

33

Kempermann G., Kuhn H. G. and Gage F. H. (1997). More hippo­campal neurons in adult mice living in an enriched environment // Nature, 386. P. 493–495.

34

Bliss T.V., Lomo T. (1973). Long-lasting potentiation of synaptic transmission in the dentate area of the anaesthetized rabbit following stimulation of the perforant path // The Journal of Physiology, 232. P. 331–356.

35

Schmiedek F., Lövdén M. and Lindenberger U. (2010). Hundred days of cognitive training enhance broad cognitive abilities in adulthood: Findings from the COGITO study // Frontiers in Aging Neuroscience, 2. doi: 10.3389/fnagi.2010.00027

36

Maguire E.A. et al. (2000). Navigation-related structural change in the hippocampi of taxi drivers // Proceedings of the National Academy of Sciences, 97. P. 4398–4403.

37

Draganski B. et al. (2006). Temporal and spatial dynamics of brain structure changes during extensive learning // Journal of Neuroscience, 26. P. 6314–6317.

55
{"b":"624866","o":1}