메뉴 건너뛰기




Volumn 8, Issue November, 2014, Pages

Eratum to: Cellular scaling rules for the brain of Artiodactyla include a highly folded cortex with few neurons (Frontiers in Neuroanatomy) 8, 128, 2014, (10.3389/fnana.2014.00128));Cellular scaling rules for the brain of Artiodactyla include a highly folded cortex with few neurons

Author keywords

Brain size; Cortical expansion; Evolution; Gyrification; Numbers of neurons

Indexed keywords

NEURON SPECIFIC NUCLEAR PROTEIN;

EID: 84927517753     PISSN: None     EISSN: 16625129     Source Type: Journal    
DOI: 10.3389/fnana.2015.00039     Document Type: Erratum
Times cited : (45)

References (55)
  • 1
    • 64549116740 scopus 로고    scopus 로고
    • Equal numbers of neuronal and non-neuronal cells make the human brain an isometrically scaled-up primate brain
    • Azevedo, F. A. C., Carvalho, L. R. B., Grinberg, L. T., Farfel, J. M., Ferretti, R. E. L., Leite, R. E. P.,et al. (2009). Equal numbers of neuronal and non-neuronal cells make the human brain an isometrically scaled-up primate brain. J. Comp. Neurol. 513, 532-541. doi: 10.1002/cne.21974.
    • (2009) J. Comp. Neurol , vol.513 , pp. 532-541
    • Azevedo, F.A.C.1    Carvalho, L.R.B.2    Grinberg, L.T.3    Farfel, J.M.4    Ferretti, R.E.L.5    Leite, R.E.P.6
  • 2
    • 84889645520 scopus 로고    scopus 로고
    • Validation of the isotropic fractionator: Comparison with unbiased stereology and DNA extraction for quantification of glial cells
    • Bahney, J., and von Bartheld, C. S. (2014). Validation of the isotropic fractionator: comparison with unbiased stereology and DNA extraction for quantification of glial cells. J. Neurosci. Meth. 222, 165-174. doi: 10.1016/j.jneumeth.2013.11.002.
    • (2014) J. Neurosci. Meth , vol.222 , pp. 165-174
    • Bahney, J.1    von Bartheld, C.S.2
  • 3
    • 69549092121 scopus 로고    scopus 로고
    • Changing numbers of neuronal and non-neuronal cells underlie postnatal brain growth in the rat
    • Bandeira, F. C., Lent, R., and Herculano-Houzel, S. (2009). Changing numbers of neuronal and non-neuronal cells underlie postnatal brain growth in the rat. Proc. Natl. Acad. Sci. U.S.A. 106, 14108-14113. doi: 10.1073/pnas.0804650106.
    • (2009) Proc. Natl. Acad. Sci. U.S.A , vol.106 , pp. 14108-14113
    • Bandeira, F.C.1    Lent, R.2    Herculano-Houzel, S.3
  • 4
    • 84859442158 scopus 로고    scopus 로고
    • Comparative analysis of encephalization in mammals reveals relaxed constraints on anthropoid primate and cetacean brain scaling
    • Boddy, A. M., McGowen, M. R., Sherwood, C. C., Grossman, L. I., Goodman, M., and Wildman, D. E. (2012). Comparative analysis of encephalization in mammals reveals relaxed constraints on anthropoid primate and cetacean brain scaling. J. Evol. Biol. 25, 981-994. doi: 10.1111/j.1420-9101.2012.02491.x.
    • (2012) J. Evol. Biol , vol.25 , pp. 981-994
    • Boddy, A.M.1    McGowen, M.R.2    Sherwood, C.C.3    Grossman, L.I.4    Goodman, M.5    Wildman, D.E.6
  • 5
    • 84863903418 scopus 로고    scopus 로고
    • Systematic, balancing gradients in neuron density and number across the primate isocortex
    • Cahalane, D. J., Charvet, C. J., and Finlay, B. L. (2012). Systematic, balancing gradients in neuron density and number across the primate isocortex. Front. Neuroanat. 6:28. doi: 10.3389/fnana.2012.00028.
