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Directional colour encoding of the human thalamus by diffusion tensor imaging.

机译:通过扩散张量成像对人丘脑进行定向颜色编码。

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摘要

The potential of diffusion tensor imaging (DTI) in brain imaging in terms of the in vivo mapping of neuroanatomy is generally accepted. Mostly, analyses of deep brain structures were based on complex methodical backgrounds. In the present study, the delineation of groups of thalamic nuclei with similar projection characteristics was investigated in healthy human subjects using a novel differentiated colour encoding approach of DTI data without the use of statistical calculations. With the application of this directional colour encoding of the longest eigenvector of every voxel-specific tensor, at least three functional groups in the thalamus with different projection directions could be differentiated. The method displayed, furthermore, a high symmetry and stability in the analysis of the individual subjects. In summary, substantial neuroanatomical information can be gained for deep subcortical gray matter structures such as the thalamus with an improved detection and directional differentiation of voxel-specific tensors.
机译:就神经解剖学的体内标测而言,脑成像中弥散张量成像(DTI)的潜力已被普遍接受。通常,对深层大脑结构的分析基于复杂的方法论背景。在本研究中,使用新颖的DTI彩色差分编码方法在健康人受试者中调查了具有相似投影特征的丘脑核群的轮廓,而无需使用统计计算。通过对每个体素特定张量的最长特征向量进行这种定向颜色编码,可以区分丘脑中投影方向不同的至少三个功能组。此外,该方法在单个受试者的分析中显示出高度的对称性和稳定性。总之,对于深层皮质下的灰质结构(如丘脑),可以获得更好的神经解剖学信息,同时可以改善体素特异性张量的检测和方向区分。

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