4.3 Article

Anatomical location of the spinothalamic tract in the subcortical white matter in the human brain: A diffusion tensor imaging study

期刊

CLINICAL ANATOMY
卷 34, 期 5, 页码 736-741

出版社

WILEY
DOI: 10.1002/ca.23709

关键词

anatomical location; diffusion tensor imaging; spinothalamic tract

资金

  1. Korean Government (Ministry of Science, ICT, and Future Planning) [2015R1A5A2009124]
  2. National Research Foundation of Korea (NRF)

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In this study, the anatomical location of the spinothalamic tract and its thalamocortical pathway in normal human brains was investigated using diffusion tensor tractography (DTT). The results provide valuable information for clinicians in the neuroscience field.
Introduction We investigated the anatomical location of the spinothalamic tract and its thalamocortical pathway (STT) in the subcortical white matter in normal subjects, using diffusion tensor tractography (DTT). Materials and Methods The STT was reconstructed using FMRIB software in 40 normal subjects. The most probable locations of the STT were defined as the location on an axial slice of the centrum semiovale (CS), corona radiata (CR), and posterior limb of the internal capsule (PL). Results The STT was located at an average of 62.66% in the anterior to posterior direction along a horizontal line that passed between the anterior and posterior ends of the brain, and an average of 36.29% lateral from the midline in the CS. In the CR, the STT was located at an average of 79.60% in the anterior to posterior direction along the aforementioned horizontal line, and an average of 36.36% lateral from the midline. In the PL, the STT was located at an average of 83.58% in the anterior to posterior direction along a horizontal line that passed the middle point at the genu of the internal capsule and the posterior endpoint of the putamen, and an average of 69.69% lateral from the midline to the lateral end of the putamen. Conclusions We found the precise anatomical location of the STT in the subcortical white matter in the human brain using DTT. We believe that the results of this study will be helpful to clinicians in the neuroscience field.

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