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Triangulating a Cognitive Control Network Using Diffusion-Weighted Magnetic Resonance Imaging (MRI) and Functional MRI

机译:使用扩散加权磁共振成像(MRI)和功能性MRI对认知控制网络进行三角测量

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The ability to stop motor responses depends critically on the right inferior frontal cortex (IFC) and also engages a midbrain region consistent with the subthalamic nucleus (STN). Here we used diffusion-weighted imaging (DWI) tractography to show that the IFC and the STN region are connected via a white matter tract, which could underlie a “hyperdirect” pathway for basal ganglia control. Using a novel method of “triangulation” analysis of tractography data, we also found that both the IFC and the STN region are connected with the presupplementary motor area (preSMA). We hypothesized that the preSMA could play a conflict detection/resolution role within a network between the preSMA, the IFC, and the STN region. A second experiment tested this idea with functional magnetic resonance imaging (fMRI) using a conditional stop-signal paradigm, enabling examination of behavioral and neural signatures of conflict-induced slowing. The preSMA, IFC, and STN region were significantly activated the greater the conflict-induced slowing. Activation corresponded strongly with spatial foci predicted by the DWI tract analysis, as well as with foci activated by complete response inhibition. The results illustrate how tractography can reveal connections that are verifiable with fMRI. The results also demonstrate a three-way functional–anatomical network in the right hemisphere that could either brake or completely stop responses.
机译:停止运动反应的能力主要取决于右下额叶皮层(IFC),并且还与丘脑下核(STN)吻合。在这里,我们使用弥散加权成像(DWI)显像,以显示IFC和STN区域通过白质束连接,这可能是基底节控制的“超直接”途径的基础。使用一种新颖的“三角测量法”对人体影像学数据进行分析的方法,我们还发现IFC和STN区域均与辅助运动区(preSMA)相连。我们假设preSMA可能在preSMA,IFC和STN区域之间的网络内扮演冲突检测/解决角色。第二个实验使用条件性停止信号范例,通过功能磁共振成像(fMRI)测试了这个想法,从而能够检查冲突引起的减速的行为和神经信号。冲突引起的减慢越大,preSMA,IFC和STN区域就会被显着激活。激活与DWI谱分析预测的空间病灶高度对应,也与完全反应抑制激活的病灶高度对应。结果表明,束线照相术如何显示可通过fMRI验证的连接。结果还证明了右半球的三向功能解剖网络可以制动或完全停止反应。

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