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猫单侧半月节后根切断术导致对侧三叉神经脊束核变性:一项超微结构研究。

Unilateral retrogasserian rhizotomy causes contralateral degeneration in spinal trigeminal nuclei of cats: an ultrastructural study.

作者信息

Westrum L E, Henry M A

机构信息

Department of Neurological Surgery, University of Washington, Seattle 98195.

出版信息

Exp Brain Res. 1993;93(1):28-36. doi: 10.1007/BF00227777.

Abstract

We are studying the response to injury within the brainstem trigeminal nucleus following trigeminal nerve lesions. We have previously shown with light microscopy and reduced silver stains that unilateral retrogasserian rhizotomy results not only in massive degeneration throughout the ipsilateral spinal trigeminal nucleus; in addition, degeneration is seen in a ventral position at the periobex region (involving caudal pars interpolaris and rostral pars caudalis) in the contralateral spinal trigeminal nucleus. In the present study, we have used electron microscopy to identify the source of the degenerating elements seen bilaterally after unilateral retrogasserian rhizotomy in eight adult felines with survival times ranging from 3 to 20 days. At short survival times (3-7 days) degenerating terminals with round synaptic vesicles (R terminals) and type 1, asymmetric contacts predominate bilaterally, while fewer degenerating terminals with flattened synaptic vesicles (F terminals) and type 2, symmetric contacts are seen. At longer survival times more F terminal degeneration is seen, especially on the contralateral side. Postsynaptic sites and dendrites show minimal alterations. These findings suggest that the degenerating R terminals seen on the contralateral side originate from primary afferents while the degenerating F terminals seen on the contralateral side originate from intrinsic sources involving a crossed internuclear pathway. In addition, the finding of degenerating F terminals may represent a novel form of selective transynaptic change of intrinsic neurons, associated with minimal dendritic or somatic alterations.

摘要

我们正在研究三叉神经损伤后脑干三叉神经核内的损伤反应。我们之前通过光学显微镜和还原银染色显示,单侧半月节后根切断术不仅会导致同侧脊髓三叉神经核广泛变性;此外,在对侧脊髓三叉神经核的围髓帆区域腹侧位置(涉及尾侧极间部和头侧尾侧部)也可见变性。在本研究中,我们使用电子显微镜来确定8只成年猫在单侧半月节后根切断术后双侧出现的变性成分的来源,这些猫的存活时间为3至20天。在短存活时间(3 - 7天)时,双侧以具有圆形突触小泡的变性终末(R终末)和1型不对称接触为主,而具有扁平突触小泡的变性终末(F终末)和2型对称接触较少见。在较长存活时间时,可见更多F终末变性,尤其是在对侧。突触后位点和树突显示出最小的改变。这些发现表明,对侧所见的变性R终末起源于初级传入纤维,而对侧所见的变性F终末起源于涉及交叉核间通路的内在来源。此外,变性F终末的发现可能代表了一种内在神经元选择性跨突触变化的新形式,与最小的树突或体细胞改变相关。

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