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猫红核脊髓轴突动作电位传播的围产期发育

Perinatal development of action potential propagation in cat rubrospinal axons.

作者信息

Song W J, Okawa K, Kanda M, Murakami F

机构信息

Department of Biophysical Engineering, Faculty of Engineering Science, Osaka University, Japan.

出版信息

J Physiol. 1995 Oct 15;488 ( Pt 2)(Pt 2):419-26. doi: 10.1113/jphysiol.1995.sp020976.

DOI:10.1113/jphysiol.1995.sp020976
PMID:8568680
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1156680/
Abstract
  1. The development of action potential conduction was studied by intracellular recording of antidromic spikes in cat rubrospinal cells. 2. The distance between the C1 and L1 spinal segments increased linearly from 5.6 cm at embryonic day (E) 59 to 9.8 cm at postnatal day (P) 30. 3. The conduction time from the C1 segment to the rubrospinal neuron soma, estimated from antidromic spike latency evoked by stimulation of the C1 segment, decreased rapidly prior to birth and then slowly thereafter. This coincided with a reduction in conduction time variation between cells. 4. The conduction time from the red nucleus to the L1 segment followed a similar time course during development. The conduction time reached the adult value by P30, at which time the spinal cord is only half the adult length. 5. The conduction velocity between the C1 and L1 segments increased monotonically between E59 and P30, from a low of 1 m s-1 to a maximum of 34 m s-1. 6. The rise time of rubrospinal neuron somadendritic spikes followed a developmental time course similar to that for conduction time. 7. Myelination of rubrospinal axons, as judged by the presence of myelinated segment spikes, began to occur prior to E59. 8. These findings suggest that development of action potential propagation in rubrospinal cells can be divided into an early and a late stage: conduction time reaches the adult value during the early stage, i.e. by the first postnatal month, and is maintained during the late stage. We propose that myelination, axon diameter increase and maturation of membrane properties act to reduce conduction time to adult values during the early stage, while a proportional increase in fibre diameter with axonal length results in a constant conduction time during the late stage.
摘要
  1. 通过细胞内记录猫红核脊髓细胞的逆向动作电位,研究了动作电位传导的发育过程。2. C1和L1脊髓节段之间的距离从胚胎第59天(E59)时的5.6厘米线性增加到出生后第30天(P30)时的9.8厘米。3. 根据刺激C1节段诱发的逆向动作电位潜伏期估算,从C1节段到红核脊髓神经元胞体的传导时间在出生前迅速缩短,之后则缓慢缩短。这与细胞间传导时间变异性的降低相吻合。4. 在发育过程中,从红核到L1节段的传导时间遵循类似的时间进程。传导时间在P30时达到成年值,此时脊髓长度仅为成年时的一半。5. 在E59和P30之间,C1和L1节段之间的传导速度单调增加,从最低的1米/秒增加到最高的34米/秒。6. 红核脊髓神经元胞体-树突动作电位的上升时间遵循与传导时间相似的发育时间进程。7. 根据有髓鞘节段动作电位的存在判断,红核脊髓轴突的髓鞘形成在E59之前就已开始。8. 这些发现表明,红核脊髓细胞中动作电位传播的发育可分为早期和晚期:传导时间在早期即出生后的第一个月内达到成年值,并在晚期保持稳定。我们提出,髓鞘形成、轴突直径增加和膜特性成熟在早期作用于将传导时间缩短至成年值,而在晚期,纤维直径随轴突长度成比例增加导致传导时间恒定。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d27a/1156680/777cf919ab55/jphysiol00309-0153-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d27a/1156680/777cf919ab55/jphysiol00309-0153-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d27a/1156680/777cf919ab55/jphysiol00309-0153-a.jpg

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