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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Electrophysiological and morphological heterogeneity of slow firing neurons in medial septal/diagonal band complex as revealed by cluster analysis.
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Electrophysiological and morphological heterogeneity of slow firing neurons in medial septal/diagonal band complex as revealed by cluster analysis.

机译:群集间隔分析揭示了内侧中隔/对角带复合体中缓慢放电神经元的电生理和形态学异质性。

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Slow firing septal neurons modulate hippocampal and neocortical functions. Electrophysiologically, it is unclear whether slow firing neurons belong to a homogeneous neuronal population. To address this issue, whole-cell patch recordings and neuronal reconstructions were performed on rat brain slices containing the medial septum/diagonal band complex (MS/DB). Slow firing neurons were identified by their low firing rate at threshold (<5 Hz) and lack of time-dependent inward rectification (Ih). Unsupervised cluster analysis was used to investigate whether slow firing neurons could be further classified into different subtypes. The parameters used for the cluster analysis included latency for first spike, slow after-hyperpolarizing potential, maximal frequency and action potential (AP) decay slope. Neurons were grouped into three major subtypes. The majority of neurons (55%) were grouped as cluster I. Cluster II (17% of neurons) exhibited longer latency for generation of the first action potential (246.5+/-20.1 ms). Cluster III (28% of neurons) exhibited higher maximal firing frequency (25.3+/-1.7 Hz) when compared with cluster I (12.3+/-0.9 Hz) and cluster II (11.8+/-1.1 Hz) neurons. Additionally, cluster III neurons exhibited faster action potentials at suprathreshold. Interestingly, cluster II neurons were frequently located in the medial septum whereas neurons in cluster I and III appeared scattered throughout all MS/DB regions. Sholl's analysis revealed a more complex dendritic arborization in cluster III neurons. Cluster I and II neurons exhibited characteristics of "true" slow firing neurons whereas cluster III neurons exhibited higher frequency firing patterns. Several neurons were labeled with a cholinergic marker, Cy3-conjugated 192 IgG (p75NTR), and cholinergic neurons were found to be distributed among the three clusters. Our findings indicate that slow firing medial septal neurons are heterogeneous and that soma location is an important determinant of their electrophysiological properties.Thus, slow firing neurons from different septal regions have distinct functional properties, most likely related to their diverse connectivity.
机译:室间隔神经元缓慢放电可调节海马和新皮质功能。电生理学上,尚不清楚缓慢放电的神经元是否属于同质神经元群体。为了解决这个问题,对包含内侧中隔/对角带复合物(MS / DB)的大鼠脑切片进行了全细胞补丁记录和神经元重建。缓慢放电的神经元通过阈值(<5 Hz)的低放电率和缺乏时间依赖性的内向整流(Ih)来识别。使用无监督聚类分析来研究是否可以将缓慢放电的神经元进一步分为不同的亚型。用于聚类分析的参数包括首次尖峰的潜伏期,超极化后电位缓慢,最大频率和动作电位(AP)衰减斜率。神经元被分为三个主要的亚型。大多数神经元(55%)被分组为群集I。群集II(神经元的17%)显示出产生第一动作电位的潜伏期较长(246.5 +/- 20.1 ms)。与群集I(12.3 +/- 0.9 Hz)和群集II(11.8 +/- 1.1 Hz)神经元相比,群集III(占神经元的28%)表现出更高的最大触发频率(25.3 +/- 1.7 Hz)。另外,簇III神经元在阈值上表现出更快的动作电位。有趣的是,簇II神经元通常位于内侧隔,而簇I和III中的神经元似乎散布在所有MS / DB区域。 Sholl的分析揭示了簇III神经元中更为复杂的树突状乔化。群集I和II神经元表现出“真正的”缓慢触发神经元的特征,而群集III神经元表现出较高频率的触发模式。几个神经元被胆碱能标记物Cy3偶联的192 IgG(p75NTR)标记,发现胆碱能神经元分布在三个簇中。我们的研究结果表明,中隔内侧神经元的缓慢放电是异质的,体细胞位置是其电生理特性的重要决定因素。因此,来自不同隔区的缓慢神经元具有不同的功能特性,很可能与它们的不同连通性有关。

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