König P, Engel A K, Löwel S, Singer W
Max-Planck-Institut für Hirnforschung, Frankfurt, Germany.
Eur J Neurosci. 1993 May 1;5(5):501-8. doi: 10.1111/j.1460-9568.1993.tb00516.x.
As shown previously, neurons in various areas of the cat's visual cortex respond to appropriate visual stimuli with oscillatory activity in the frequency range of 30-70 Hz. It has been suggested that synchronization of such responses serves to define assemblies of coherently active cells which represent individual visual objects. In this study, we have investigated this putative binding mechanism in the visual cortex of strabismic cats. We used six adult cats in which divergent squint had been induced surgically at the age of 3 weeks. Multiunit activity was recorded from area 17 with arrays of four or five closely spaced microelectrodes. Subsequently, auto- and cross-correlation functions were computed for all spike trains. To quantify the oscillatory nature of the responses and the strength of synchronization between spatially remote sites, damped sine wave functions were fitted to the correlograms. Analysis of responses obtained from 202 recording sites showed that the vast majority of cells had become monocular. Auto-correlation analysis revealed that the proportion of oscillatory firing patterns was similar to that observed in normal cats. However, cross-correlation analysis of 153 response pairs demonstrated that synchronization was reduced significantly between cells dominated by different eyes while it was as frequent and strong as in normal cats between cells dominated by the same eye. These findings indicate that strabismus not only causes a reorganization of afferent inputs but also affects intracortical interactions.(ABSTRACT TRUNCATED AT 250 WORDS)
如先前所示,猫视觉皮层各个区域的神经元会对适当的视觉刺激产生频率在30 - 70赫兹范围内的振荡活动。有人提出,这种反应的同步作用是为了定义代表单个视觉对象的相干活动细胞集合。在本研究中,我们调查了斜视猫视觉皮层中的这种假定的结合机制。我们使用了六只成年猫,它们在3周龄时通过手术诱发了外斜视。用四五个紧密排列的微电极阵列从17区记录多单位活动。随后,计算所有脉冲序列的自相关和互相关函数。为了量化反应的振荡性质以及空间上远距离位点之间的同步强度,将阻尼正弦波函数拟合到相关图上。对从202个记录位点获得的反应进行分析表明绝大多数细胞变成了单眼的。自相关分析显示振荡放电模式的比例与正常猫中观察到的相似。然而,对153对反应的互相关分析表明,由不同眼睛主导的细胞之间的同步显著降低,而由同一只眼睛主导的细胞之间的同步与正常猫一样频繁和强烈。这些发现表明斜视不仅会导致传入输入的重组,还会影响皮层内的相互作用。(摘要截短于250字)