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Efficient population coding of naturalistic whisker motion in the ventro-posterior medial thalamus based on precise spike timing

机译:基于精确的穗定时有效地编码腹内侧后丘脑自然须运动

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摘要

The rodent whisker-associated thalamic nucleus (VPM) contains a somatotopic map where whisker representation is divided into distinct neuronal sub-populations, called “barreloids”. Each barreloid projects to its associated cortical barrel column and so forms a gateway for incoming sensory stimuli to the barrel cortex. We aimed to determine how the population of neurons within one barreloid encodes naturalistic whisker motion. In rats, we recorded the extracellular activity of up to nine single neurons within a single barreloid, by implanting silicon probes parallel to the longitudinal axis of the barreloids. We found that play-back of texture-induced whisker motion evoked sparse responses, timed with millisecond precision. At the population level, there was synchronous activity: however, different subsets of neurons were synchronously active at different times. Mutual information between population responses and whisker motion increased near linearly with population size. When normalized to factor out firing rate differences, we found that texture was encoded with greater informational-efficiency than white noise. These results indicate that, within each VPM barreloid, there is a rich and efficient population code for naturalistic whisker motion based on precisely timed, population spike patterns.
机译:啮齿动物与晶须相关的丘脑核(VPM)包含体表图,其中晶须表示被分为不同的神经元亚群,称为“ barreloids”。每个桶状突伸到其相关联的皮质桶状纵列,并因此形成进入到桶状皮质的感觉刺激的通道。我们旨在确定一个桶状神经元中的神经元种群如何编码自然的晶须运动。在大鼠中,我们通过植入平行于圆柱体纵轴的硅探针记录了单个圆柱体中多达9个单个神经元的细胞外活性。我们发现,纹理诱导的晶须运动的回放引起了稀疏的响应,定时精度为毫秒。在人口一级,存在同步活动:但是,不同时间的神经元的不同子集同步活动。种群响应和晶须运动之间的相互信息随种群数量线性增加。当归一化以排除发射速率差异时,我们发现纹理编码的信息效率高于白噪声。这些结果表明,在每个VPM桶形图中,都有一个基于精确定时的种群尖峰模式的自然晶须运动的丰富且有效的种群代码。

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