    • (2012) Front. Neuroanat , vol.6 , pp. 28
    • Cahalane, D.J.1    Charvet, C.J.2    Finlay, B.L.3
  • 6
    • 84922389585 scopus 로고    scopus 로고
    • Systematic, cross-cortex variation in neuron numbers in rodents and primates
    • Charvet, C. J., Cahalane, D. J., and Finlay, B. L. (2013). Systematic, cross-cortex variation in neuron numbers in rodents and primates. Cereb. Cortex doi: 10.1093/cercor/bht214 [Epub ahead of print].
    • (2013) Cereb. Cortex
    • Charvet, C.J.1    Cahalane, D.J.2    Finlay, B.L.3
  • 7
    • 0024517506 scopus 로고
    • Interstitial cells of the adult neocortical white matter are the remnant of the early generated subplate neuron population
    • Chun, J. J., and Shatz, C. J. (1989). Interstitial cells of the adult neocortical white matter are the remnant of the early generated subplate neuron population. J. Comp. Neurol. 282, 555-569. doi: 10.1002/cne.902820407.
    • (1989) J. Comp. Neurol , vol.282 , pp. 555-569
    • Chun, J.J.1    Shatz, C.J.2
  • 8
    • 0035837421 scopus 로고    scopus 로고
    • Scalable architecture in mammalian brains
    • Clark, D. A., Mitra, P. P., and Wang, S. S. (2001). Scalable architecture in mammalian brains. Nature 411, 189-193. doi: 10.1038/35075564.
    • (2001) Nature , vol.411 , pp. 189-193
    • Clark, D.A.1    Mitra, P.P.2    Wang, S.S.3
  • 9
    • 0017283124 scopus 로고
    • The cortical visual areas of the sheep
    • Clarke, P. G. H., and Whitteridge, D. (1976). The cortical visual areas of the sheep. J. Physiol. 256, 497-508.
    • (1976) J. Physiol , vol.256 , pp. 497-508
    • Clarke, P.G.H.1    Whitteridge, D.2
  • 10
    • 33847272615 scopus 로고    scopus 로고
    • Total neocortical cell number in the mysticete brain
    • Eriksen, N., and Pakkenberg, B. (2007). Total neocortical cell number in the mysticete brain. Anat. Rec. 290, 83-95. doi: 10.1002/ar.20404.
    • (2007) Anat. Rec , vol.290 , pp. 83-95
    • Eriksen, N.1    Pakkenberg, B.2
  • 11
    • 77957771109 scopus 로고    scopus 로고
    • Cellular scaling rules for the brains of an extended number of primate species
    • Gabi, M., Collins, C. E., Wong, P., Torres, L. B., Kaas, J. H., and Herculano-Houzel, S. (2010). Cellular scaling rules for the brains of an extended number of primate species. Brain Behav. Evol. 76, 32-44. doi: 10.1159/000319872.
    • (2010) Brain Behav. Evol , vol.76 , pp. 32-44
    • Gabi, M.1    Collins, C.E.2    Wong, P.3    Torres, L.B.4    Kaas, J.H.5    Herculano-Houzel, S.6
  • 12
    • 2342464932 scopus 로고    scopus 로고
    • Neuronal density, size and shape in the human anterior cingulate cortex: A comparison of Nissl and NeuN staining
    • Gittins, R., and Harrison, P. J. (2004). Neuronal density, size and shape in the human anterior cingulate cortex: a comparison of Nissl and NeuN staining. Brain Res. Bull. 63, 155-160. doi: 10.1016/j.brainresbull.2004.02.005.
