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Optogenetic noise-photostimulation on the brain increases somatosensory spike firing responses

机译:脑对脑的光学噪声 - 光致刺激增加了躯体感应峰值射击反应

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摘要

We examined whether the optogenetic noise-photostimulation (ONP) of the barrel cortex (BC) of anesthetized Thy1-ChR2-YFP transgenic mice increases the neuronal multiunit-activity response evoked by whisker mechanical stimulation (whisker-evoked MUA). In all transgenic mice, we found that the signal-to-noise ratio (SNR) of such whisker-evoked MUA signals exhibited an inverted U-like shape as a function of the ONP level. Numerical simulations of a ChR2-expressing neuron model qualitatively support our experimental data. These results show that the application of an intermediate intensity of ONP in the brain can increase cortical somatosensory spike responses to whisker protraction. These findings suggest that ONP of the mice-BC could produce improvements in somatosensory perception to whisker stimulation.
机译:我们检查了麻醉的THY1-CHR2-YFP转基因小鼠的桶皮层(BC)的脊髓致噪声 - 光致刺激(ONP)是否增加了晶须机械刺激(晶须诱发MUA)引起的神经元多单活性反应。 在所有转基因小鼠中,我们发现这种刻丝MUA信号的信噪比(SNR)表现出作为ONP水平的函数的倒U形形状。 CHR2表达神经元模型的数值模拟质量支持我们的实验数据。 这些结果表明,在大脑中的ONP中间强度的应用可以增加皮质躯体传感型尖峰对晶须突起的峰值反应。 这些研究结果表明,小鼠BC的ONP可以产生对晶须刺激的躯体感觉感知的改善。

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