เชิงอรรถและอ้างอิง ของ เซลล์ประสาท

  1. "neuron", ศัพท์บัญญัติอังกฤษ-ไทย, ไทย-อังกฤษ ฉบับราชบัณฑิตยสถาน (คอมพิวเตอร์) รุ่น ๑.๑ ฉบับ ๒๕๔๕, (แพทยศาสตร์) เซลล์ประสาท
  2. Wade, Nicholas (1999-10-15). "Brain may grow new cells daily". The New York Times.
  3. 1 2 Nowakowski, R. S. (2006). "Stable neuron numbers from cradle to grave". Proceedings of the National Academy of Sciences. 103 (33): 12219–12220. doi:10.1073/pnas.0605605103.
  4. "Neuronal excitability: voltage-dependent currents and synaptic transmission". NCBI PubMed. Journal of Clinical Neurophysiology. สืบค้นเมื่อ 2016-08-16.
  5. Davies, Melissa (2002-04-09). "The Neuron: size comparison". Neuroscience: A journey through the brain. สืบค้นเมื่อ 2009-06-20.
  6. Chudler, Eric H. "Brain Facts and Figures". Neuroscience for Kids. สืบค้นเมื่อ 2009-06-20.
  7. Herrup, K; Yang, Y (2007). "Cell cycle regulation in the postmitotic neuron: oxymoron or new biology?". Nat. Rev. Neurosci. 8 (5): 368–78. doi:10.1038/nrn2124. PMID 17453017.CS1 maint: Uses authors parameter (link)
  8. Alvarez-Buylla, A; Garcia-Verdugo, JM (2002-02-01). "Neurogenesis in adult subventricular zone". Journal of Neuroscience. 22 (3): 629–34. PMID 11826091. สืบค้นเมื่อ 2009-06-20.CS1 maint: Uses authors parameter (link)
  9. State Hospitals Bulletin. State Commission in Lunacy. 1897. p. 378.
  10. Zecca, L; Gallorini, M; Schünemann, V; Trautwein, AX; Gerlach, M; Riederer, P; Vezzoni, P; Tampellini, D (2001-03). "Iron, neuromelanin and ferritin content in the substantia nigra of normal subjects at different ages: consequences for iron storage and neurodegenerative processes". Journal of Neurochemistry. 76 (6): 1766–73. doi:10.1046/j.1471-4159.2001.00186.x. PMID 11259494. Check date values in: |date= (help)
  11. Herrero, María Trinidad; Hirsch, Etienne C.; Kastner, Anne; Luquin, María Rosario; Javoy-Agid, France; Gonzalo, Luis M.; Obeso, José A.; Agid, Yves (1993). "Neuromelanin Accumulation with Age in Catecholaminergic Neurons from Macaca fascicularis Brainstem". Developmental Neuroscience. 15 (1): 37–48. doi:10.1159/000111315. PMID 7505739.
  12. Brunk, UT; Terman, A (2002-09-01). "Lipofuscin: mechanisms of age-related accumulation and influence on cell function". Free radical biology & medicine. 33 (5): 611–9. doi:10.1016/s0891-5849(02)00959-0. PMID 12208347.
  13. Lee, Wei-Chung Allen; Huang, Hayden; Feng, Guoping; Sanes, Joshua R.; Brown, Emery N.; So, Peter T.; Nedivi, Elly (2006). "Dynamic Remodeling of Dendritic Arbors in GABAergic Interneurons of Adult Visual Cortex". PLoS Biology. 4 (2): e29. doi:10.1371/journal.pbio.0040029. PMC 1318477. PMID 16366735.
  14. Martini, Frederic; และคณะ. Anatomy and Physiology (2007 ed.). Rex Bookstore, Inc. p. 288. ISBN 978-971-23-4807-5.CS1 maint: Explicit use of et al. (link)
  15. Gerber, U (2003). "Metabotropic glutamate receptors in vertebrate retina". Doc Ophthalmol. 106 (1): 83–87. doi:10.1023/A:1022477203420. PMID 12675489.
  16. Wilson, Nathan R.; Runyan, Caroline A.; Wang, Forea L.; Sur, Mriganka (2012). "Division and subtraction by distinct cortical inhibitory networks in vivo". Nature. 488 (7411): 343–8. doi:10.1038/nature11347. PMC 3653570. PMID 22878717.
  17. Kolodin, YO; Veselovskaia, NN; Veselovsky, NS; Fedulova, SA. Ion conductances related to shaping the repetitive firing in rat retinal ganglion cells. Acta Physiologica Congress. สืบค้นเมื่อ 2009-06-20.
  18. "Ionic conductances underlying excitability in tonically firing retinal ganglion cells of adult rat". Ykolodin.50webs.com. 2008-04-27. สืบค้นเมื่อ 2013-02-16.
  19. Ivannikov, MV; Macleod, GT (2013-06-04). "Mitochondrial free Ca²⁺ levels and their effects on energy metabolism in Drosophila motor nerve terminals". Biophysical Journal. 104 (11): 2353–61. doi:10.1016/j.bpj.2013.03.064. PMC 3672877. PMID 23746507.
  20. Drachman, D (2005). "Do we have brain to spare?". Neurology. 64 (12): 2004–5. doi:10.1212/01.WNL.0000166914.38327.BB. PMID 15985565.
