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猕猴纹状皮层的功能解剖。IV. 对比度与大细胞-小细胞通路。

Functional anatomy of macaque striate cortex. IV. Contrast and magno-parvo streams.

作者信息

Tootell R B, Hamilton S L, Switkes E

机构信息

Department of Psychology, University of California, Berkeley 94720.

出版信息

J Neurosci. 1988 May;8(5):1594-609. doi: 10.1523/JNEUROSCI.08-05-01594.1988.

Abstract

Macaque monkeys were shown achromatic gratings of various contrasts during 14C-2-deoxy-d-glucose (DG) infusion in order to measure the contrast sensitivity of different subdivisions of primary visual cortex. DG uptake is essentially saturated at stimulus contrasts of 50% and above, although the saturation contrast varies with layer and with different criteria. Following visual stimulation with gratings of 8% contrast, stimulus-driven uptake was relatively high in striate layer 4Ca (which receives primary input from the magnocellular LGN layers), but was absent in layer 4Cb (which receives primary input from the parvocellular layers). In this same (magnocellular-specific) stimulation condition, striate layers 4B, 4Ca, and 6 showed strong stimulus-induced DG uptake, and layers 2, 3, 4A, and 5 showed only light or negligible uptake. By comparison to other cases that were shown stimuli of systematically higher contrast, and to a wide variety of DG cases shown very different stimuli, it is evident that information derived from the magnocellular and parvocellular layers in the LGN remains partially, or largely, segregated in its passage through striate cortex, and projects in a still somewhat segregated fashion to different extrastriate areas. The sum of all available evidence suggests that the magnocellular information projects strongly through striate layers 4Ca, 4B, and 6, with moderate input into the blobs in layers 2 + 3, and to blob-aligned portions of layer 4A. Parvocellular-dominated regions of striate cortex include both the blob and interblob portions of layers 2 + 3, 4A, 4Cb, and 5. Because the major striate input to V2 arrives from striate layers 2 + 3, and because the major striate input to MT originates in layer 4B and 6, it appears that area V2 receives information derived largely from the parvocellular LGN layers, and that area MT receives information derived mainly from the magnocellular layers.

摘要

在注入14C-2-脱氧-D-葡萄糖(DG)期间,向猕猴展示了各种对比度的消色差光栅,以测量初级视皮层不同亚区的对比度敏感性。尽管饱和对比度随层和不同标准而变化,但在50%及以上的刺激对比度下,DG摄取基本饱和。在用8%对比度的光栅进行视觉刺激后,纹状层4Ca(接受大细胞LGN层的主要输入)中的刺激驱动摄取相对较高,但在层4Cb(接受小细胞层的主要输入)中则没有。在相同的(大细胞特异性)刺激条件下,纹状层4B、4Ca和6显示出强烈的刺激诱导的DG摄取,而层2、3、4A和5仅显示出轻微或可忽略不计的摄取。与其他显示系统性更高对比度刺激的情况以及显示非常不同刺激的各种DG情况相比,很明显,来自LGN中大细胞层和小细胞层的信息在通过纹状皮层的过程中仍然部分或很大程度上是分离的,并以仍然有些分离的方式投射到不同的纹外区域。所有现有证据的总和表明,大细胞信息强烈投射通过纹状层4Ca、4B和6,对层2 + 3中的斑点有适度输入,并对层4A中与斑点对齐的部分有输入。纹状皮层中以小细胞为主的区域包括层2 + 3、4A、4Cb和5的斑点和斑点间部分。由于对V2的主要纹状输入来自纹状层2 + 3,并且由于对MT的主要纹状输入起源于层4B和6,因此似乎V2区主要接收来自小细胞LGN层的信息,而MT区主要接收来自大细胞层的信息。

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