Parent A, Hazrati L N
Centre de recherche en neurobiologie, Hôpital de l'Enfant-Jésus, Québec, QC, Canada.
Brain Res Brain Res Rev. 1995 Jan;20(1):128-54. doi: 10.1016/0165-0173(94)00008-d.
The subthalamic nucleus and the external pallidum (GPe) are classically viewed as part of the so-called indirect pathway, which acts in concert with the direct pathway. The direct and indirect pathways form the conceptual framework of the anatomical and functional organization of the basal ganglia. A review of recent data regarding the connections of the subthalamic nucleus and the GPe has revealed a lack of firm anatomical support for the existence of the indirect pathway. However, newly recognized projections of the subthalamic nucleus and the GPe place these structures on various novel routes that change the conceptual architecture of the basal ganglia circuitry. These new findings force us to modify our view of the functional identity of the subthalamic nucleus and the GPe. In this new perspective, the GPe stands as an additional integrative station, together with the striatum and the internal pallidum and substantia nigra pars reticulata (GPi/SNr), along the main steam of information processing within the basal ganglia circuitry. Because of its crucial position between the input and output stations of the basal ganglia, the GPe can markedly influence the neuronal computation that occurs at GPi/SNr levels. The subthalamic nucleus can still be regarded as a 'control structure' lying alongside the main stream of information processing. However, because of its widespread efferent projections, the subthalamic nucleus exerts its driving effect on most components of the basal ganglia. Its action is mediated not only by the indirect pathway, but by a multitude of mono- and polysynaptic projections that ultimately reach the basal ganglia output cells.
传统上,丘脑底核和外侧苍白球(GPe)被视为所谓间接通路的一部分,该通路与直接通路协同作用。直接通路和间接通路构成了基底神经节解剖学和功能组织的概念框架。对有关丘脑底核和GPe连接的最新数据进行回顾后发现,间接通路的存在缺乏确凿的解剖学支持。然而,丘脑底核和GPe新发现的投射将这些结构置于各种新颖的通路上,改变了基底神经节回路的概念架构。这些新发现迫使我们修改对丘脑底核和GPe功能特性的看法。从这个新角度来看,GPe与纹状体、内侧苍白球和黑质网状部(GPi/SNr)一样,是基底神经节回路信息处理主流程中的一个额外整合站。由于其在基底神经节输入和输出站之间的关键位置,GPe可以显著影响在GPi/SNr水平发生的神经元计算。丘脑底核仍可被视为位于信息处理主流旁边的“控制结构”。然而,由于其广泛的传出投射,丘脑底核对基底神经节的大多数组件都有驱动作用。其作用不仅通过间接通路介导,还通过最终到达基底神经节输出细胞的多种单突触和多突触投射介导。