首页> 外文期刊>Brain research bulletin >Gap junction blockade eliminates supralinear summation of fast (> 200 Hz) oscillatory components during sensory integration in the rat barrel cortex.
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Gap junction blockade eliminates supralinear summation of fast (> 200 Hz) oscillatory components during sensory integration in the rat barrel cortex.

机译:间隙连接阻滞消除了大鼠桶状皮层感觉整合过程中快速(> 200 Hz)振荡成分的超线性求和。

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The vibrissa-barrel system of rodents has become one of the dominant models for studying sensory information processing. Fast oscillations (>200 Hz) have been shown to play an important role in cortical integration of inputs from several whiskers. The mechanism subserving such integration remains, however, unknown. To address this issue, we examined the influence of the gap junction blocker (carbenoxolone, CBX) topically applied on the cortical surface on the high frequency component evoked by multiple-whisker stimulation. The magnitude of the fast oscillatory response to simultaneous stimulation of three whiskers was shown to be higher compared to its linear prediction (defined as the sum of corresponding single whisker responses). Application of CBX eliminated this supra-linear enhancement of fast oscillations. These results indicate that gap junctions are involved in the synchronization of cortical high frequency oscillations and integration of multiple whisker responses.
机译:啮齿动物的触须桶式系统已成为研究感官信息处理的主要模型之一。快速振荡(> 200 Hz)已显示在多个晶须输入的皮质积分中起重要作用。然而,维持这种整合的机制仍然未知。为了解决这个问题,我们研究了间隙连接阻滞剂(卡培洛酮,CBX)局部施加于皮层表面对多晶须刺激引起的高频成分的影响。与同时预测三个晶须(定义为相应单个晶须响应的总和)相比,对同时刺激三个晶须的快速振荡响应的强度更高。 CBX的应用消除了快速振荡的超线性增强。这些结果表明,间隙连接参与皮质高频振荡的同步和多个晶须响应的整合。

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