  21. Chudler, Eric H. "Milestones in Neuroscience Research". Neuroscience for Kids. สืบค้นเมื่อ 2009-06-20.
  22. Patlak, Joe; Gibbons, Ray (2000-11-01). "Electrical Activity of Nerves". Action Potentials in Nerve Cells. Archived from the original on 2009-08-27. สืบค้นเมื่อ 2009-06-20.
  23. Brown, EN; Kass, RE; Mitra, PP (2004). "Multiple neural spike train data analysis: State-of-the-art and future challenges". Nature Neuroscience. 7 (5): 456–61. doi:10.1038/nn1228. PMID 15114358.CS1 maint: Uses authors parameter (link)
  24. Thorpe, SJ (1990). Eckmiller, R; Hartmann, G; Hauske, G, eds. Spike arrival times: A highly efficient coding scheme for neural networks (PDF). Parallel processing in neural systems. Elsevier. pp. 91–94. ISBN 0444883908. Archived from the original (PDF) on 2012-02-15.CS1 maint: Uses authors parameter (link) CS1 maint: Uses editors parameter (link)
  25. Eckert, Roger; Randall, David (1983). Animal physiology: mechanisms and adaptations. San Francisco: W.H. Freeman. p. 239. ISBN 0-7167-1423-X.
  26. "neuron". dictionary.com.
  27. 1 2 3 4 López-Muñoz, F.; Boya, J.; Alamo, C. (2006-10-16). "Neuron theory, the cornerstone of neuroscience, on the centenary of the Nobel Prize award to Santiago Ramón y Cajal". Brain Research Bulletin. 70 (4–6): 391–405. doi:10.1016/j.brainresbull.2006.07.010. PMID 17027775.
  28. Grant, Gunnar; Boya, J; Alamo, C (2007). "How the 1906 Nobel Prize in Physiology or Medicine was shared between Golgi and Cajal". Brain Research Reviews. 55 (4–6): 490–8. doi:10.1016/j.brainresrev.2006.11.004. PMID 17306375.
  29. Witcher, M; Kirov, S; Harris, K (2007). "Plasticity of perisynaptic astroglia during synaptogenesis in the mature rat hippocampus". Glia. 55 (1): 13–23. doi:10.1002/glia.20415. PMID 17001633.CS1 maint: Uses authors parameter (link)
  30. Connors, B; Long, M (2004). "Electrical synapses in the mammalian brain". Annu Rev Neurosci. 27 (1): 393–418. doi:10.1146/annurev.neuro.26.041002.131128. PMID 15217338.CS1 maint: Uses authors parameter (link)
  31. Guillery, R. W. (2005). "Observations of synaptic structures: Origins of the neuron doctrine and its current status". Philosophical Transactions of the Royal Society B: Biological Sciences. 360 (1458): 1281–1307. doi:10.1098/rstb.2003.1459. PMC 1569502. PMID 16147523.
  32. Sabbatini, RME (April–July 2003). "Neurons and Synapses: The History of Its Discovery". Brain & Mind Magazine. สืบค้นเมื่อ 2007-03-19.CS1 maint: Uses authors parameter (link) CS1 maint: Date format (link)
  33. Djurisic, M; Antic, S; Chen, W; Zecevic, D (2004). "Voltage imaging from dendrites of mitral cells: EPSP attenuation and spike trigger zones". J Neurosci. 24 (30): 6703–14. doi:10.1523/JNEUROSCI.0307-04.2004. PMID 15282273.CS1 maint: Uses authors parameter (link)
  34. Cochilla, AJ; Alford, S (1997). "Glutamate receptor-mediated synaptic excitation in axons of the lamprey". The Journal of Physiology. 499 (Pt 2): 443–57. doi:10.1113/jphysiol.1997.sp021940. PMC 1159318. PMID 9080373.
  35. 1 2 Williams, RW; Herrup, K (1988). "The control of neuron number". Annual Review of Neuroscience. 11 (1): 423–53. doi:10.1146/annurev.ne.11.030188.002231. PMID 3284447.CS1 maint: Uses authors parameter (link)
  36. 1 2 Azevedo, FA; Carvalho, LR; Grinberg, LT และคณะ (2009-04). "Equal numbers of neuronal and nonneuronal cells make the human brain an isometrically scaled-up primate brain". The Journal of Comparative Neurology. 513 (5): 532–41. doi:10.1002/cne.21974. PMID 19226510. Check date values in: |date= (help)CS1 maint: Uses authors parameter (link) CS1 maint: Explicit use of et al. (link)
  37. Wadep, Nicholas (1999-10-15). "Brain may grow new cells daily". The New York Times. สืบค้นเมื่อ 2013-02-16.
  38. Callaway, Ewen (2011-05-26). "How to make a human neuron". NatureNews. doi:10.1038/news.2011.328. By transforming cells from human skin into working nerve cells, researchers may have come up with a model for nervous-system diseases and perhaps even regenerative therapies based on cell transplants. The achievement, reported online today in Nature, is the latest in a fast-moving field called transdifferentiation, in which cells are forced to adopt new identities. In the past year, researchers have converted connective tissue cells found in skin into heart cells, blood cells and liver cells. Missing or empty |url= (help)
  39. Forrest, MD (2014). "Intracellular Calcium Dynamics Permit a Purkinje Neuron Model to Perform Toggle and Gain Computations Upon its Inputs". Frontiers in Computational Neuroscience. 8: 86. doi:10.3389/fncom.2014.00086. PMC 4138505. PMID 25191262.

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