Neuroscience Research Unit, Department of Psychology, University of Sheffield Sheffield, UK.
Front Neuroanat. 2010 Sep 22;4. doi: 10.3389/fnana.2010.00132. eCollection 2010.
An important component of the architecture of cortico-basal ganglia connections is the parallel, re-entrant looped projections that originate and return to specific regions of the cerebral cortex. However, such loops are unlikely to have been the first evolutionary example of a closed-loop architecture involving the basal ganglia. A phylogenetically older, series of subcortical loops can be shown to link the basal ganglia with many brainstem sensorimotor structures. While the characteristics of individual components of potential subcortical re-entrant loops have been documented, the full extent to which they represent functionally segregated parallel projecting channels remains to be determined. However, for one midbrain structure, the superior colliculus (SC), anatomical evidence for closed-loop connectivity with the basal ganglia is robust, and can serve as an example against which the loop hypothesis can be evaluated for other subcortical structures. Examination of ascending projections from the SC to the thalamus suggests there may be multiple functionally segregated systems. The SC also provides afferent signals to the other principal input nuclei of the basal ganglia, the dopaminergic neurones in substantia nigra and to the subthalamic nucleus. Recent electrophysiological investigations show that the afferent signals originating in the SC carry important information concerning the onset of biologically significant events to each of the basal ganglia input nuclei. Such signals are widely regarded as crucial for the proposed functions of selection and reinforcement learning with which the basal ganglia have so often been associated.
皮质基底节连接的一个重要组成部分是平行的、再传入的环形投射,它们起源于并返回大脑皮层的特定区域。然而,这样的循环不太可能是涉及基底节的闭环结构的第一个进化范例。可以显示一系列进化上更早的皮质下循环,将基底节与许多脑干感觉运动结构联系起来。虽然已经记录了潜在皮质下再传入回路的各个组成部分的特征,但它们在多大程度上代表功能上分离的平行投射通道仍有待确定。然而,对于中脑结构中的一个,即上丘(SC),与基底节的闭环连接的解剖学证据是可靠的,可以作为一个例子,根据该例子可以评估其他皮质下结构的回路假说。对上丘到丘脑的上行投射的检查表明,可能存在多个功能上分离的系统。SC 还向基底节的其他主要输入核,即黑质中的多巴胺能神经元和丘脑底核,提供传入信号。最近的电生理学研究表明,起源于 SC 的传入信号携带有关每个基底节输入核的生物学重要事件开始的重要信息。这些信号被广泛认为对与基底节经常相关的选择和强化学习的提议功能至关重要。