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The Subcortical Cocktail Problem; Mixed Signals from the Subthalamic Nucleus and Substantia Nigra

机译:皮质下鸡尾酒问题;丘脑底核和黑质的混合信号

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摘要

The subthalamic nucleus and the directly adjacent substantia nigra are small and important structures in the basal ganglia. Functional magnetic resonance imaging studies have shown that the subthalamic nucleus and substantia nigra are selectively involved in response inhibition, conflict processing, and adjusting global and selective response thresholds. However, imaging these nuclei is complex, because they are in such close proximity, they can vary in location, and are very small relative to the resolution of most fMRI sequences. Here, we investigated the consistency in localization of these nuclei in BOLD fMRI studies, comparing reported coordinates with probabilistic atlas maps of young human participants derived from ultra-high resolution 7T MRI scanning. We show that the fMRI signal reported in previous studies is likely not unequivocally arising from the subthalamic nucleus but represents a mixture of subthalamic nucleus, substantia nigra, and surrounding tissue. Using a simulation study, we also tested to what extent spatial smoothing, often used in fMRI preprocessing pipelines, influences the mixture of BOLD signals. We propose concrete steps how to analyze fMRI BOLD data to allow inferences about the functional role of small subcortical nuclei like the subthalamic nucleus and substantia nigra.
机译:丘脑下核和紧邻的黑质是基底神经节中小的重要结构。功能磁共振成像研究表明,丘脑底核和黑质选择性参与反应抑制,冲突处理以及调节整体和选择性反应阈值。但是,对这些原子核成像非常复杂,因为它们非常接近,它们的位置可能不同,并且相对于大多数fMRI序列的分辨率而言很小。在这里,我们调查了BOLD fMRI研究中这些核的定位一致性,将报告的坐标与源自超高分辨率7T MRI扫描的年轻人类参与者的概率图谱图进行了比较。我们显示,先前研究报道的fMRI信号可能并非毫无疑问地源自丘脑下核,而是代表丘脑下核,黑质和周围组织的混合物。通过模拟研究,我们还测试了在fMRI预处理管道中经常使用的空间平滑在多大程度上影响BOLD信号的混合。我们提出了具体的步骤来分析fMRI BOLD数据,以推断出小丘脑下核(如丘脑下核和黑质)的功能。

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