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发育中和成熟视觉皮层的功能连接性研究。

Studies of functional connectivity in the developing and mature visual cortex.

作者信息

Freeman R D

机构信息

Group in Vision Science, School of Optometry, University of California, Berkeley 94720-2020, USA.

出版信息

J Physiol Paris. 1996;90(3-4):199-203. doi: 10.1016/s0928-4257(97)81423-4.

Abstract

We have investigated several aspects of cortical organization in adult cats and in young kittens. First, we determined receptive field (RF) maps of correlated discharge between pairs of cortical cells. Unique bicellular RFs appear to convey high resolution information. Second, we studied the dynamics of neural interaction between pairs of cells. Using cross-correlation analysis, we studied monosynaptic and polysynaptic interactions in both kittens and cats. A somewhat surprising finding is that there were no cases of monosynaptic excitation from simple to complex cells as would be predicted by a simple hierarchical processing theory. Third, we studied length and side tuning characteristics of cortical cells and worked out the relationships between them. Fourth we carried out an investigation of binocular processing in which we compared monocular and binocular sensitivity of cortical cells with respect to contrast. Our results are comparable to those found in psychophysical work. Fifth, we examined how stereoscopic depth information is encoded by simple cells in the visual cortex. We show that structural differences in RFs of left and right eyes may be expressed in terms of phase. Phase-based encoding appears to be a very plausible alternative to the standard position-based notion. Sixth, we attempted to induce plastic changes in connections between cell pairs by long-term activation (up to 2 h) in kittens and cats. Although connection strength between some cell pairs was increased during long-term activation, there was no consistent pattern of this effect. Seventh, we attempted to study the functional basis of reported claims of RF expansion following use of an artificial scotoma. However, we found no receptive field size change from this procedure. For some cells, there is an apparent change of gain in the form of base (spontaneous) rates and absolute response levels. Finally, we have examined RF dynamics in the central visual pathways. The standard treatment of RFs in to consider only spatial aspects. But the RF is inherently both temporal and spatial in nature and we have examined the dynamics of spatiotemporal organization of RFs in central visual pathways.

摘要

我们研究了成年猫和幼猫大脑皮质组织的几个方面。首先,我们确定了皮质细胞对之间相关放电的感受野(RF)图谱。独特的双细胞RF似乎能传递高分辨率信息。其次,我们研究了细胞对之间神经相互作用的动力学。通过互相关分析,我们研究了幼猫和成年猫中的单突触和多突触相互作用。一个有点令人惊讶的发现是,没有出现如简单层级处理理论所预测的从简单细胞到复杂细胞的单突触兴奋情况。第三,我们研究了皮质细胞的长度和侧向调谐特性,并确定了它们之间的关系。第四,我们进行了双眼处理的研究,比较了皮质细胞单眼和双眼对比敏感度。我们的结果与心理物理学研究结果相当。第五,我们研究了视觉皮质中的简单细胞如何编码立体深度信息。我们表明,左右眼RF的结构差异可能以相位的形式表现出来。基于相位的编码似乎是对标准基于位置概念的一种非常合理的替代。第六,我们试图通过在幼猫和成年猫中进行长期激活(长达2小时)来诱导细胞对之间连接的可塑性变化。尽管在长期激活期间一些细胞对之间的连接强度增加了,但这种效应没有一致的模式。第七,我们试图研究使用人工盲点后报道的RF扩展说法的功能基础。然而,我们发现这个过程没有导致感受野大小的变化。对于一些细胞,存在以基线(自发)率和绝对反应水平形式出现的增益明显变化。最后,我们研究了中央视觉通路中的RF动力学。对RF的标准处理只考虑空间方面。但RF本质上具有时间和空间特性,我们研究了中央视觉通路中RF时空组织的动力学。

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