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首页> 外文期刊>Life sciences >Analysis of receptive fields revealed by in vivo patch-clamp recordings from dorsal horn neurons and in situ intracellular recordings from dorsal root ganglion neurons
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Analysis of receptive fields revealed by in vivo patch-clamp recordings from dorsal horn neurons and in situ intracellular recordings from dorsal root ganglion neurons

机译:背角神经元的体内膜片钳记录和背根神经节神经元的原位细胞内记录揭示的感受野分析

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It has been thought that spinal dorsal horn neurons receive convergent inputs from not only somatosensory but also visceral pathways. For instance, the referred pain is presumed to be due to the convergence of sensory inputs from cardiac and shoulder receptive fields. However, precise investigation has not been made from dorsal horn neurons yet, because of difficulty in studying the pathways from those regions by means of conventional electrophysiology. The purpose of this study is to clarify the convergent inputs to single dorsal horn neurons from wide receptive fields using an in vivo patch-clamp recording technique from the superficial spinal dorsal horn and an intracellular recording from dorsal root ganglion neurons that keep physiological connections with the peripheral sites. Identified dorsal root ganglion neurons received an input from a quite small area, about 1 x 1 mm in width of the skin. In contrast, substantia gelatinosa neurons in the spinal cord received inputs from an unexpectedly wide area of the skin. Previous extracellular recordings have, however, revealed that substantia gelatinosa neurons have small receptive field. This discrepancy is probably due mainly to an availability of the in vivo patch-clamp method to analyze sub-threshold synaptic responses. In contrast, the extracellular recording technique allows us to analyze predominantly the firing frequency of neurons. Thus, the in vivo patch-clamp recordings from dorsal horn neurons and the intracellular recordings from DRG neurons will be useful for well understanding the sensory processing in the spinal cord. (C) 2004 Elsevier Inc. All rights reserved. [References: 11]
机译:已经认为,脊髓背角神经元不仅从体感途径而且从内脏途径接受会聚的输入。例如,推定的疼痛被认为是由于来自心脏和肩膀感受野的感觉输入的收敛所致。然而,由于难以通过常规电生理学研究来自那些区域的通路,因此尚未对背角神经元进行精确的研究。这项研究的目的是通过使用浅表脊髓背角的体内膜片钳记录技术和背根神经节神经元的细胞内记录来澄清来自宽感受野的单个背角神经元的会聚输入,并保持与背根神经节的生理联系。外围站点。识别出的背根神经节神经元从很小的区域(皮肤宽度约为1 x 1毫米)接受输入。相反,脊髓中的明胶质神经元接收到的皮肤区域出乎意料的输入。但是,以前的细胞外记录显示明胶质神经元的感受野很小。这种差异可能主要是由于体内膜片钳方法可用于分析亚阈值突触反应。相反,细胞外记录技术使我们能够主要分析神经元的放电频率。因此,来自背角神经元的体内膜片钳记录和来自DRG神经元的细胞内记录将有助于很好地了解脊髓的感觉过程。 (C)2004 Elsevier Inc.保留所有权利。 [参考:11]

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