    • (2004) Brain Res. Bull , vol.63 , pp. 155-160
    • Gittins, R.1    Harrison, P.J.2
  • 13
    • 0023271966 scopus 로고
    • Brain sizes, surfaces, and neuronal sizes of the cortex cerebri: A stereological investigation of man and his variability and a comparison with some mammals (primates, whales, marsupials, insectivores, and one elephant)
    • Haug, H. (1987). Brain sizes, surfaces, and neuronal sizes of the cortex cerebri: a stereological investigation of man and his variability and a comparison with some mammals (primates, whales, marsupials, insectivores, and one elephant). Am. J. Anat. 180, 126-142. doi: 10.1002/aja.1001800203.
    • (1987) Am. J. Anat , vol.180 , pp. 126-142
    • Haug, H.1
  • 14
    • 84890924627 scopus 로고    scopus 로고
    • The human brain in numbers: A linearly scaled-up primate brain
    • Herculano-Houzel, S. (2009). The human brain in numbers: a linearly scaled-up primate brain. Front. Hum. Neurosci. 3:31. doi: 10.3389/neuro.09.031.2009.
    • (2009) Front. Hum. Neurosci , vol.3 , pp. 31
    • Herculano-Houzel, S.1
  • 15
    • 80052320652 scopus 로고    scopus 로고
    • Not all brains are made the same: New views on brain scaling in evolution
    • Herculano-Houzel, S. (2011). Not all brains are made the same: new views on brain scaling in evolution. Brain Behav. Evol. 78, 22-36. doi: 10.1159/000327318.
    • (2011) Brain Behav. Evol , vol.78 , pp. 22-36
    • Herculano-Houzel, S.1
  • 16
    • 84855487575 scopus 로고    scopus 로고
    • Neuronal scaling rules for primate brains: The primate advantage
    • Herculano-Houzel, S. (2012). Neuronal scaling rules for primate brains: the primate advantage. Prog. Brain Res. 195, 325-340. doi: 10.1016/B978-0-444-53860-4.00015-5.
    • (2012) Prog. Brain Res , vol.195 , pp. 325-340
    • Herculano-Houzel, S.1
  • 17
    • 84904353612 scopus 로고    scopus 로고
    • The glia/neuron ratio: How it varies uniformly across brain structures and species and what that means for brain physiology and evolution
    • Herculano-Houzel, S. (2014). The glia/neuron ratio: how it varies uniformly across brain structures and species and what that means for brain physiology and evolution. Glia 62, 1377-1391. doi: 10.1002/glia.22683.
    • (2014) Glia , vol.62 , pp. 1377-1391
    • Herculano-Houzel, S.1
  • 19
    • 79951853770 scopus 로고    scopus 로고
    • Gorilla and orangutan brains conform to the primate scaling rules: Implications for hominin evolution
    • Herculano-Houzel, S., and Kaas, J. H. (2011). Gorilla and orangutan brains conform to the primate scaling rules: implications for hominin evolution. Brain Behav. Evol. 77, 33-44. doi: 10.1159/000322729.
    • (2011) Brain Behav. Evol , vol.77 , pp. 33-44
    • Herculano-Houzel, S.1    Kaas, J.H.2
  • 20
    • 14944342993 scopus 로고    scopus 로고
    • Isotropic fractionator: A simple, rapid method for the quantification of total cell and neuron numbers in the brain
    • Herculano-Houzel, S., and Lent, R. (2005). Isotropic fractionator: a simple, rapid method for the quantification of total cell and neuron numbers in the brain. J. Neurosci. 25, 2518-2521. doi: 10.1523/JNEUROSCI.4526-04.2005.
    • (2005) J. Neurosci , vol.25 , pp. 2518-2521
    • Herculano-Houzel, S.1    Lent, R.2
  • 21
    • 84905917446 scopus 로고    scopus 로고
    • Brain scaling in mammalian evolution as a consequence of concerted and mosaic changes in numbers of neurons and average neuronal cell size
    • Herculano-Houzel, S., Manger, P. R., and Kaas, J. H. (2014). Brain scaling in mammalian evolution as a consequence of concerted and mosaic changes in numbers of neurons and average neuronal cell size. Front. Neuroanat. 8:77. doi: 10.3389/fnana.2014.00077.
