The afferent visual pathway: designing a structural-functional paradigm of multiple sclerosis.

ISRN Neurology Pub Date : 2013-11-06 eCollection Date: 2013-01-01 DOI:10.1155/2013/134858
Fiona Costello
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Abstract

Multiple sclerosis (MS) is a disease of the central nervous system (CNS) believed to arise from a dysfunctional immune-mediated response in a genetically susceptible host. The actual cause of MS is not known, and there is ongoing debate about whether this CNS disorder is predominantly an inflammatory versus a degenerative condition. The afferent visual pathway (AVP) is frequently involved in MS, such that one in every five individuals affected presents with acute optic neuritis (ON). As a functionally eloquent system, the AVP is amenable to interrogation with highly reliable and reproducible tests that can be used to define a structural-functional paradigm of CNS injury. The AVP has numerous unique advantages as a clinical model of MS. In this review, the parameters and merits of the AVP model are highlighted. Moreover, the roles the AVP model may play in elucidating mechanisms of brain injury and repair in MS are described.

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传入视觉通路:设计多发性硬化症的结构-功能范例。
多发性硬化症(MS)是一种中枢神经系统(CNS)疾病,据信是由易感基因宿主的免疫介导反应功能失调引起的。多发性硬化症的真正病因尚不清楚,关于这种中枢神经系统疾病主要是炎症还是退行性病变的争论也一直存在。多发性硬化症常累及传入视觉通路(AVP),因此每五名患者中就有一人出现急性视神经炎(ON)。视传入神经通路是一个功能强大的系统,可以通过高度可靠和可重复的测试对其进行检查,从而确定中枢神经系统损伤的结构-功能范式。作为多发性硬化症的临床模型,AVP 具有许多独特的优势。本综述将重点介绍 AVP 模型的参数和优点。此外,还介绍了 AVP 模型在阐明多发性硬化症脑损伤和修复机制方面可能发挥的作用。
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