首页> 外文期刊>The Journal of Comparative Neurology >Properties of spinal motoneurons and interneurons in the adult turtle: provisional classification by cluster analysis.
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Properties of spinal motoneurons and interneurons in the adult turtle: provisional classification by cluster analysis.

机译:成年乌龟中脊髓运动神经元和中间神经元的性质:通过聚类分析的临时分类。

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摘要

The purpose of the present study was to compare, in motoneurons (MNs) vs. interneurons (INs), selected passive, transitional, and active (firing) properties, as recorded in slices of lumbosacral spinal cord (SC) taken from the adult turtle. The cells were provisionally classified on the basis of (1) the presence (in selected INs) or absence (MNs and other INs) of spontaneous discharge, (2) a cluster analysis of selected properties of the nonspontaneously firing cells, (3) a comparison to previous data on turtle MNs and INs, and (4) a qualitative comparison of the results with those reported for other vertebrate species (lamprey, cat). The provisional nomenclature accommodated properties appropriate for solely MNs (Main MN group) vs. nonspontaneously firing INs (Main IN-N) vs. spontaneously firing INs (IN-S) and for neurons with two degrees of intermediacy between the Main MN and the Main IN-N groups (Overlap MN, Overlap MN/IN). Morphological reconstructions of additional cells, which had been injected with biocytin during the electrophysiological tests, were shown to provide clear-cut support for the provisional classification procedure. The values for the measured parameters in the 96 tested cells covered the spectrum reported previously across adult vertebrate species and were robust in measurements made on different SC slices up to 5 days after their removal from the host animal. The interspecies comparisons permitted the predictions that (1) our Main MN and Overlap MN cells would be analogous to two MN types that innervate fast-twitch and slow-twitch skeletomotor muscle fibers, respectively, in the cat, and (2) the MNs in our Overlap MN/IN group probably innervate slow (nontwitch, tonic) muscle fibers whose presence has recently been established in the turtle hindlimb. In summary, the results bring out the utility of the SC slice preparation of the turtle for study of spinal motor mechanisms in adult tetrapod vertebrates, particularly as an adjunct to the in vivo cat, because of the ease with which robust measurements can be made of the active properties of both MNs and INs.
机译:本研究的目的是比较运动神经元(MNs)与中间神经元(INs)的选定被动,过渡和主动(射击)特性,如从成年乌龟的腰s部脊髓(SC)切片中记录的那样。根据(1)自发放电的存在(在选定的IN中)或不存在(MN和其他IN)对细胞进行临时分类,(2)对非自发放电细胞的选定属性进行聚类分析,(3)与先前关于海龟MN和IN的数据进行比较,以及(4)将结果与其他脊椎动物物种(七rey鳗,猫)报道的结果进行定性比较。临时命名法适应于仅适用于MN(主要MN组)与非自发激发的IN(主要IN-N)与自发激发的IN(IN-S)以及适合于主要MN和Main之间具有两个中间度的神经元的属性IN-N组(重叠MN,重叠MN / IN)。已显示在电生理测试过程中已注射生物素的其他细胞的形态重建,为临时分类程序提供了明确的支持。在96个测试细胞中测得的参数值涵盖了以前在成年脊椎动物物种中报道的光谱,并且在将它们从宿主动物中移除后的5天之内,在不同的SC切片上进行的测量都非常可靠。种间比较允许进行以下预测:(1)我们的主要MN和重叠MN细胞将类似于两种MN类型,分别在猫中支配快肌和慢肌骨骼肌的运动肌纤维,以及(2)MN中的MN。我们的MN / IN交叠组可能支配了最近在海龟后肢中存在的慢速(非抽搐,强直性)肌肉纤维。总之,该结果证明了海龟的SC切片制剂可用于研究成年四足动物脊椎动物的脊髓运动机制,特别是作为体内猫的辅助手段,因为可以轻松进行可靠的测量MN和IN的活动特性。

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