    • (2014) Front. Neuroanat , vol.8 , pp. 77
    • Herculano-Houzel, S.1    Manger, P.R.2    Kaas, J.H.3
  • 22
    • 33747046064 scopus 로고    scopus 로고
    • Cellular scaling rules for rodent brains
    • Herculano-Houzel, S., Mota, B., and Lent, R. (2006). Cellular scaling rules for rodent brains. Proc. Natl. Acad. Sci. U.S.A. 103, 12138-12143. doi: 10.1073/pnas.0604911103.
    • (2006) Proc. Natl. Acad. Sci. U.S.A , vol.103 , pp. 12138-12143
    • Herculano-Houzel, S.1    Mota, B.2    Lent, R.3
  • 23
    • 78650505566 scopus 로고    scopus 로고
    • Connectivity-driven white matter scaling and folding in primate cerebral cortex
    • Herculano-Houzel, S., Mota, B., Wong, P., and Kaas, J. H. (2010). Connectivity-driven white matter scaling and folding in primate cerebral cortex. Proc. Natl. Acad. Sci. U.S.A. 107, 19008-19013. doi: 10.1073/pnas.1012590107.
    • (2010) Proc. Natl. Acad. Sci. U.S.A , vol.107 , pp. 19008-19013
    • Herculano-Houzel, S.1    Mota, B.2    Wong, P.3    Kaas, J.H.4
  • 25
    • 84887033182 scopus 로고    scopus 로고
    • Distribution of neurons in functional areas of the mouse cerebral cortex reveals quantitatively different cortical zones
    • Herculano-Houzel, S., Watson, C., and Paxinos, G. (2013). Distribution of neurons in functional areas of the mouse cerebral cortex reveals quantitatively different cortical zones. Front. Neuroanat. 7:35. doi: 10.3389/fnana.2013.00035.
    • (2013) Front. Neuroanat , vol.7 , pp. 35
    • Herculano-Houzel, S.1    Watson, C.2    Paxinos, G.3
  • 26
    • 0022189523 scopus 로고
    • Size and shape of the cerebral cortex in mammals. I. The cortical surface
    • Hofman, M. (1985). Size and shape of the cerebral cortex in mammals. I. The cortical surface. Brain Behav. Evol. 27, 28-40. doi: 10.1159/000118718.
    • (1985) Brain Behav. Evol , vol.27 , pp. 28-40
    • Hofman, M.1
  • 27
    • 81255199543 scopus 로고    scopus 로고
    • The effects of domestication on brain size
    • eds L. Krubitzer and J. H. Kaas (Oxford: Academic Press)
    • Kruska, D. C. T. (2007). "The effects of domestication on brain size," in Evolution of Nervous Systems, Vol. 3, eds L. Krubitzer and J. H. Kaas (Oxford: Academic Press), 143-153. doi: 10.1016/B0-12-370878-8/00054-9.
    • (2007) Evolution of Nervous Systems , vol.3 , pp. 143-153
    • Kruska, D.C.T.1
  • 28
    • 37849000450 scopus 로고    scopus 로고
    • Morphometry of the human cerebral cortex microcirculation: General characteristics and space-related profiles
    • Lauwers, F., Cassot, F., Lauwers-Cances, V., Puwanarajah, P., and Duvernoy, H. (2008). Morphometry of the human cerebral cortex microcirculation: general characteristics and space-related profiles. Neuroimage 39, 936-948. doi: 10.1016/j.neuroimage.2007.09.024.
