Reid R C, Alonso J M
Laboratory of Neurobiology, Rockefeller University, New York, New York 10021, USA.
Nature. 1995 Nov 16;378(6554):281-4. doi: 10.1038/378281a0.
In cortical area 17 of the cat, simple receptive fields are arranged in elongated subregions that respond best to bright (on) or dark (off) oriented contours, whereas the receptive fields of their thalamic inputs have a concentric on and off organization. This dramatic transformation suggests that there are specific rules governing the connections made between thalamic and cortical neurons (see ref. 4). Here we report a study of these rules in which we recorded from thalamic (lateral geniculate nucleus; LGN) and cortical neurons simultaneously and related their receptive fields to their connectivity, as measured by cross-correlation analysis. The probability of finding a monosynaptic connection was high when a geniculate receptive field was superimposed anywhere over an elongated simple-cell subregion of the same signature (on or off). However, 'inappropriate' connections from geniculate cells of the opposite receptive field signature were extremely rare. Together, these findings imply that the outline of the elongated, simple receptive field, and thus of cortical orientation selectivity, is laid down at the level of the first synapse from the thalamic afferents.
在猫的17区皮层中,简单感受野排列成长条形子区域,对明亮(开)或黑暗(关)的定向轮廓反应最佳,而它们丘脑输入的感受野具有同心的开和关组织。这种显著的转变表明,存在特定的规则来支配丘脑和皮层神经元之间的连接(见参考文献4)。在此,我们报告了一项对这些规则的研究,我们同时记录丘脑(外侧膝状体核;LGN)和皮层神经元,并通过互相关分析测量它们的感受野与连接性之间的关系。当膝状体感受野叠加在具有相同特征(开或关)的长条形简单细胞子区域的任何位置时,发现单突触连接的概率很高。然而,来自具有相反感受野特征的膝状体细胞的“不适当”连接极其罕见。这些发现共同表明,长条形简单感受野的轮廓,以及皮层方向选择性的轮廓,是在丘脑传入的第一个突触水平上确定的。