4.1 Article

A meta-analysis of tract-based spatial statistics studies examining white matter integrity in cocaine use disorder

Journal

ADDICTION BIOLOGY
Volume 26, Issue 2, Pages -

Publisher

WILEY
DOI: 10.1111/adb.12902

Keywords

cocaine use disorder; diffusion tensor imaging; fractional anisotropy; meta-analysis; seed-baseddmapping; tract-based spatial statistics

Funding

  1. National Institute on Drug Abuse [P50 DA009262]
  2. UTHealth Louis A. Faillace Endowment

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This study used seed-based mapping to investigate the differences in white matter integrity between cocaine users and healthy controls, finding lower fractional anisotropy in the genu of the corpus callosum for cocaine users. Sensitivity analyses supported the robustness of the obtained differences, while differences detected at exploratory thresholds for significance suggested compromised white matter integrity extending beyond the corpus callosum.
Tract-based spatial statistics (TBSS) of diffusion tensor imaging (DTI) studies have consistently shown diminished white matter (WM) integrity for individuals with cocaine use disorder (CUD). The present study used seed-baseddmapping (SDM) to determine the extent to which a systematic difference in the WM integrity of cocaine users may exist (as compared with that of healthy controls). Articles from 2006 (when TBSS was first developed) to present were reviewed, with eight selected for inclusion. Meta-analysis found lower fractional anisotropy (FA) in the genu of the corpus callosum for cocaine users, with a small-to-moderate peak effect size (Hedge'sg= -0.331). Sensitivity analyses mostly supported the robustness of the obtained difference. Differences detected at exploratory thresholds for significance suggested insult to WM integrity extending beyond the corpus callosum. The present results compliment a previous region-of-interest (ROI)-based meta-analysis of DTI studies in individuals with CUD. These findings have significant implications for the potential role of neuroprotective agents in the treatment of CUD and merit additional iteration as more studies accrue in the literature.

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