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在体小鼠桶状皮层中使用两种不同的电压敏感染料对电刺激和触须偏转反应的比较。

Comparison of responses to electrical stimulation and whisker deflection using two different voltage-sensitive dyes in mouse barrel cortex in vivo.

作者信息

Civillico E F, Contreras D

机构信息

Department of Neuroscience, University of Pennsylvania School of Medicine, Philadelphia, 19104, USA.

出版信息

J Membr Biol. 2005 Nov;208(2):171-82. doi: 10.1007/s00232-005-0828-6.

Abstract

We examined the spatial structure of noise in optical recordings made with two commonly used voltage-sensitive dyes (RH795 and RH1691) in mouse barrel cortex in vivo, and determined that the signal-to-noise ratio of the two dyes was comparable when averaging over barrel-sized areas, or at single pixels distant from large blood vessels. We examined the spatiotemporal development of whisker- and electrically-evoked optical responses by quantifying the area of activated cortical surface as a function of time. Whisker and electrical stimuli activated cortical areas between 0.2-2.0 mm(2) depending on intensity. More importantly, both types of activation recruited cortical area at similar rates and showed a linear relationship between the maximal activated area and the peak rate of increase of the activated area. We propose a general rule of supragranular cortical activation in which the initial spreading speed of the response determines the total activated area, independent of the type of activation. Finally, despite comparable single-response kinetics, we observed greater paired-pulse depression of whisker-evoked responses relative to electrically-evoked responses.

摘要

我们研究了在体小鼠桶状皮质中使用两种常用电压敏感染料(RH795和RH1691)进行光学记录时噪声的空间结构,并确定在桶状区域平均或远离大血管的单个像素处,两种染料的信噪比相当。我们通过量化激活的皮质表面面积随时间的变化,研究了触须诱发和电诱发光学反应的时空发展。触须和电刺激根据强度激活0.2 - 2.0平方毫米之间的皮质区域。更重要的是,两种类型的激活以相似的速率募集皮质区域,并且在最大激活面积与激活面积增加的峰值速率之间呈现线性关系。我们提出了一个关于颗粒上层皮质激活的一般规则,即反应的初始传播速度决定了总激活面积,与激活类型无关。最后,尽管单反应动力学相当,但我们观察到触须诱发反应相对于电诱发反应有更大的双脉冲抑制。

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