    • (2008) Neuroimage , vol.39 , pp. 936-948
    • Lauwers, F.1    Cassot, F.2    Lauwers-Cances, V.3    Puwanarajah, P.4    Duvernoy, H.5
  • 29
    • 84933673107 scopus 로고    scopus 로고
    • Conical expansion of the outer subventricular zone and the role of neocortical folding in evolution and development
    • Lewitus, E., Kelava, I., and Huttner, W. B. (2013). Conical expansion of the outer subventricular zone and the role of neocortical folding in evolution and development. Front. Hum. Neurosci. 7:424. doi: 10.3389/fnhum.2013.00424.
    • (2013) Front. Hum. Neurosci , vol.7 , pp. 424
    • Lewitus, E.1    Kelava, I.2    Huttner, W.B.3
  • 30
    • 61849102390 scopus 로고    scopus 로고
    • Acquisition of brains from the African elephant (Loxodonta africana): Perfusion-fixation and dissection
    • Manger, P. R., Pillay, P., Maseko, B. C., Bhagwandin, A., Gravett, N., Moon, D.-J.,et al. (2009). Acquisition of brains from the African elephant (Loxodonta africana): perfusion-fixation and dissection. J. Neurosci. Meth. 179, 16-21. doi: 10.1016/j.jneumeth.2009.01.001.
    • (2009) J. Neurosci. Meth , vol.179 , pp. 16-21
    • Manger, P.R.1    Pillay, P.2    Maseko, B.C.3    Bhagwandin, A.4    Gravett, N.5    Moon, D.-J.6
  • 31
    • 84860899850 scopus 로고    scopus 로고
    • Quantitative analysis of neocortical gyrencephaly in African elephants (Loxodonta africana) and six species of cetaceans: Comparison with other mammals
    • Manger, P. R., Prowse, M., Haagensen, M., and Hemingway, J. (2012). Quantitative analysis of neocortical gyrencephaly in African elephants (Loxodonta africana) and six species of cetaceans: comparison with other mammals. J. Comp. Neurol. 520, 2430-2439. doi: 10.1002/cne.23046.
    • (2012) J. Comp. Neurol , vol.520 , pp. 2430-2439
    • Manger, P.R.1    Prowse, M.2    Haagensen, M.3    Hemingway, J.4
  • 32
    • 84901304064 scopus 로고    scopus 로고
    • Three counting methods agree on cell and neuron number in chimpanzee primary visual cortex
    • Miller, D. J., Balaran, P., Young, N. A., and Kaas, J. H. (2014). Three counting methods agree on cell and neuron number in chimpanzee primary visual cortex. Front. Neuroanat. 8:36. doi: 10.3389/fnana.2014.00036.
    • (2014) Front. Neuroanat , vol.8 , pp. 36
    • Miller, D.J.1    Balaran, P.2    Young, N.A.3    Kaas, J.H.4
  • 33
    • 84856782618 scopus 로고    scopus 로고
    • How the cortex gets its folds: A connectivity-based universal model of mammalian gyrification
    • Mota, B., and Herculano-Houzel, S. (2012). How the cortex gets its folds: a connectivity-based universal model of mammalian gyrification. Front. Neuroanat. 6:3. doi: 10.3389/fnana.2012.00003.
    • (2012) Front. Neuroanat , vol.6 , pp. 3
    • Mota, B.1    Herculano-Houzel, S.2
  • 34
    • 84927509740 scopus 로고    scopus 로고
    • All brains are made of this: A fundamental building block of brain matter with matching neuronal and glial masses
    • Mota, B., and Herculano-Houzel, S. (2014). All brains are made of this: a fundamental building block of brain matter with matching neuronal and glial masses. Front. Neuroanat. 8:127. doi: 10.3389/fnana.2014.00127.
    • (2014) Front. Neuroanat , vol.8 , pp. 127
    • Mota, B.1    Herculano-Houzel, S.2
  • 35
    • 0026697724 scopus 로고
    • NeuN, a neuronal specific nuclear protein in vertebrates
    • Mullen, R. J., Buck, C. R., and Smith, A. M. (1992). NeuN, a neuronal specific nuclear protein in vertebrates. Development 116, 201-211.
