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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >In vivo electrophysiological distinction of histochemically-identified cholinergic neurons using extracellular recording and labelling in rat laterodorsal tegmental nucleus.
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In vivo electrophysiological distinction of histochemically-identified cholinergic neurons using extracellular recording and labelling in rat laterodorsal tegmental nucleus.

机译:组织化学鉴定胆碱能神经元的体内电生理学区别使用大鼠后背背盖核中的细胞外记录和标记。

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From indirect evidence we have proposed that cholinergic versus non-cholinergic neurons in the laterodorsal tegmental nucleus can be distinguished with the duration of their extracellularly recorded action potentials, "broad" spikes for the former, "brief" for the latter. To test this assumption more directly, we labelled single neurons recorded extracellularly in and around the laterodorsal tegmental nucleus with biocytin or neurobiotin, and processed the sections with reduced nicotinamide adenine dinucleotide phosphate-diaphorase, a proven marker for cholinergic neurons in the laterodorsal tegmental nucleus. Biocytin or neurobiotin which was deposited at the site of recording was incorporated into single neurons. Among 171 trials (91 for broad-spike and 80 for brief-spike neurons), marking was successful in 68 cases (29 for broad-spike and 39 for brief-spike neurons). Almost all (21/22) of the broad-spike neurons located within the laterodorsal tegmental nucleus were positive for reduced nicotinamide adenine dinucleotide phosphate-diaphorase staining, i.e. they were cholinergic, while all of the brief-spike neurons in and outside of the laterodorsal tegmental nucleus lacked the diaphorase activity, and were thus non-cholinergic. The present study shows that, after extracellular labelling of single neurons by biocytin or neurobiotin, cholinergic neurons in the laterodorsal tegmental nucleus are confidently distinguished from non-cholinergic ones in the corresponding area with their spike shapes. It is also shown that the cholinergic neurons distinguished by this criterion are characterized by their tonic firing at slightly lower rate and larger cell size than the brief-spike non-cholinergic ones.
机译:从间接证据中我们已经提出,后嗅被盖核中的胆碱能神经元和非胆碱能神经元可以通过其细胞外记录的动作电位的持续时间来区分,前者为“宽”尖峰,后者为“简短”。为了更直接地检验该假设,我们用生物素或神经生物素标记了背嗅后盖核内和周围的细胞外记录的单个神经元,并用减少的烟酰胺腺嘌呤二核苷酸磷酸-黄递酶处理了这些切片,烟碱腺嘌呤二核苷酸磷酸-黄递酶减少了,这是后背盖膜核中胆碱能神经元的公认标记。将沉积在记录位点的生物细胞素或神经生物素掺入单个神经元中。在171项试验中(91例为广谱突刺,80例为短突突神经元),标记成功68例(29例为广谱突刺,39例为短突突神经元)。位于背外侧后方被膜核内的所有宽峰神经元几乎都对烟酰胺腺嘌呤二核苷酸磷酸-黄递酶染色减少呈阳性,即它们是胆碱能的,而位于外侧后背神经内外的所有短峰神经元。被盖核缺乏心肌黄递酶活性,因此是非胆碱能的。本研究表明,在用生物胞嘧啶或神经生物素对单个神经元进行细胞外标记后,在后方背盖舌核中的胆碱能神经元具有明显的尖峰形状,可以与相应区域的非胆碱能神经元区分开来。还表明,与短暂性非胆碱能神经元相比,以该标准区分的胆碱能神经元的特征在于其滋补发射速率略低,细胞大小更大。

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