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[基底神经节的卫星系统——解剖位置、临床相关性]

[Satellite systems of the basal ganglia--anatomic position, clinical relevance].

作者信息

Pelzer E A, Hintzen A, Timmermann L, Tittgemeyer M

机构信息

Kortikale Netzwerke, Max-Planck-Institut für neurologische Forschung, Köln.

Klinik und Poliklinik für Neurologie, Universitätsklinik Köln.

出版信息

Fortschr Neurol Psychiatr. 2014 Jun;82(6):323-9. doi: 10.1055/s-0034-1366372. Epub 2014 Jun 5.

Abstract

The interaction of basal ganglia and other brain regions is more complex regarding anatomic and functional perspectives than previously assumed. Hence, the classical basal ganglia model has to be extended to at least four satellite systems modulating motor-executive, associative and limbic-motivational brain regions: (i) an indirect projection system, (ii) a striato-nigro-striatal loop, (iii) a "hyperdirect" projection system as well as additional projections to the subthalamic nucleus and (iv) multisynaptic connections from the cerebellum exerting influence on the indirect projection system. The investigation of these satellite systems would be invaluable to foster our understanding of basal ganglia circuitries and may yield a better appreciation of largely opaque symptoms like resting tremor in Parkinson's disease; analysis of these anatomic pathways and functional implications may facilitate explanatory model approaches to side effects due to dopaminergic therapy and deep brain stimulation in humans and thereby offer the possibility for new therapeutic approaches in movement disorders.

摘要

从解剖学和功能学角度来看,基底神经节与其他脑区之间的相互作用比之前设想的更为复杂。因此,经典的基底神经节模型必须扩展至至少四个卫星系统,这些系统调节运动执行、联合以及边缘-动机脑区:(i)间接投射系统,(ii)纹状体-黑质-纹状体环路,(iii)“超直接”投射系统以及向丘脑底核的额外投射,以及(iv)来自小脑的多突触连接,其对间接投射系统产生影响。对这些卫星系统的研究对于增进我们对基底神经节神经回路的理解具有极高价值,并且可能会让我们更好地认识诸如帕金森病静止性震颤等在很大程度上尚不明确的症状;对这些解剖学通路及其功能意义的分析可能有助于解释人类多巴胺能治疗和深部脑刺激所导致的副作用的模型方法,从而为运动障碍的新治疗方法提供可能性。

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