    • (1992) Development , vol.116 , pp. 201-211
    • Mullen, R.J.1    Buck, C.R.2    Smith, A.M.3
  • 36
    • 7444233609 scopus 로고    scopus 로고
    • Mammalian phylogenomics comes of age
    • Murphy, W. J., Pevzner, P. A., and O'Brien, S. J. (2004). Mammalian phylogenomics comes of age. Trends Genet. 20, 631-639. doi: 10.1016/j.tig.2004.09.005.
    • (2004) Trends Genet , vol.20 , pp. 631-639
    • Murphy, W.J.1    Pevzner, P.A.2    O'Brien, S.J.3
  • 38
    • 34249978704 scopus 로고    scopus 로고
    • Order-specific quantitative patterns of cortical gyrification
    • Pillay, P., and Manger, P. R. (2007). Order-specific quantitative patterns of cortical gyrification. Eur. J. Neurosci. 25, 2705-2712. doi: 10.1111/j.1460-9568.2007.05524.x.
    • (2007) Eur. J. Neurosci , vol.25 , pp. 2705-2712
    • Pillay, P.1    Manger, P.R.2
  • 39
    • 35348822496 scopus 로고    scopus 로고
    • Human and animal cognition: Continuity and discontinuity
    • Premack, D. (2007). Human and animal cognition: continuity and discontinuity. Proc. Natl. Acad. Sci. U.S.A. 104, 13861-13867. doi: 10.1073/pnas.0706147104.
    • (2007) Proc. Natl. Acad. Sci. U.S.A , vol.104 , pp. 13861-13867
    • Premack, D.1
  • 40
    • 0023785808 scopus 로고
    • Specification of cerebral cortical areas
    • Rakic, P. (1988). Specification of cerebral cortical areas. Science 241, 170-176. doi: 10.1126/science.3291116.
    • (1988) Science , vol.241 , pp. 170-176
    • Rakic, P.1
  • 41
    • 84885057930 scopus 로고    scopus 로고
    • The human cerebral cortex is neither one nor many: Neuronal distribution reveals two quantitatively different zones in the grey matter, three in the white matter, and explains local variations in cortical folding
    • Ribeiro, P. F. M., Ventura-Antunes, L., Gabi, M., Mota, B., Grinberg, L. T., Farfel, J. M.,et al. (2013). The human cerebral cortex is neither one nor many: neuronal distribution reveals two quantitatively different zones in the grey matter, three in the white matter, and explains local variations in cortical folding. Front. Neuroanat. 7:28. doi: 10.3389/fnana.2013.00028.
    • (2013) Front. Neuroanat , vol.7 , pp. 28
    • Ribeiro, P.F.M.1    Ventura-Antunes, L.2    Gabi, M.3    Mota, B.4    Grinberg, L.T.5    Farfel, J.M.6
  • 42
    • 0018948139 scopus 로고
    • The basic uniformity in structure of the neocortex
    • Rockel, A. J., Hiorns, R. W., and Powell, T. P. (1980). The basic uniformity in structure of the neocortex. Brain 103, 221-244. doi: 10.1093/brain/103.2.221.
    • (1980) Brain , vol.103 , pp. 221-244
    • Rockel, A.J.1    Hiorns, R.W.2    Powell, T.P.3
  • 43
    • 18144382265 scopus 로고    scopus 로고
    • Evolution of the brain and intelligence
    • Roth, G., and Dicke, U. (2005). Evolution of the brain and intelligence. Trends Cogn. Sci. 9, 250-257. doi: 10.1016/j.tics.2005.03.005.
