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Assessment of functional and structural connectivity between motor cortex and thalamus using fMRI and DWI

机译:使用fMRI和DWI评估运动皮层和丘脑之间的功能和结构连接性

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Connectivity evaluations have been performed in a noninvasive manner by examining resting state fMRI alongside diffusion-weighted images (DWI). The spatial structures of coherent spontaneous BOLD fluctuations provided the most convincing preliminary evidence that the BOLD signal was predominantly of neuronal origin rather than non-neuronal, artifactual noise. In this study we have shown that in thalamocortical network, the results of functional connectivity analysis and DWI correspond well with each other, thereby providing cross-validation of the two techniques. We have used the resting state fMRI data of 3 subjects with 10 minute resting state functional images via a 3T Siemens scanner. we used cross correlation for functional analysis and reported thalamocortical results with pvalue=0.01 and cluster size=100, Then showed corresponding tracts connecting premotor cortex and thalamus. In addition, both techniques correspond well to histological delineation and invasive tract tracing, which provides a ‘gold standard’ validation of the two techniques. The degree of structural connectivity has been shown to correlate with the strength of functional connectivity, thereby providing a potentially straightforward structural explanation for many of the changes in functional connectivity in disease states.
机译:通过检查静止状态功能磁共振成像以及弥散加权图像(DWI),以无创方式进行了连接性评估。相干自发BOLD波动的空间结构提供了最有说服力的初步证据,表明BOLD信号主要是神经元起源的,而不是非神经性的人为噪声。在这项研究中,我们证明了在丘脑皮层网络中,功能连通性分析和DWI的结果相互之间具有很好的对应性,从而提供了两种技术的交叉验证。我们通过3T Siemens扫描仪将3位受试者的静息状态fMRI数据与10分钟静息状态功能图像一起使用。我们使用互相关进行功能分析,并报告丘脑皮质结果,pvalue = 0.01,簇大小= 100,然后显示了连接运动前皮层和丘脑的相应区域。此外,这两种技术都非常适合组织学描述和侵入性导管追踪,这为这两种技术提供了“黄金标准”验证。已经显示出结构连通性的程度与功能连通性的强度相关,从而为疾病状态下的功能连通性的许多变化提供了潜在的直接结构解释。

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