首页> 美国卫生研究院文献>The Journal of Neuroscience >Rules Ventral Prefrontal Cortical Axons Use to Reach Their Targets: Implications for Diffusion Tensor Imaging Tractography and Deep Brain Stimulation for Psychiatric Illness
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Rules Ventral Prefrontal Cortical Axons Use to Reach Their Targets: Implications for Diffusion Tensor Imaging Tractography and Deep Brain Stimulation for Psychiatric Illness

机译:规则腹前额叶皮层轴突用来达到目标​​:扩散张量成像术和深部脑刺激对精神疾病的影响

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摘要

The ventral prefrontal cortex (vPFC) is involved in reinforcement-based learning and is associated with depression, obsessive-compulsive disorder, and addiction. Neuroimaging is increasingly used to develop models of vPFC connections, to examine white matter (WM) integrity, and to target surgical interventions, including deep brain stimulation. We used primate (Macaca nemestrina/Macaca fascicularis) tracing studies and 3D reconstructions of WM tracts to delineate the rules vPFC projections follow to reach their targets. vPFC efferent axons travel through the uncinate fasciculus, connecting different vPFC regions and linking different functional regions. The uncinate fasciculus also is a conduit for vPFC fibers to reach other cortical bundles. Fibers in the internal capsule are organized according to destination. Thalamic fibers from each vPFC region travel dorsal to their brainstem fibers. The results show regional differences in the trajectories of fibers from different vPFC areas. Overall, the medial/lateral vPFC position dictates the route that fibers take to enter major WM tracts, as well as the position within specific tracts: axons from medial vPFC regions travel ventral to those from more lateral areas. This arrangement, coupled with dorsal/ventral organization of thalamic/brainstem fibers through the internal capsule, results in a complex mingling of thalamic and brainstem axons from different vPFC areas. Together, these data provide the foundation for dividing vPFC WM bundles into functional components and for predicting what is likely to be carried at different points through each bundle. These results also help determine the specific connections that are likely to be captured at different neurosurgical targets.
机译:腹前额叶皮层(vPFC)参与基于增强的学习,并与抑郁症,强迫症和成瘾有关。神经影像越来越多地用于建立vPFC连接的模型,检查白质(WM)完整性以及靶向包括深部脑刺激在内的外科手术。我们使用灵长类动物(Macaca nemestrina / Macaca fascicularis)追踪研究和WM区域的3D重建来描绘vPFC投影达到目标所遵循的规则。 vPFC传出的轴突穿过束状的束带,连接不同的vPFC区域并链接不同的功能区域。束状的束带也是vPFC纤维到达其他皮质束的导管。内胆中的纤维根据目的地进行组织。来自每个vPFC区域的丘脑纤维背向其脑干纤维。结果显示了来自不同vPFC区域的纤维轨迹的区域差异。总体而言,内侧/外侧vPFC的位置决定了纤维进入主要WM道的路径以及特定道内的位置:内侧vPFC区域的轴突向腹侧的轴突行进。这种安排,加上丘脑/脑干纤维通过内囊的背/腹组织,导致了来自不同vPFC区域的丘脑和脑干轴突的复杂混合。这些数据共同为将vPFC WM捆绑包划分为功能组件以及预测在每个捆绑包的不同点可能携带的物品提供了基础。这些结果还有助于确定可能在不同的神经外科目标处捕获的特定连接。

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