    • (2005) Trends Cogn. Sci , vol.9 , pp. 250-257
    • Roth, G.1    Dicke, U.2
  • 45
    • 0016342348 scopus 로고
    • Volumen-und Oberflächenmessungen an Gehirnen verschiedener Säugetiere im Vergleich zu einem errechneten Modell
    • Schlenska, G. (1974). Volumen-und Oberflächenmessungen an Gehirnen verschiedener Säugetiere im Vergleich zu einem errechneten Modell. J. Hirnforsch. 15, 401-408.
    • (1974) J. Hirnforsch , vol.15 , pp. 401-408
    • Schlenska, G.1
  • 46
    • 13244281707 scopus 로고    scopus 로고
    • Prefrontal white matter volume is disproportionately larger in humans than in other primates
    • Schoenemann, P. T., Sheehan, M. J., and Gloter, L. D. (2005). Prefrontal white matter volume is disproportionately larger in humans than in other primates. Nat. Neurosci. 8, 242-252. doi: 10.1038/nn1394.
    • (2005) Nat. Neurosci , vol.8 , pp. 242-252
    • Schoenemann, P.T.1    Sheehan, M.J.2    Gloter, L.D.3
  • 48
    • 0001661037 scopus 로고
    • Activity of acetylcholine system in cerebral cortex of various unanesthetized mammals
    • Tower, D. B., and Elliott, K. A. C. (1952). Activity of acetylcholine system in cerebral cortex of various unanesthetized mammals. Am. J. Physiol. 168, 747-759.
    • (1952) Am. J. Physiol , vol.168 , pp. 747-759
    • Tower, D.B.1    Elliott, K.A.C.2
  • 49
    • 70949083465 scopus 로고    scopus 로고
    • Correlations of neuronal and microvascular densities in murine cortex revealed by direct counting and colocalization of nuclei and vessels
    • Tsai, P. S., Kaufhold, J. P., Blinder, P., Friedman, B., Drew, P. J., Karten, H. J.,et al. (2009). Correlations of neuronal and microvascular densities in murine cortex revealed by direct counting and colocalization of nuclei and vessels. J. Neurosci. 29, 14553-14570. doi: 10.1523/JNEUROSCI.3287-09.2009.
    • (2009) J. Neurosci , vol.29 , pp. 14553-14570
    • Tsai, P.S.1    Kaufhold, J.P.2    Blinder, P.3    Friedman, B.4    Drew, P.J.5    Karten, H.J.6
  • 50
    • 84875489133 scopus 로고    scopus 로고
    • Different scaling of white matter volume, cortical connectivity, and gyrification across rodent and primate brains
    • Ventura-Antunes, L., Mota, B., and Herculano-Houzel, S. (2013). Different scaling of white matter volume, cortical connectivity, and gyrification across rodent and primate brains. Front. Neuroanat. 7:3. doi: 10.3389/fnana.2013.00003.
    • (2013) Front. Neuroanat , vol.7 , pp. 3
    • Ventura-Antunes, L.1    Mota, B.2    Herculano-Houzel, S.3
  • 51
    • 78649713353 scopus 로고    scopus 로고
    • A neurological comparative study of the harp seal (Pagophilus groenlandicus) and harbor porpoise (Phocoena phocoena) brain
    • Walloe, S., Eriksen, N., Torben, D., and Pakkenberg, B. (2010). A neurological comparative study of the harp seal (Pagophilus groenlandicus) and harbor porpoise (Phocoena phocoena) brain. Anat. Rec. 293, 2129-2135. doi: 10.1002/ar.21295.
    • (2010) Anat. Rec , vol.293 , pp. 2129-2135
    • Walloe, S.1    Eriksen, N.2    Torben, D.3    Pakkenberg, B.4
  • 53
    • 0023915823 scopus 로고
    • The control of neuron number
    • Williams, R. W., and Herrup, K. (1988). The control of neuron number. Ann. Rev. Neurosci. 11, 423-453. doi: 10.1146/annurev.ne.11.030188.002231.
    • (1988) Ann. Rev. Neurosci , vol.11 , pp. 423-453
    • Williams, R.W.1    Herrup, K.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.