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胎羊中从脑干到脊髓的下行投射的发育

The development of descending projections from the brainstem to the spinal cord in the fetal sheep.

作者信息

Stockx Elaine M, Anderson Colin R, Murphy Susan M, Cooke Ian R C, Berger Philip J

机构信息

Ritchie Centre for Baby Health Research, Monash Institute of Medical Research, Monash University, Clayton, Victoria, Australia.

出版信息

BMC Neurosci. 2007 Jun 18;8:40. doi: 10.1186/1471-2202-8-40.

Abstract

BACKGROUND

Although the fetal sheep is a favoured model for studying the ontogeny of physiological control systems, there are no descriptions of the timing of arrival of the projections of supraspinal origin that regulate somatic and visceral function. In the early development of birds and mammals, spontaneous motor activity is generated within spinal circuits, but as development proceeds, a distinct change occurs in spontaneous motor patterns that is dependent on the presence of intact, descending inputs to the spinal cord. In the fetal sheep, this change occurs at approximately 65 days gestation (G65), so we therefore hypothesised that spinally-projecting axons from the neurons responsible for transforming fetal behaviour must arrive at the spinal cord level shortly before G65. Accordingly we aimed to identify the brainstem neurons that send projections to the spinal cord in the mature sheep fetus at G140 (term = G147) with retrograde tracing, and thus to establish whether any projections from the brainstem were absent from the spinal cord at G55, an age prior to the marked change in fetal motor activity has occurred.

RESULTS

At G140, CTB labelled cells were found within and around nuclei in the reticular formation of the medulla and pons, within the vestibular nucleus, raphe complex, red nucleus, and the nucleus of the solitary tract. This pattern of labelling is similar to that previously reported in other species. The distribution of CTB labelled neurons in the G55 fetus was similar to that of the G140 fetus.

CONCLUSION

The brainstem nuclei that contain neurons which project axons to the spinal cord in the fetal sheep are the same as in other mammalian species. All projections present in the mature fetus at G140 have already arrived at the spinal cord by approximately one third of the way through gestation. The demonstration that the neurons responsible for transforming fetal behaviour in early ontogeny have already reached the spinal cord by G55, an age well before the change in motor behaviour occurs, suggests that the projections do not become fully functional until well after their arrival at the spinal cord.

摘要

背景

尽管胎羊是研究生理控制系统个体发育的常用模型,但尚无关于调节躯体和内脏功能的脊髓上起源投射到达时间的描述。在鸟类和哺乳动物的早期发育中,脊髓回路会产生自发运动活动,但随着发育的进行,自发运动模式会发生明显变化,这种变化依赖于完整的脊髓下行输入。在胎羊中,这种变化发生在妊娠约65天(G65)时,因此我们推测,负责转变胎儿行为的神经元发出的脊髓投射轴突必须在G65前不久到达脊髓水平。因此,我们旨在通过逆行追踪确定在G140(足月=G147)的成熟胎羊中向脊髓发送投射的脑干神经元,从而确定在G55时脊髓是否不存在来自脑干的任何投射,G55是胎儿运动活动发生明显变化之前的一个年龄。

结果

在G140时,在延髓和脑桥网状结构的核内及周围、前庭核、中缝复合体、红核和孤束核中发现了CTB标记的细胞。这种标记模式与先前在其他物种中报道的相似。G55胎儿中CTB标记神经元的分布与G140胎儿相似。

结论

胎羊中含有向脊髓投射轴突的神经元的脑干核与其他哺乳动物物种相同。G140时成熟胎儿中存在的所有投射在妊娠约三分之一时已经到达脊髓。有证据表明,在个体发育早期负责转变胎儿行为的神经元在G55时已经到达脊髓,G55这个年龄远在运动行为发生变化之前,这表明这些投射在到达脊髓后很久才完全发挥功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6a2/1919385/4ac66d53d0c2/1471-2202-8-40-1.jpg

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