Malmierca Eduardo, Castellanos Nazareth P, Nuñez-Medina Alberto, Makarov Valeri A, Nuñez Angel
Depto. de Anatomía Histología y Neurociencia, Universidad Autónoma de Madrid, Madrid, Spain.
Eur J Neurosci. 2009 Aug;30(4):593-601. doi: 10.1111/j.1460-9568.2009.06855.x. Epub 2009 Aug 3.
We have studied the role of the temporal correlation of multiple cell discharges in the facilitation of the somatosensory information transmission from the gracilis nucleus to the primary somatosensory (SI) cortex in anesthetized rats. Pairs of gracilis neurons or gracilis-SI cortical neurons were recorded during application of 20-ms tactile stimuli in control conditions and after electrical corticofugal stimulation. Cross-correlation of neural spike trains showed significant changes in synchronization of the neuron firing provoked by the corticofugal stimulation. To quantify the time-frequency alterations in the functional association within neuron pairs we used the wavelet coherence measure. We show that electrical stimulation of the SI cortex induces a short-lasting facilitation of tactile responses of projecting gracilis neurons if their receptive fields (RFs) overlap with the RF of the stimulated cortical area (matching condition). Moreover, synchronization of discharges of gracilis neurons with a common RF is increased by activation of the corticofugal projection. Synchronization is favored by a stimulus induced synchronous oscillatory activity of projecting neurons in the range 3-10 Hz. In the matching condition synchronous discharges in the gracilis increment the number of spikes elicited in the SI cortex. Thus the efficacy of the sensory transmission from the gracilis nucleus to the SI cortex is modulated by the corticofugal projection through two complementary mechanisms: (i) by changing the responsiveness (number of elicited spikes) of individual gracilis neurons; and (ii) by a dynamic consolidation of gracilis neurons with a common RF into microcircuits generating synchronous spikes.
我们研究了多细胞放电的时间相关性在促进麻醉大鼠中从薄束核到初级体感(SI)皮层的体感信息传递中的作用。在对照条件下以及电皮质离心刺激后,在施加20毫秒触觉刺激期间记录薄束神经元对或薄束 - SI皮层神经元对。神经脉冲序列的互相关显示,皮质离心刺激引起的神经元放电同步性有显著变化。为了量化神经元对之间功能关联的时频变化,我们使用了小波相干测量。我们发现,如果投射的薄束神经元的感受野(RFs)与受刺激皮层区域的RF重叠(匹配条件),对SI皮层的电刺激会诱导投射的薄束神经元的触觉反应出现短暂促进。此外,通过皮质离心投射的激活,具有共同RF的薄束神经元放电的同步性增加。在3 - 10 Hz范围内,刺激诱导的投射神经元同步振荡活动有利于同步性。在匹配条件下,薄束中的同步放电增加了SI皮层中引发的尖峰数量。因此,从薄束核到SI皮层的感觉传递效率通过皮质离心投射通过两种互补机制进行调节:(i)通过改变单个薄束神经元的反应性(引发的尖峰数量);(ii)通过将具有共同RF的薄束神经元动态整合到产生同步尖峰的微电路中。