首页> 外文期刊>Journal of neural transmission >Spinocerebellar ataxias types 2 and 3: degeneration of the pre-cerebellar nuclei isolates the three phylogenetically defined regions of the cerebellum.
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Spinocerebellar ataxias types 2 and 3: degeneration of the pre-cerebellar nuclei isolates the three phylogenetically defined regions of the cerebellum.

机译:2型和3型脊髓小脑共济失调小脑前核的变性分离了小脑的三个系统发育定义的区域。

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The pre-cerebellar nuclei act as a gate for the entire neocortical, brainstem and spinal cord afferent input destined for the cerebellum. Since no pathoanatomical studies of these nuclei had yet been performed in spinocerebellar ataxia type 2 (SCA2) or type 3 (SCA3), we carried out a detailed postmortem study of the pre-cerebellar nuclei in six SCA2 and seven SCA3 patients in order to further characterize the extent of brainstem degeneration in these ataxic disorders. By means of unconventionally thick serial sections through the brainstem stained for lipofuscin pigment and Nissl material, we could show that all of the pre-cerebellar nuclei (red, pontine, arcuate, prepositus hypoglossal, superior vestibular, lateral vestibular, medial vestibular, interstitial vestibular, spinal vestibular, vermiform, lateral reticular, external cuneate, subventricular, paramedian reticular, intercalate, interfascicular hypoglossal, and conterminal nuclei, pontobulbar body, reticulotegmental nucleus of the pons, inferior olive, and nucleus of Roller) are among the targets of both of the degenerative processes underlying SCA2 and SCA3. These novel findings are in contrast to the current neuropathological literature, which assumes that only a subset of pre-cerebellar nuclei in SCA2 and SCA3 may undergo neurodegeneration. Widespread damage to the pre-cerebellar nuclei separates all three phylogenetically and functionally defined regions of the cerebellum, impairs their physiological functions and thus explains the occurrence of gait, stance, limb and truncal ataxia, dysarthria, truncal and postural instability with disequilibrium, impairments of the vestibulo-ocular reaction and optokinetic nystagmus, slowed and saccadic smooth pursuits, dysmetrical horizontal saccades, and gaze-evoked nystagmus during SCA2 and SCA3.
机译:小脑前核可作为通往小脑的整个新皮质,脑干和脊髓传入输入的门。由于尚未在2型小脑共济失调(SCA2)或3型(SCA3)进行这些核的病理解剖学研究,因此我们对6例SCA2和7例SCA3患者的小脑前核进行了详细的死后研究。表征这些共济失调中脑干变性的程度。通过对脑干进行非常规的厚连续切片,对脂褐素色素和Nissl物质进行染色,我们可以显示出所有小脑前核(红色,桥脑,弓形,垂体前舌下,上前庭,外侧前庭,内侧前庭,间质前庭,脊柱前庭,ver状,网状外侧,楔形外,脑室下,网状旁中层,插层,束丛间舌下,及终末核,桥脑小体,网状视网膜核,罗勒下橄榄和罗勒核均在其中SCA2和SCA3的退化过程。这些新颖的发现与目前的神经病理学文献相反,后者认为SCA2和SCA3中只有小脑前核的一个子集可能发生神经变性。对小脑前核的广泛损害将小脑的所有三个系统发育和功能区分开,损害了它们的生理功能,从而解释了步态,姿势,肢体和躯干共济失调,构音障碍,躯干和姿势不稳,不平衡,肢体障碍的发生在SCA2和SCA3期间,前庭眼反应和视动性眼球震颤,减慢的和顺流的平稳追踪,不对称的水平扫视和凝视诱发的眼球震颤。

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