Giossi Cristina, Rubin Jonathan E, Gittis Aryn, Verstynen Timothy, Vich Catalina
Departament de Matemàtiques i Informàtica, Universitat de les Illes Balears, Palma, Spain.
Institute of Applied Computing and Community Code, Palma, Spain.
ArXiv. 2023 Dec 27:arXiv:2312.14267v2.
For decades the external globus pallidus (GPe) has been viewed as a passive way-station in the indirect pathway of the cortico-basal ganglia-thalamic (CBGT) circuit, sandwiched between striatal inputs and basal ganglia outputs. According to this model, one-way descending striatal signals in the indirect pathway amplify the suppression of downstream thalamic nuclei by inhibiting GPe activity. Here we revisit this assumption, in light of new and emerging work on the cellular complexity, connectivity, and functional role of the GPe in behavior. We show how, according to this new circuit-level logic, the GPe is ideally positioned for relaying ascending and descending control signals within the basal ganglia. Focusing on the problem of inhibitory control, we illustrate how this bidirectional flow of information allows for the integration of reactive and proactive control mechanisms during action selection. Taken together, this new evidence points to the GPe as being a central hub in the CBGT circuit, participating in bidirectional information flow and linking multifaceted control signals to regulate behavior.
几十年来,外侧苍白球(GPe)一直被视为皮质-基底神经节-丘脑(CBGT)回路间接通路中的一个被动中转站,夹在纹状体输入和基底神经节输出之间。根据这个模型,间接通路中单向下行的纹状体信号通过抑制GPe活动来增强对下游丘脑核团的抑制作用。鉴于关于GPe在行为中的细胞复杂性、连接性和功能作用的新出现的研究工作,我们重新审视这一假设。我们展示了根据这种新的回路层面逻辑,GPe如何在基底神经节内传递上行和下行控制信号方面处于理想位置。聚焦于抑制控制问题,我们说明了这种双向信息流如何在动作选择过程中实现反应性和主动性控制机制的整合。综上所述,这些新证据表明GPe是CBGT回路的一个核心枢纽,参与双向信息流,并连接多方面的控制信号以调节行为。