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外周轴突切断术会导致神经丝减少、萎缩、脱髓鞘以及薄束纤维和神经根的变性。

Peripheral axotomy induces neurofilament decrease, atrophy, demyelination and degeneration of root and fasciculus gracilis fibers.

作者信息

Dyck P J, Lais A, Karnes J, Sparks M, Dyck P J

出版信息

Brain Res. 1985 Aug 5;340(1):19-36. doi: 10.1016/0006-8993(85)90771-1.

DOI:10.1016/0006-8993(85)90771-1
PMID:4040789
Abstract

We have recently shown that peripheral axotomy by hindlimb amputation in adult cats sequentially results in neurofilament and microtubule decrease and axonal atrophy, myelin wrinkling, myelin remodeling (de- and remyelination), more atrophy and axonal degeneration in proximal sciatic and L7 segmental nerve fibers. The neuropathologic, morphometric and teased fiber alterations in the myelinated fibers (MF) of roots and sampled levels of fasciculus gracilis in groups of adult cats 24 months after hindlimb amputation have now been studied. We found: a severe decrease of neurofilaments, axonal atrophy, myelin wrinkling, de- and remyelination and axonal loss in posterior root axons; that these morphologic abnormalities extended up the fasciculus gracilis in the appropriate territories established from degenerative studies; that the retrograde effect was less severe in ventral root fibers, although atrophy and sprouting were demonstrated here, and that the cellular sequence of retrograde atrophic degeneration of ascending axons was similar to that observed in proximal stump axons. These findings confirm that primary afferent neurons are more vulnerable to axotomy than lower motor neurons and may provide an additional explanation for the poorer functional restoration of sensory than of motor deficit after root compression and in delayed nerve reconnection. Our observations also have important implications for interpretation of neuropathologic alterations in roots and fasciculus gracilis, since the observed features may be secondary to axotomy of peripheral nerve fibers induced by disease and not evidence of a primary derangement.

摘要

我们最近发现,成年猫后肢截肢造成的外周轴突切断会依次导致神经丝和微管减少、轴突萎缩、髓鞘起皱、髓鞘重塑(脱髓鞘和再髓鞘化),以及坐骨神经近端和L7节段神经纤维出现更多萎缩和轴突退变。现在,我们研究了成年猫后肢截肢24个月后,其神经根有髓纤维(MF)以及薄束样本水平的神经病理学、形态学和 teased 纤维改变。我们发现:后根轴突中神经丝严重减少、轴突萎缩、髓鞘起皱、脱髓鞘和再髓鞘化以及轴突丢失;这些形态学异常在退变研究确定的相应区域向上延伸至薄束;虽然腹根纤维也出现了萎缩和发芽,但逆行效应较轻,并且上行轴突逆行性萎缩退变的细胞序列与近端残端轴突中观察到的相似。这些发现证实,初级传入神经元比下运动神经元更容易受到轴突切断的影响,并且可能为神经根受压和延迟神经再连接后感觉功能恢复比运动功能恢复差提供额外的解释。我们的观察结果对于解释神经根和薄束中的神经病理学改变也具有重要意义,因为观察到的特征可能是疾病引起的外周神经纤维轴突切断的继发结果,而不是原发性紊乱的证据。

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Peripheral axotomy induces neurofilament decrease, atrophy, demyelination and degeneration of root and fasciculus gracilis fibers.外周轴突切断术会导致神经丝减少、萎缩、脱髓鞘以及薄束纤维和神经根的变性。
Brain Res. 1985 Aug 5;340(1):19-36. doi: 10.1016/0006-8993(85)90771-1.
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[Changes in the femoral nerve and medial articular nerve after medial arthrotomy and replacement of the anterior cruciate ligament].
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