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首页> 外文期刊>The European Journal of Neuroscience >Multisynaptic projections from the ventrolateral prefrontal cortex to the dorsal premotor cortex in macaques - anatomical substrate for conditional visuomotor behavior
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Multisynaptic projections from the ventrolateral prefrontal cortex to the dorsal premotor cortex in macaques - anatomical substrate for conditional visuomotor behavior

机译:猕猴腹侧前额叶皮层至背运动前皮层的多突触投射-有条件的运动行为的解剖学基质

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摘要

Lines of evidence indicate that both the ventrolateral prefrontal cortex (vlPFC) (areas 45/12) and dorsal premotor cortex (PMd) (rostral F2 in area 6) are crucially involved in conditional visuomotor behavior, in which it is required to determine an action based on an associated visual object. However, virtually no direct projections appear to exist between the vlPFC and PMd. In the present study, to elucidate possible multisynaptic networks linking the vlPFC to the PMd, we performed a series of neuroanatomical tract-tracing experiments in macaque monkeys. First, we identified cortical areas that send projection fibers directly to the PMd by injecting Fast Blue into the PMd. Considerable retrograde labeling occurred in the dorsal prefrontal cortex (dPFC) (areas 46d/9/8B/8Ad), dorsomedial motor cortex (dmMC) (F7 and presupplementary motor area), rostral cingulate motor area, and ventral premotor cortex (F5 and area 44), whereas the vlPFC was virtually devoid of neuronal labeling. Second, we injected the rabies virus, a retrograde transneuronal tracer, into the PMd. At 3days after the rabies injections, second-order neurons were labeled in the vlPFC (mainly area 45), indicating that the vlPFC disynaptically projects to the PMd. Finally, to determine areas that connect the vlPFC to the PMd indirectly, we carried out an anterograde/retrograde dual-labeling experiment in single monkeys. By examining the distribution of axon terminals labeled from the vlPFC and cell bodies labeled from the PMd, we found overlapping labels in the dPFC and dmMC. These results indicate that the vlPFC outflow is directed toward the PMd in a multisynaptic fashion through the dPFC and/or dmMC.
机译:证据表明,腹侧前额叶皮层(vlPFC)(区域45/12)和背运动前皮层(PMd)(区域6中的前额F2)都与条件性视运动行为至关重要,在此过程中需要确定动作基于关联的视觉对象。但是,实际上在vlPFC和PMd之间似乎没有直接的预测。在本研究中,为阐明将vlPFC连接到PMd的可能的多突触网络,我们在猕猴中进行了一系列神经解剖学道追踪实验。首先,我们通过将固色蓝注入PMd来确定将投射纤维直接发送到PMd的皮质区域。在背前额叶皮层(dPFC)(区域46d / 9 / 8B / 8Ad),背侧运动皮层(dmMC)(F7和补充运动区域),延髓带状扣带运动区域和腹侧运动前皮层(F5和区域)出现大量逆行标记44),而vlPFC实际上没有神经元标记。其次,我们将狂犬病毒(一种逆行的跨神经示踪剂)注射到PMd中。狂犬病注射后第3天,在vlPFC(主要是区域45)中标记了二级神经元,表明vlPFC不能突触地突出到PMd。最后,为了确定将vlPFC间接连接到PMd的区域,我们在单只猴子中进行了顺行/逆行双重标记实验。通过检查从vlPFC标记的轴突末端和从PMd标记的细胞体的分布,我们在dPFC和dmMC中发现了重叠的标记。这些结果表明,v1PFC流出通过dPFC和/或dmMC以多突触的方式被引向PMd。

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