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本文引用的文献

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The secondary loss of gyrencephaly as an example of evolutionary phenotypical reversal.脑回增多畸形的继发缺失,作为进化表型反转的一个例子。
Front Neuroanat. 2013 Jun 26;7:16. doi: 10.3389/fnana.2013.00016. eCollection 2013.
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Neural structures underlying set-shifting: roles of medial prefrontal cortex and anterior cingulate cortex.与定势转移相关的神经结构:内侧前额叶皮质和前扣带皮质的作用。
Behav Brain Res. 2013 Aug 1;250:91-101. doi: 10.1016/j.bbr.2013.04.037. Epub 2013 May 9.
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Brain reorganization, not relative brain size, primarily characterizes anthropoid brain evolution.脑重组而非相对脑容量大小主要决定了灵长类动物的脑进化。
Proc Biol Sci. 2013 Mar 27;280(1759):20130269. doi: 10.1098/rspb.2013.0269. Print 2013 May 22.
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The evolution of brains from early mammals to humans.从早期哺乳动物到人类大脑的进化。
Wiley Interdiscip Rev Cogn Sci. 2013 Jan;4(1):33-45. doi: 10.1002/wcs.1206. Epub 2012 Nov 8.
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Parallel episodes of phyletic dwarfism in callitrichid and cheirogaleid primates.灵长目 CALLITHRICIDAE 和 CHEIROGALIIDAE 中的分支侏儒现象的平行事件。
J Evol Biol. 2013 Apr;26(4):810-9. doi: 10.1111/jeb.12097. Epub 2013 Feb 26.
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The case for a dorsomedial area in the primate 'third-tier' visual cortex.灵长类“第三层级”视觉皮层中背内侧区域的实例
Proc Biol Sci. 2013 Jan 7;280(1750):20121372; discussion 20121994. doi: 10.1098/rspb.2012.1372. Epub 2012 Nov 7.
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Contrasting patterns of cortical input to architectural subdivisions of the area 8 complex: a retrograde tracing study in marmoset monkeys.皮质输入到 8 区复合体各构筑亚区的对比模式:狨猴的逆行追踪研究。
Cereb Cortex. 2013 Aug;23(8):1901-22. doi: 10.1093/cercor/bhs177. Epub 2012 Jun 26.
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Cortical evolution in mammals: the bane and beauty of phenotypic variability.哺乳动物大脑皮层的进化:表型变异性的祸与福。
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Integration of faces and vocalizations in ventral prefrontal cortex: implications for the evolution of audiovisual speech.腹侧前额叶皮质中面部和声音的整合:对视听言语进化的启示。
Proc Natl Acad Sci U S A. 2012 Jun 26;109 Suppl 1(Suppl 1):10717-24. doi: 10.1073/pnas.1204335109. Epub 2012 Jun 20.
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Cortical parcellations of the macaque monkey analyzed on surface-based atlases.基于表面图谱分析的猕猴大脑皮质分割。
Cereb Cortex. 2012 Oct;22(10):2227-40. doi: 10.1093/cercor/bhr290. Epub 2011 Nov 2.

灵长类动物大脑皮质区域的差异扩张存在保守模式。

A conserved pattern of differential expansion of cortical areas in simian primates.

机构信息

Department of Physiology and Monash Vision Group, Monash University, Clayton, Victoria, 3800, Australia, and Programa de Neurobiologia, Universidade Federal do Rio de Janeiro, Instituto de Biofísica Carlos Chagas Filho, Rio de Janeiro, Rio de Janeiro 21941-900, Brazil.

出版信息

J Neurosci. 2013 Sep 18;33(38):15120-5. doi: 10.1523/JNEUROSCI.2909-13.2013.

DOI:10.1523/JNEUROSCI.2909-13.2013
PMID:24048842
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6618405/
Abstract

The layout of areas in the cerebral cortex of different primates is quite similar, despite significant variations in brain size. However, it is clear that larger brains are not simply scaled up versions of smaller brains: some regions of the cortex are disproportionately large in larger species. It is currently debated whether these expanded areas arise through natural selection pressures for increased cognitive capacity or as a result of the application of a common developmental sequence on different scales. Here, we used computational methods to map and quantify the expansion of the cortex in simian primates of different sizes to investigate whether there is any common pattern of cortical expansion. Surface models of the marmoset, capuchin, and macaque monkey cortex were registered using the software package CARET and the spherical landmark vector difference algorithm. The registration was constrained by the location of identified homologous cortical areas. When comparing marmosets with both capuchins and macaques, we found a high degree of expansion in the temporal parietal junction, the ventrolateral prefrontal cortex, and the dorsal anterior cingulate cortex, all of which are high-level association areas typically involved in complex cognitive and behavioral functions. These expanded maps correlated well with previously published macaque to human registrations, suggesting that there is a general pattern of primate cortical scaling.

摘要

不同灵长类动物大脑皮层区域的布局非常相似,尽管大脑大小存在显著差异。然而,很明显,较大的大脑并不是较小大脑的简单放大版本:皮质的一些区域在较大的物种中不成比例地大。目前,人们对于这些扩展区域是通过认知能力增加的自然选择压力产生的,还是由于在不同尺度上应用共同的发育序列产生的,存在争议。在这里,我们使用计算方法来映射和量化不同大小的灵长类动物皮层的扩张,以研究是否存在任何常见的皮层扩张模式。使用 CARET 软件包和球形地标向量差算法对狨猴、卷尾猴和猕猴皮层的表面模型进行了配准。配准受到已识别的同源皮质区域位置的限制。在将狨猴与卷尾猴和猕猴进行比较时,我们发现颞顶联合区、腹外侧前额叶皮层和背侧前扣带皮层有高度扩张,这些区域都是高级联合区域,通常涉及复杂的认知和行为功能。这些扩展图谱与先前发表的猕猴与人类的图谱注册结果高度相关,表明存在灵长类动物皮层缩放的一般模式。