Sil'kis I G, Bodanova O G
Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, Moscow.
Zh Vyssh Nerv Deiat Im I P Pavlova. 1998 May-Jun;48(3):516-23.
The high-effective polysynaptic transcallosal connections were revealed in the motor cortex of anesthetized rats. Polysynaptic connections were manifested in crosscorrelation histograms as high narrow peaks of width 1-2 ms and latencies up to the end of the analyzed interval in 50 ms. In most cases the polysynaptic transcallosal connections were reciprocal. The incidence of transcallosal polysynaptic connections was twice as high as of the ipsilateral. Gamma oscillations were observed in the same neural assemblies. Interhemispheric oscillations were 1.5-fold more frequent than the ipsilateral ones. The peak latencies were multiples of gamma-oscillation periods. The distribution of peak latencies was similar to the distribution of gamma oscillations. It was suggested that synchronous discharges in neurons in a polysynaptic interhemispheric pathway in consequence of gamma oscillations cause potentiation in efficacy of neural connections, which promotes the high-effective transmission of a signal from one hemisphere to another.
在麻醉大鼠的运动皮层中发现了高效的多突触胼胝体连接。多突触连接在互相关直方图中表现为宽度为1 - 2毫秒、潜伏期长达50毫秒分析间隔结束的高窄峰。在大多数情况下,多突触胼胝体连接是相互的。胼胝体多突触连接的发生率是同侧连接的两倍。在相同的神经集合中观察到了伽马振荡。半球间振荡比同侧振荡频繁1.5倍。峰值潜伏期是伽马振荡周期的倍数。峰值潜伏期的分布与伽马振荡的分布相似。有人认为,伽马振荡导致多突触半球间通路中神经元同步放电,从而增强神经连接的效能,促进信号从一个半球到另一个半球的高效传递。