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首页> 外文期刊>Journal of Neurophysiology >Oscillatory and burst discharge across electrosensory topographic maps.
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Oscillatory and burst discharge across electrosensory topographic maps.

机译:跨电感测地形图的振荡和脉冲放电。

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1. Three parallel maps of the distribution of tuberous electroreceptor inputs are found in the medullary electrosensory lateral line lobe (ELL) of weakly electric fish. Pyramidal cells in each map are known to respond differentially to the frequency of amplitude modulations (AMs) of external electric fields in vivo. We used an in vitro ELL slice preparation of Apteronotus leptorhynchus to compare the characteristics of spontaneously active single units across the three tuberous maps. It was our objective to determine whether spontaneous bursting activity of pyramidal cells in each map correlates with the known AM frequency selectivities of pyramidal cells in vivo. 2. Single-unit discharges were recorded from the pyramidal cell layer of the centromedial segment (CMS), centrolateral segment (CLS), and lateral segment (LS) of the ELL. Stochastic analysis of interspike intervals (ISIs) was used to identify bursting and nonbursting unit activity, and to separately analyze intra- and interburst ISIs. Four ISI patterns were identified as 1) bursting, 2) regular spiking, 3) irregular spiking, and 4) highly irregular spiking. This work focuses primarily on the characteristics of bursting units across the ELL segments. 3. Spontaneous bursting discharge was identified in all three maps (68 of 97 units), with several characteristics changing in a gradual manner across the maps. The coefficient of variation (CV) of ISIs and intraburst ISIs decreased significantly from the CMS to the LS, whereas the CV of burst periods increased significantly from the CMS to the LS. Autocorrelations and power spectral density analysis identified units discharging in an oscillatory manner with the following ratio: CMS, 75%; CLS, 4%; LS, 8%. 4. The mean period of spike bursts decreased significantly across the segments (CMS, 2.7 s; CLS, 1.2 s; LS, 1.1 s) primarily because of a shortening of mean burst duration (CMS, 1.0 s; CLS, 0.1 s; LS, 0.05 s). The average number of spikes per burst decreased significantly across the maps (CMS, 61; CLS, 8; LS, 8), whereas the average frequency of spikes per burst increased (CMS, 90 Hz; CLS, 130 Hz; LS, 178 Hz), mainly through an increase in the maximal frequencies attained by units within each map. 5. Bursts in the CMS were unstructured in that the intraburst ISIs were serially independent, whereas for many units in the CLS and especially the LS there were serial dependencies of successive spikes, with alternating short and long ISIs during the burst. 6. These data reveal that the characteristics of bursting unit activity differ between the CMS, CLS, and LS maps in vitro, implying a modulation of the factors underlying burst discharge across multiple sensory maps. Because the pattern of change in burst activity between these maps parallels that of pyramidal cell AM frequency selectivity in vivo, oscillatory and burst discharge may represent the cellular mechanism used to tune these cells to specific frequencies of afferent input during electrolocation and electrocommunication.
机译:1.在弱电鱼的延髓电感侧线波瓣(ELL)中发现了三个平行的结节性电感受器输入分布图。已知每个图中的金字塔形细胞对体内外部电场的幅度调制(AM)的频率有不同的响应。我们使用了体外拟南芥的ELL切片制剂,以比较三个块状图上自发活跃的单个单元的特征。我们的目的是确定每个图中锥体细胞的自发爆发活性是否与体内锥体细胞的已知AM频率选择性相关。 2.记录了ELL的锥体束部分(CMS),中央外侧部分(CLS)和外侧部分(LS)的锥体细胞层的单单位放电。钉间时间间隔(ISI)的随机分析用于识别爆发和非爆发单位活动,并分别分析爆发内和爆发间ISI。四个ISI模式被识别为1)突发,2)常规尖峰,3)不规则尖峰和4)高度不规则尖峰。这项工作主要侧重于跨ELL段的突发单元的特征。 3.在所有三个地图(97个单位中的68个)中都发现了自发的爆燃,其中几个特征在地图上逐渐变化。从CMS到LS,ISI和突发内ISI的变异系数(CV)显着降低,而从CMS到LS,突发周期的CV显着增加。自相关和功率谱密度分析确定了以下列比率振荡振荡的单元:CMS,75%; CLS,4%; LS,8%。 4.各段的峰值突发平均周期显着减少(CMS,2.7 s; CLS,1.2 s; LS,1.1 s),这主要是由于平均突发持续时间(CMS,1.0 s; CLS,0.1 s; LS)缩短了,0.05 s)。在每个图上,每个突发的平均尖峰数量显着下降(CMS,61; CLS,8; LS,8),而每个突发的平均尖峰频率增加(CMS,90 Hz; CLS,130 Hz; LS,178 Hz ),主要是通过增加每个地图中各个单元获得的最大频率来实现。 5. CMS中的突发是非结构化的,因为突发内的ISI是连续独立的,而对于CLS中的许多单元,尤其是LS,连续峰值的序列相关性,突发期间短ISI和长ISI交替出现。 6.这些数据表明,体外CMS,CLS和LS图之间的爆发单位活动特征不同,这意味着跨多个感官图的爆发放电基础因素的调节。因为这些图之间的爆发活动的变化模式与体内锥体细胞AM频率选择性的模式相似,所以振荡放电和爆发放电可能代表了在电定位和电通信过程中将这些细胞调整为传入输入特定频率的细胞机制。

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