Department of Psychiatry, Otto-von-Guericke University, Magdeburg, Germany.
Hum Brain Mapp. 2012 Nov;33(11):2627-37. doi: 10.1002/hbm.21389. Epub 2011 Sep 20.
Distinct thalamic nuclei, like the mediodorsal (MD) nucleus and the centromedian/parafascicular complex (CM/Pf), are embedded in different basal ganglia-thalamocortical loops, which were shown to integrate cognitive and emotional aspects of human behavior. Despite well described connections on a microscopic scale, derived from tracing studies in animals, little is known about the intrinsic anatomical connections of these nuclei in humans. This lack of knowledge limits not only interpretation of functional imaging studies but also estimation of direct effects of deep brain stimulation which treats diseases as different as epilepsy or major depression. Therefore, non-invasive diffusion tensor imaging (DTI) studies are key to analyzing connectivity patterns and elaborate approaches to close this gap. For our study, we explored the structural connectivity of the MD thalamic nuclei and the CM/Pf complex towards five cortical and six subcortical regions by using a preferential fiber calculation. We found both thalamic nuclei to be preferentially associated to distinct networks: whereas the MD is preferentially connected to prefrontal and limbic cortical regions, the CM is linked to subcortical regions. The anterior insula was the only cortical region associated with the subcortical network of the CM and the cortical network of the MD comprised one subcortical hub, the caudate nucleus, suggesting an integrative role of these two regions. Adding to predescribed anatomical tract tracing connectivities in animal studies, our finding lends support to the existence of similar basal ganglia-thalamocortical circuits in humans and we could show a robust distinction of preferential connectivity for both thalamic nuclei.
不同的丘脑核,如内侧背核(MD)和中央中核/中央旁核复合体(CM/Pf),嵌入在不同的基底节-丘脑皮质回路中,这些回路被证明整合了人类行为的认知和情感方面。尽管在微观尺度上已经有很好的描述,来自于动物追踪研究,但对于这些核在人类中的内在解剖连接知之甚少。这种知识的缺乏不仅限制了对功能成像研究的解释,也限制了对深部脑刺激的直接影响的估计,深部脑刺激治疗的疾病包括癫痫和重度抑郁症等不同疾病。因此,非侵入性扩散张量成像(DTI)研究是分析连接模式的关键,并提出了一些方法来缩小这一差距。在我们的研究中,我们通过使用优先纤维计算,探索了 MD 丘脑核和 CM/Pf 复合体与五个皮质和六个皮质下区域的结构连接。我们发现这两个丘脑核都与特定的网络有优先联系:MD 与前额叶和边缘皮质区域优先连接,而 CM 与皮质下区域连接。前岛叶是唯一与 CM 的皮质下网络和 MD 的皮质网络相关联的皮质区域,皮质网络包含一个皮质下枢纽,尾状核,表明这两个区域具有整合作用。除了动物研究中预先描述的解剖追踪连接性外,我们的发现支持了人类中存在类似的基底节-丘脑皮质回路的假设,并且我们能够显示出这两个核的优先连接的稳健区别。