Increased right amygdala metabolite concentrations in the absence of atrophy in children and adolescents with PTSD



Wang, Weina, Sun, Huaiqiang, Su, Xiaorui, Tan, Qiaoyue, Zhang, Simin, Xia, Chunchao, Li, Lingjiang, Kemp, Graham J ORCID: 0000-0002-8324-9666, Yue, Qiang and Gong, Qiyong
(2019) Increased right amygdala metabolite concentrations in the absence of atrophy in children and adolescents with PTSD. EUROPEAN CHILD & ADOLESCENT PSYCHIATRY, 28 (6). pp. 807-817.

[img] Text
Su 2018 JAD accepted.pdf - Author Accepted Manuscript

Download (850kB)

Abstract

Previous studies have shown that posttraumatic stress disorder (PTSD) is associated with dysfunction of the limbic system, in which the amygdala plays an important role. The purpose of this study was to evaluate whether the neurochemical concentrations assessed by proton magnetic resonance spectroscopy (<sup>1</sup>H-MRS) in the amygdala are abnormal in children and adolescents with PTSD. Twenty-eight pediatric PTSD patients (11 boys, 17 girls) and 24 matched trauma-exposed control subjects (9 boys, 15 girls) underwent magnetic resonance brain imaging and <sup>1</sup>H-MRS of the bilateral amygdalae. The concentrations of N-acetylaspartate (NAA), myo-inositol (mI), total creatine (tCr) and total choline (tCho) in the right amygdala were significantly increased in PTSD patients compared with trauma-exposed control subjects. There were significant group-by-age interactions in the left amygdala NAA and right amygdala mI concentrations: older pediatric patients with PTSD had higher left amygdala NAA concentration and younger patients had higher right amygdala mI concentration than trauma-exposed control subjects. There was also a significant correlation between right mI concentration and time since trauma in PTSD patients. Finally, there was significant group-by-age interaction in the left amygdala volume; intragroup analysis revealed that the right amygdala volume was significantly lower than the left in the PTSD group, but not in the control group. These neurochemical abnormalities of the amygdala may indicate that dysfunctions of both neurons and glial cells are involved in the pathology of pediatric PTSD.

Item Type: Article
Uncontrolled Keywords: PTSD, Proton magnetic resonance spectroscopy, Children and adolescents, Amygdala, Development, Psychoradiology
Depositing User: Symplectic Admin
Date Deposited: 25 Jan 2019 14:11
Last Modified: 19 Jan 2023 01:08
DOI: 10.1007/s00787-018-1241-x
Related URLs:
URI: https://livrepository.liverpool.ac.uk/id/eprint/3030754