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Two projection streams from macaque V1 to the pale cytochrome oxidase stripes of V2.
J Neurosci. 2013 Jul 10;33(28):11530-9. doi: 10.1523/JNEUROSCI.5053-12.2013.
2
Four projection streams from primate V1 to the cytochrome oxidase stripes of V2.
J Neurosci. 2009 Dec 9;29(49):15455-71. doi: 10.1523/JNEUROSCI.1648-09.2009.
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Morphological Cell Types Projecting from V1 Layer 4B to V2 Thick and Thin Stripes.
J Neurosci. 2019 Sep 18;39(38):7501-7512. doi: 10.1523/JNEUROSCI.1096-19.2019. Epub 2019 Jul 29.
5
Input to V2 thin stripes arises from V1 cytochrome oxidase patches.
J Neurosci. 2005 Nov 2;25(44):10087-93. doi: 10.1523/JNEUROSCI.3313-05.2005.
7
V1 interpatch projections to v2 thick stripes and pale stripes.
J Neurosci. 2010 May 19;30(20):6963-74. doi: 10.1523/JNEUROSCI.5506-09.2010.
8
Divided by cytochrome oxidase: a map of the projections from V1 to V2 in macaques.
Science. 2002 Mar 1;295(5560):1734-7. doi: 10.1126/science.1067902.

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2
Primate V2 Receptive Fields Derived from Anatomically Identified Large-Scale V1 Inputs.
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4
Function-specific projections from V2 to V4 in macaques.
Brain Struct Funct. 2022 May;227(4):1317-1330. doi: 10.1007/s00429-021-02440-3. Epub 2022 Jan 3.
5
Escaping the nocturnal bottleneck, and the evolution of the dorsal and ventral streams of visual processing in primates.
Philos Trans R Soc Lond B Biol Sci. 2022 Feb 14;377(1844):20210293. doi: 10.1098/rstb.2021.0293. Epub 2021 Dec 27.
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The Global Configuration of Visual Stimuli Alters Co-Fluctuations of Cross-Hemispheric Human Brain Activity.
J Neurosci. 2021 Nov 24;41(47):9756-9766. doi: 10.1523/JNEUROSCI.3214-20.2021. Epub 2021 Oct 18.
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Stream-specific feedback inputs to the primate primary visual cortex.
Nat Commun. 2021 Jan 11;12(1):228. doi: 10.1038/s41467-020-20505-5.
9
Columnar connectome: toward a mathematics of brain function.
Netw Neurosci. 2019 Jul 1;3(3):779-791. doi: 10.1162/netn_a_00088. eCollection 2019.
10
Morphological Cell Types Projecting from V1 Layer 4B to V2 Thick and Thin Stripes.
J Neurosci. 2019 Sep 18;39(38):7501-7512. doi: 10.1523/JNEUROSCI.1096-19.2019. Epub 2019 Jul 29.

本文引用的文献

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Toward a unified theory of visual area V4.
Neuron. 2012 Apr 12;74(1):12-29. doi: 10.1016/j.neuron.2012.03.011.
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A motion direction map in macaque V2.
Neuron. 2010 Dec 9;68(5):1002-13. doi: 10.1016/j.neuron.2010.11.020.
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Functional organization for color and orientation in macaque V4.
Nat Neurosci. 2010 Dec;13(12):1542-8. doi: 10.1038/nn.2676. Epub 2010 Nov 14.
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V1 interpatch projections to v2 thick stripes and pale stripes.
J Neurosci. 2010 May 19;30(20):6963-74. doi: 10.1523/JNEUROSCI.5506-09.2010.
5
Four projection streams from primate V1 to the cytochrome oxidase stripes of V2.
J Neurosci. 2009 Dec 9;29(49):15455-71. doi: 10.1523/JNEUROSCI.1648-09.2009.
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A computational framework for ultrastructural mapping of neural circuitry.
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Shape selectivity for camouflage-breaking dynamic stimuli in dorsal V4 neurons.
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Neurons in V1 patch columns project to V2 thin stripes.
Cereb Cortex. 2007 Apr;17(4):935-41. doi: 10.1093/cercor/bhl004. Epub 2006 Jun 1.
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Neurons in macaque area V4 acquire directional tuning after adaptation to motion stimuli.
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