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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The organization of prefrontal-subthalamic inputs in primates provides an anatomical substrate for both functional specificity and integration: Implications for basal ganglia models and deep brain stimulation
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The organization of prefrontal-subthalamic inputs in primates provides an anatomical substrate for both functional specificity and integration: Implications for basal ganglia models and deep brain stimulation

机译:灵长类中前额丘脑下丘脑输入的组织为功能特异性和整合提供了解剖学基础:对基底神经节模型和深部脑刺激的影响

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The identification of a hyperdirect cortico-subthalamic nucleus connection highlighted the important role of the subthalamic nucleus (STN) in regulating behavior. However, this pathway was shown primarily from motor areas. Hyperdirect pathways associated with cognitive and motivational cortical regions are particularly relevant given recent data from deep brain stimulation, both for neurologic and psychiatric disorders. Our experiments were designed to demonstrate the existence and organization of prefrontal-STN projections, help delineate the "limbic" STN, and determine whether convergence between cortico-STN fibers from functionally diverse cortical areas exists in the STN. We injected anterograde tracers in the ventromedial prefrontal, orbitofrontal, anterior cingulate, and dorsal prefrontal cortices of Macaca nemestrina and Macaca fascicularis to analyze the organization of terminals and passing fibers in the STN. Results show a topographically organized prefrontal hyperdirect pathway in primates. Limbic areas project to the medial tip of the nucleus, straddling its border and extending into the lateral hypothalamus. Associative areas project to the medial half, motor areas to the lateral half. Limbic projections terminated primarily rostrally and motor projections more caudally. The extension of limbic projections into the lateral hypothalamus, suggests that this region be included in the STN. A high degree of convergence exists between projections from functionally diverse cortical areas, creating potentially important interfaces between terminal fields. Taken together, the results provide an anatomical substrate to extend the role of the hyperdirect pathway in models of basal ganglia function, and new keys for understanding deep brain stimulation effects on cognitive and motivational aspects of behavior. ? 2013 the authors.
机译:超直接的皮质-丘脑底核连接的鉴定突出了丘脑底核(STN)在调节行为中的重要作用。但是,该路径主要是从运动区域显示的。鉴于最近来自深部神经刺激的数据(涉及神经系统疾病和精神疾病),与认知和动机皮质区域相关的超直接途径尤其相关。我们的实验旨在证明前额叶STN投影的存在和组织,帮助描绘“边缘” STN,并确定STN中是否存在功能多样的皮质区域的皮质STN纤维之间的会聚。我们在Macaca nemestrina和Macaca fascicularis的腹侧前额叶,眶额叶,前扣带回和前额叶背皮质中注入顺行示踪剂,以分析STN中末端和通过纤维的组织。结果显示在灵长类动物中地形组织的前额叶超直接途径。边缘区域突出到细胞核的内侧尖端,横跨其边界并延伸至下丘脑外侧。关联区域投射到内侧一半,运动区域投射到外侧一半。边缘投射主要终止于结节,运动投射更尾端终止。边缘突起伸入下丘脑外侧,表明该区域包括在STN中。功能不同的皮质区域的投影之间存在高度的融合,从而在终端场之间创建了潜在的重要接口。两者合计,结果提供了一个解剖底物,以扩展超直接通路在基底神经节功能模型中的作用,并为理解深部脑刺激对行为的认知和动机方面提供了新的关键。 ? 2013作者。

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