Das A, Gilbert C D
Rockefeller University, New York, New York 10021-6399, USA.
Nature. 1995 Jun 29;375(6534):780-4. doi: 10.1038/375780a0.
The cortical 'point spread' (PS) is the area of cortex activated by a minimal visual stimulus. Here we use the PS to explore the functional role of lateral connectivity in normal cat primary visual cortex (V1) and its involvement in topographic reorganization of cortex following retinal lesions. We compared the distributions of PSs measured with optical recording, which reflects both spiking and subthreshold activity, with those measured with extracellular electrodes, which reveal spiking activity alone. The spiking PS represented only 5% of the area of activation shown in the optical PS, indicating that the remaining 95% was probably generated by subthreshold activation. The orientation dependence of the pattern of the subthreshold activation and its close match with orientation columns suggests that long-range horizontal connections radiating from the locus of spiking activity were responsible for the observed activation. The spike PS showed anisotropies and inhomogeneities that were related to the pattern of orientation columns and indicated distortions in the representation of visual space on the cortical surface. In the reorganized cortex the spike PS expanded, approximating the extent of the optical PS seen in normal cortex, and suggesting that reorganization was mediated by an unmasking of normally subthreshold activation to suprathreshold levels. The orientation map of the reorganized cortex showed a close match to that obtained before placing the lesion, despite the large shift in topography, supporting the idea that intrinsic horizontal connections were responsible for the remapping.
皮层“点扩散”(PS)是由最小视觉刺激激活的皮层区域。在这里,我们使用PS来探究正常猫初级视觉皮层(V1)中侧向连接的功能作用,以及其在视网膜损伤后皮层地形重组中的参与情况。我们比较了通过光学记录测量的PS分布(反映了放电和阈下活动)与通过细胞外电极测量的PS分布(仅揭示放电活动)。放电PS仅占光学PS所示激活区域的5%,这表明其余95%可能是由阈下激活产生的。阈下激活模式的方向依赖性及其与方向柱的紧密匹配表明,从放电活动位点辐射出的长程水平连接是观察到的激活的原因。放电PS显示出与方向柱模式相关的各向异性和不均匀性,并表明皮层表面视觉空间表征存在扭曲。在重组皮层中,放电PS扩大,接近正常皮层中所见光学PS的范围,这表明重组是由将正常阈下激活暴露到阈上水平介导的。尽管地形发生了很大变化,但重组皮层的方向图与损伤前获得的方向图显示出紧密匹配,这支持了内在水平连接负责重新映射的观点。