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在出生后第0天、第5天或第8天开始的单根触须体验会改变大鼠桶状皮层神经元IV层和V层中反应整合的时间特征。

Single whisker experience started on postnatal days 0, 5 or 8 changes temporal characteristics of response integration in layers IV and V of rat barrel cortex neurons.

作者信息

Shamsizadeh Ali, Sheibani Vahid, Arabzadeh Somaye, Afarinesh Mohammad Reza, Farazifard Rasoul, Noorbakhsh S Mohammad, Fathollahi Yaghoub

机构信息

Department of Physiology, School of Medical Sciences, Tarbiat Modares University, Tehran, Iran.

出版信息

Brain Res Bull. 2007 Sep 14;74(1-3):29-36. doi: 10.1016/j.brainresbull.2007.04.010. Epub 2007 May 25.

Abstract

Neonatal single whisker experience changes the response properties of spared barrel neurons to deflections of principal and adjacent whiskers. However little is known about the temporal characteristics of the paired whisker inputs. To address this issue we used computer controlled mechanical displacement of paired whiskers in control and plucked animals (plucking of all whiskers but D2 started at 0, 5 and 8 postnatal days). The principal whisker (PW) and its caudal adjacent whisker (AW) were deflected simultaneously or serially at different inter-stimulus intervals (10, 20, 30, 50 and 100 ms). Neuronal responses were recorded in D2 spared barrel both in layers IV and V. In the control group, combined deflection of AW prior to PW led to suppression of ON and OFF responses to PW deflection both in layers IV and V. The magnitude of this suppression was strongly dependent on the inter-stimulus intervals (ISIs). At almost all tested ISIs, whisker plucking from P0, P5 and P8 weakened suppressive interactions in layers IV and V barrel neurons for both ON and OFF responses. The most decrease in inhibitory interactions was observed in P5 plucked animals. Principal whisker-evoked ON responses were increased only in P0 plucked animals both in layers IV and V. AW-evoked ON responses are decreased in P5 plucked animals in layer IV. The available data suggest that sensory experience can modulate temporal aspects of response integration and receptive field properties of layers IV and V neurons in barrel cortex. These changes have different critical periods.

摘要

新生期单根触须的经历会改变保留的桶状神经元对主触须和相邻触须偏转的反应特性。然而,对于成对触须输入的时间特征却知之甚少。为了解决这个问题,我们在对照动物和拔毛动物(除D2触须外,所有触须在出生后第0、5和8天开始拔除)中使用计算机控制的成对触须机械位移。主触须(PW)及其尾侧相邻触须(AW)在不同的刺激间隔(10、20、30、50和100毫秒)下同时或相继偏转。在IV层和V层的D2保留桶状区域记录神经元反应。在对照组中,AW在PW之前的联合偏转导致IV层和V层对PW偏转的ON和OFF反应均受到抑制。这种抑制的程度强烈依赖于刺激间隔(ISIs)。在几乎所有测试的ISIs下,从P0、P5和P8开始的触须拔除减弱了IV层和V层桶状神经元对ON和OFF反应的抑制性相互作用。在P5拔毛动物中观察到抑制性相互作用的最大减少。主触须诱发的ON反应仅在IV层和V层的P0拔毛动物中增加。IV层中P5拔毛动物的AW诱发的ON反应减少。现有数据表明,感觉经验可以调节桶状皮层IV层和V层神经元反应整合的时间方面和感受野特性。这些变化有不同的关键期。

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