Department of Anatomy & Neurobiology, Boston University School of Medicine, Boston, Massachusetts, USA.
Center for Systems Neuroscience, Boston University, Boston, Massachusetts, USA.
J Comp Neurol. 2021 Mar;529(4):885-904. doi: 10.1002/cne.24986. Epub 2020 Aug 13.
The anterior cingulate cortex (ACC) is important for decision-making as it integrates motor plans with affective and contextual limbic information. Disruptions in these networks have been observed in depression, bipolar disorder, and post-traumatic stress disorder. Yet, overlap of limbic and motor connections within subdivisions of the ACC is not well understood. Hence, we administered a combination of retrograde and anterograde tracers into structures important for contextual memories (entorhinal cortex), affective processing (amygdala), and motor planning (dorsal premotor cortex) to assess overlap of labeled projection neurons from (outputs) and axon terminals to (inputs) the ACC of adult rhesus monkeys (Macaca mulatta). Our data show that entorhinal and dorsal premotor cortical (dPMC) connections are segregated across ventral (A25, A24a) and dorsal (A24b,c) subregions of the ACC, while amygdalar connections are more evenly distributed across subregions. Among all areas, the rostral ACC (A32) had the lowest relative density of connections with all three regions. In the ventral ACC, entorhinal and amygdalar connections strongly overlap across all layers, especially in A25. In the dorsal ACC, outputs to dPMC and the amygdala strongly overlap in deep layers. However, dPMC input to the dorsal ACC was densest in deep layers, while amygdalar inputs predominantly localized in upper layers. These connection patterns are consistent with diverse roles of the dorsal ACC in motor evaluation and the ventral ACC in affective and contextual memory. Further, distinct laminar circuits suggest unique interactions within specific ACC compartments that are likely important for the temporal integration of motor and limbic information during flexible goal-directed behavior.
扣带前皮质(ACC)在决策中很重要,因为它将运动计划与情感和上下文边缘信息整合在一起。在抑郁症、双相情感障碍和创伤后应激障碍中,这些网络的中断已经被观察到。然而,ACC 内各亚区的边缘和运动连接的重叠情况尚不清楚。因此,我们将逆行和顺行示踪剂组合应用于与上下文记忆(内嗅皮质)、情感处理(杏仁核)和运动规划(背侧运动前皮质)相关的重要结构,以评估来自(输出)和轴突末端到(输入)成年恒河猴(Macaca mulatta)ACC 的标记投射神经元的重叠。我们的数据表明,内嗅皮质和背侧运动前皮质(dPMC)的连接在 ACC 的腹侧(A25、A24a)和背侧(A24b、c)亚区是分开的,而杏仁核的连接则更均匀地分布在各个亚区。在所有区域中,前扣带皮质(A32)与所有三个区域的连接相对密度最低。在腹侧 ACC 中,内嗅皮质和杏仁核的连接在所有层中都强烈重叠,尤其是在 A25 中。在背侧 ACC 中,dPMC 和杏仁核的输出强烈重叠在深层。然而,dPMC 对背侧 ACC 的输入在深层最密集,而杏仁核的输入主要位于上层。这些连接模式与背侧 ACC 在运动评估中的多种作用以及腹侧 ACC 在情感和上下文记忆中的作用一致。此外,不同的分层电路表明,在特定的 ACC 隔室中存在独特的相互作用,这对于在灵活的目标导向行为中运动和边缘信息的时间整合可能很重要。