Structural covariance, topological organization, and volumetric features of amygdala subnuclei in posttraumatic stress disorder

扁桃形结构 心理学 神经科学 创伤后应激 功能磁共振成像 部分各向异性 相关性 协方差 磁共振成像 临床心理学 磁共振弥散成像 医学 数学 几何学 统计 放射科
作者
Elizabeth M. Haris,Richard A. Bryant,Mayuresh S. Korgaonkar
出处
期刊:NeuroImage: Clinical [Elsevier BV]
卷期号:42: 103619-103619 被引量:4
标识
DOI:10.1016/j.nicl.2024.103619
摘要

The amygdala is divided into functional subnuclei which have been challenging to investigate due to functional magnetic resonance imaging (MRI) limitations in mapping small neural structures. Hence their role in the neurobiology of posttraumatic stress disorder (PTSD) remains poorly understood. Examination of covariance of structural MRI measures could be an alternate approach to circumvent this issue. T1-weighted anatomical scans from a 3 T scanner from non-trauma-exposed controls (NEC; n = 71, 75 % female) and PTSD participants (n = 67, 69 % female) were parcellated into 105 brain regions. Pearson's r partial correlations were computed for three and nine bilateral amygdala subnuclei and every other brain region, corrected for age, sex, and total brain volume. Pairwise correlation comparisons were performed to examine subnuclei covariance profiles between-groups. Graph theory was employed to investigate subnuclei network topology. Volumetric measures were compared to investigate structural changes. We found differences between amygdala subnuclei in covariance with the hippocampus for both groups, and additionally with temporal brain regions for the PTSD group. Network topology demonstrated the importance of the right basal nucleus in facilitating network communication only in PTSD. There were no between-group differences for any of the three structural metrics. These findings are in line with previous work that has failed to find structural differences for amygdala subnuclei between PTSD and controls. However, differences between amygdala subnuclei covariance profiles observed in our study highlight the need to investigate amygdala subnuclei functional connectivity in PTSD using higher field strength fMRI for better spatial resolution.
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