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首页> 外文期刊>The British journal of psychiatry : >Structural changes in amygdala nuclei, hippocampal subfields and cortical thickness following electroconvulsive therapy in treatment-resistant depression: longitudinal analysis
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Structural changes in amygdala nuclei, hippocampal subfields and cortical thickness following electroconvulsive therapy in treatment-resistant depression: longitudinal analysis

机译:治疗抑郁症电静脉治疗后杏仁核,海马子场和皮质厚度的结构变化:纵向分析

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Background Electroconvulsive therapy (ECT) is the treatment of choice for severe mental illness including treatment-resistant depression (TRD). Increases in volume of the hippocampus and amygdala following ECT have consistently been reported. Aims To investigate neuroplastic changes after ECT in specific hippocampal subfields and amygdala nuclei using high-resolution structural magnetic resonance imaging (MRI) (trial registration: clinicaltrials.gov - NCT02379767). Method MRI scans were carried out in 14 patients (11 women, 46.9 years (s.d. = 8.1)) with unipolar TRD twice before and once after a series of right unilateral ECT in a pre-post study design. Volumes of subcortical structures, including subfields of the hippocampus and amygdala, and cortical thickness were extracted using FreeSurfer. The effect of ECT was tested using repeated-measures ANOVA. Correlations of imaging and clinical parameters were explored. Results Increases in volume of the right hippocampus by 139.4 mm(3) (s.d. = 34.9), right amygdala by 82.3 mm(3) (s.d. = 43.9) and right putamen by 73.9 mm(3) (s.d. = 77.0) were observed. These changes were localised in the basal and lateral nuclei, and the corticoamygdaloid transition area of the amygdala, the hippocampal-amygdaloid transition area and the granule cell and molecular layer of the dentate gyrus. Cortical thickness increased in the temporal, parietal and insular cortices of the right hemisphere. Conclusions Following ECT structural changes were observed in hippocampal subfields and amygdala nuclei that are specifically implicated in the pathophysiology of depression and stress-related disorders and retain a high potential for neuroplasticity in adulthood. Declaration of interest S.K. has received grants/research support, consulting fees and/or honoraria within the past 3 years from Angelini, AOP Orphan Pharmaceuticals AG, AstraZeneca, Celegne GmbH, Eli Lilly, Janssen-Cilag Pharma GmbH, KRKA-Pharma, Lundbeck A/S, Neuraxpharm, Pfizer, Pierre Fabre, Schwabe and Servier. R.L. received travel grants and/or conference speaker honoraria from Shire, AstraZeneca, Lundbeck A/S, Dr. Willmar Schwabe GmbH, Orphan Pharmaceuticals AG, Janssen-Cilag Pharma GmbH, and Roche Austria GmbH.
机译:背景技术电耦合治疗(ECT)是治疗严重精神疾病,包括治疗抑制抑郁(TRD)。报告了海马和杏仁醛的体积增加。旨在使用高分辨率结构磁共振成像(MRI)在特异性海马子场和杏仁核核中进行ECT术后的神经塑性变化(试验注册:ClinCORINTRIANS.gov - NCT02379767)。方法MRI扫描于14名患者中进行(11名女性,46.9岁(S.D. = 8.1)),单极道TRD两次,一次在一系列右侧学习前设计后一系列右侧。使用FreeSurfer提取包括海马和杏仁杆菌的子场,包括海马和杏仁杆菌的子场,以及皮质厚度的体积。使用重复测量Anova测试ECT的效果。探索了成像和临床参数的相关性。结果右海马体积增加139.4毫米(3)(3)(S.D. = 34.9),右杏仁醛含量为82.3mm(3)(S.D. = 43.9),并右腐粉率为73.9mm(3)(S.D. = 77.0)。这些变化在基底和侧核中局部化,杏仁核的皮质蛋白蛋白转变区域,海马 - 玉米醇转变区域和牙齿颗粒细胞和牙齿的分子层。右半球的颞型,顶视和绝缘皮质的皮质厚度增加。在海马子场和Amygdala核中观察到构造变化之后的结论,其特异性地涉及抑郁和应力相关疾病的病理生理学,并在成年期内保留了神经塑性的高潜力。利息宣言S.K.从Angelini,Aop孤儿制药AG,Astazeneca,Celegne GmbH,Eli Lilly,Janssen-Cileag Pharma GmbH,Krka-Pharma,Lundbeck A / S,Neuraxpharm ,辉瑞,皮埃尔·弗劳动,施拉维和服务器。 R.L.收到的旅行赠款和/或会议演讲者奖金来自Shire,Astazeneca,Lundbeck A / S,Willmar Schwabe GmbH,Orphan Pharmaceuticals AG,​​Janssen-Cilag Pharma GmbH和Roche Austria GmbH。

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