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首页> 外文期刊>The Journal of Comparative Neurology >Visually guided injection of identified reticulospinal neurons in zebrafish: A survey of spinal arborization patterns.
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Visually guided injection of identified reticulospinal neurons in zebrafish: A survey of spinal arborization patterns.

机译:斑马鱼视觉识别的网状脊髓神经元的视觉引导注射:脊柱树突模式的调查。

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摘要

We report here the pattern of axonal branching for 11 descending cell types in the larval brainstem; eight of these cell types are individually identified neurons. Large numbers of brainstem neurons were retrogradely labeled in living larvae by injecting Texas-red dextran into caudal spinal cord. Subsequently, in each larva a single identified cell was injected in vivo with Alexa 488 dextran, using fluorescence microscopy to guide the injection pipette to the targeted cell. The filling of cells via pressure pulses revealed distinct and often extensive spinal axon collaterals for the different cell types. Previous fills of the Mauthner cell had revealed short, knob-like collaterals. In contrast, the two segmental homologs of the Mauthner cell, cells MiD2cm and MiD3cm, showed axon collaterals with extensive arbors recurring at regular intervals along nearly the full extent of spinal cord. Furthermore, the collaterals of MiD2cm crossed the midline at frequent intervals, yielding bilateral arbors that ran in the rostral-caudal direction. Other medullary reticulospinal cells, as well as cells of the nucleus of the medial longitudinal fasciculus (nMLF), also exhibited extensive spinal collaterals, although the patterns differed for each cell type. For example, nMLF cells had extensive collaterals in caudal medulla and far-rostral spinal cord, but these collaterals became sparse more caudally. Two cell types (CaD and RoL1) showed arbors projecting ventrally from a dorsally situated stem axon. Additional cell-specific features that seemed likely to be of physiological significance were observed. The rostral-caudal distribution of axon collaterals was of particular interest because of its implications for the descending control of the larva's locomotive repertoire. Because the same individual cell types can be identified from fish to fish, these anatomical observations can be directly linked to data obtained in other kinds of experiments. For example, 9 of the 11 cell types examined here have been shown to be active during escape behaviors. J. Comp. Neurol. 459:186-200, 2003.
机译:我们在这里报告了幼虫脑干中11种降序细胞类型的轴突分支模式。这些细胞类型中有八种是单独识别的神经元。通过将德州红葡聚糖注射到尾脊髓,活幼虫中大量脑干神经元被逆行标记。随后,在每个幼虫中,使用荧光显微镜将注射吸管引导至目标细胞,在体内向单个已鉴定的细胞注射Alexa 488葡聚糖。通过压力脉冲填充的细胞显示出不同细胞类型的独特且通常为广泛的脊髓轴突侧支。 Mauthner细胞的先前填充物显示出短的,类似球形的附属物。相比之下,Mauthner细胞的两个节段同源物,细胞MiD2cm和MiD3cm,显示出轴突侧枝,在整个脊髓的几乎整个范围内均以规则的间隔重复出现大量的乔木。此外,MiD2cm的侧支以频繁的间隔穿过中线,从而产生沿鼻尾方向延伸的双侧乔木。其他髓质网状脊髓细胞以及内侧纵筋膜(nMLF)的细胞也表现出广泛的脊髓侧支,尽管每种细胞类型的模式不同。例如,nMLF细胞在尾髓和远延髓脊髓中具有广泛的侧支,但是这些侧支变得更加稀疏到尾侧。两种细胞类型(CaD和RoL1)显示了从背侧茎轴突向腹侧突出的乔木。观察到了可能具有生理意义的其他细胞特异性特征。轴突侧支的鼻状尾状分布特别令人关注,因为它对幼虫机车曲目的下降控制有影响。由于可以从鱼中识别出相同的个体细胞类型,因此这些解剖学观察结果可以直接与在其他种类的实验中获得的数据联系起来。例如,已显示在此检查的11种细胞类型中的9种在逃逸行为中处于活动状态。 J.比较神经元。 459:186-200,2003。

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