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The morphology and electrical geometry of rat jaw-elevator motoneurones.

机译:大鼠下颌电梯运动神经元的形态和电几何。

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摘要

1. The aim of this work was to quantify both the morphology and electrical geometry of the dendritic trees of jaw-elevator motoneurones. To do this we have made intracellular recordings from identified motoneurones in anaesthetized rats, determined their membrane properties and then filled them with horseradish peroxidase by ionophoretic ejection. Four neurones were subsequently fully reconstructed and the lengths and diameters of all the dendritic segments measured. 2. The mean soma diameter was 25 microns and values of mean dendritic length for individual cells ranged from 514 to 773 microns. Dendrites branched on average 9.1 times to produce 10.2 end-terminations. Dendritic segments could be represented as constant diameter cylinders between branch points. Values of dendritic surface area ranged from 1.08 to 2.52 x 10(5) microns 2 and values of dendritic to total surface area from 98 to 99%. 3. At branch points the ratio of the summed diameters of the daughter dendrites to the 3/2 power against the parent dendrite to the 3/2 power was exactly 1.0. Therefore the individual branch points could be collapsed into a single cylinder. Furthermore for an individual dendrite the diameter of this cylinder remained constant with increasing electrical distance from the soma. Thus individual dendrites can be represented electrically as cylinders of constant diameter. 4. However dendrites of a given neurone terminated at different electrical distances from the soma. The equivalent-cylinder diameter of the combined dendritic tree remained constant over the proximal half and then showed a pronounced reduction over the distal half. The reduction in equivalent diameter could be ascribed to the termination of dendrites at differing electrical distances from the soma. Therefore the complete dendritic tree of these motoneurones is best represented as a cylinder over the proximal half of their electrical length but as a cone over the distal half.
机译:1.这项工作的目的是量化颚式升降机运动神经元树突树的形态和电几何学。为此,我们在麻醉的大鼠中从鉴定出的运动神经元进行了细胞内记录,确定了它们的膜特性,然后通过离子喷出将它们充满了辣根过氧化物酶。随后完全重建四个神经元,并测量所有树突节的长度和直径。 2.平均体细胞直径为25微米,单个细胞的平均树突长度值在514到773微米之间。树突平均分支9.1次以产生10.2末端。树突段可以表示为分支点之间的直径恒定的圆柱体。树突表面积的值在1.08至2.52×10(5)微米2的范围内,而树突表面积占总表面积的值在98至99%的范围内。 3.在分支点处,子树状体的总直径与3/2幂的比值与母树突状体与3/2幂的比值恰好为1.0。因此,各个分支点可以折叠成一个圆柱体。此外,对于单个枝晶,随着与体之间的电气距离增加,该圆柱体的直径保持恒定。因此,单个树突可以用电表示为恒定直径的圆柱体。 4.然而,给定神经元的树突终止于距躯干的不同电距离。组合树状树的等效圆柱直径在近端一半保持不变,然后在远端一半明显减小。当量直径的减小可以归因于与体的不同电距离处的树枝状结晶的终止。因此,这些运动神经元的完整树突状树最好表示为在其电气长度的近端一半上的圆柱体,但在远端一半上则为圆锥形。

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