In vivo and in vitro patch-clamp recording analysis of the process of sensory transmission in the spinal cord and sensory cortex.

Megumu Yoshimura, Atsushi Doi, Masaharu Mizuno, Hidemasa Furue, Toshihiko Katafuchi
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引用次数: 7

Abstract

Following the integration and modification of the sensory inputs in the spinal cord, the information is transmitted to the primary sensory cortex where the integrated information is further processed and perceived. Processing of the sensory information in the spinal cord has been intensively investigated. However, the mechanisms of how the inputs are processed in the cortex are still unclear. To know the correlation of the sensory processing in the dorsal horn and cortex, in vivo and in vitro patch-clamp recordings were made from rat dorsal horn and sensory cortex. Although dorsal horn neurons showed spontaneous and evoked EPSCs by noxious and non-noxious stimuli, most somatosensory neurons located at 100 to 1000 microm from the surface of the cortex exhibited an oscillatory activity and received synaptic inputs from non-noxious but not noxious receptors. These observations suggest that the synaptic responses in cortical neurons are processed in a more complex manner; and this may be due to the reciprocal synaptic connection between thalamus and cortex.

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脊髓和感觉皮层的感觉传递过程在体内和体外膜片钳记录分析。
随着感觉输入在脊髓中的整合和修改,信息被传递到初级感觉皮层,在那里整合的信息被进一步处理和感知。脊髓中感觉信息的处理已被深入研究。然而,大脑皮层如何处理输入信息的机制尚不清楚。为了解大鼠背角和感觉皮层感觉加工的相关性,采用膜片钳在体和离体记录方法对大鼠背角和感觉皮层进行膜片钳记录。尽管背角神经元在有害和无害刺激下表现出自发和诱发的EPSCs,但大多数位于皮层表面100至1000微米处的体感神经元表现出振荡活动,并接受来自非有害而非有害受体的突触输入。这些观察结果表明,皮层神经元的突触反应是以一种更复杂的方式处理的;这可能是由于丘脑和皮层之间的相互突触连接。
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