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Wei-Hung Chen

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YNIMG Journal 2010 Journal Article

Microstructural white matter changes in normal aging: A diffusion tensor imaging study with higher-order polynomial regression models

  • Jung-Lung Hsu
  • Wim Van Hecke
  • Chyi-Huey Bai
  • Cheng-Hui Lee
  • Yuh-Feng Tsai
  • Hou-Chang Chiu
  • Fu-Shan Jaw
  • Chien-Yeh Hsu

Diffusion tensor imaging (DTI) has already proven to be a valuable tool when investigating both global and regional microstructural white matter (WM) brain changes in the human aging process. Although subject to many criticisms, voxel-based analysis is currently one of the most common and preferred approaches in such DTI aging studies. In this context, voxel-based DTI analyses have assumed a ‘linear’ correlation when finding the significant brain regions that relate age with a particular diffusion measure of interest. Recent literature, however, has clearly demonstrated ‘non-linear’ relationships between age and diffusion metrics by using region-of-interest and tractography-based approaches. In this work, we incorporated polynomial regression models in the voxel-based DTI analysis framework to assess age-related changes in WM diffusion properties (fractional anisotropy and axial, transverse, and mean diffusivity) in a large cohort of 346 subjects (25 to 81 years old). Our novel approach clearly demonstrates that voxel-based DTI analyses can greatly benefit from incorporating higher-order regression models when investigating potential relationships between aging and diffusion properties.

YNIMG Journal 2008 Journal Article

Gender differences and age-related white matter changes of the human brain: A diffusion tensor imaging study

  • Jung-Lung Hsu
  • Alexander Leemans
  • Chyi-Huey Bai
  • Cheng-Hui Lee
  • Yuh-Feng Tsai
  • Hou-Chang Chiu
  • Wei-Hung Chen

Cerebral white matter undergoes various changes with normal aging. This study investigated the association between age, gender, and the global and regional fractional anisotropy (FA) and mean diffusivity (MD) in 145 adults (30 to 80 years old) using diffusion tensor magnetic resonance imaging. We studied sixteen regions of interest in both hemispheres to search for regions that display age- and gender-related white matter changes and also performed a complementary voxel-based analysis without any hypothesis a priori. On a global scale, our results indicate that the full brain FA was negatively correlated with age. The regional analysis showed that the anterior corpus callosum, the bilateral anterior and posterior internal capsule, and the posterior periventricular regions had the most significant age-related FA decrease. On the other hand, the FA in the temporal and occipital regions was not correlated with age. However, in contrast to males, females overall had a significantly lower FA in the right deep temporal regions. More gender differences in precentral, cingulate, and anterior temporal white matter areas were also found, suggesting that microstructural white matter organization in these regions may have a sexual dimorphism. Such differences were mainly due to the increase in diffusion perpendicular to fiber tracts.