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Hippocampal structural and functional changes associated with electroconvulsive therapy response

机译:与电惊厥治疗反应相关的海马结构和功能变化

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Previous animal models and structural imaging investigations have linked hippocampal neuroplasticity to electroconvulsive therapy (ECT) response, but the relationship between changes in hippocampal volume and temporal coherence in the context of ECT response is unknown. We hypothesized that ECT response would increase both hippocampal resting-state functional magnetic resonance imaging connectivity and hippocampal volumes. Patients with major depressive disorder ( n =19) were scanned before and after the ECT series. Healthy, demographically matched comparisons ( n =20) were scanned at one-time interval. Longitudinal changes in functional connectivity of hippocampal regions and volumes of hippocampal subfields were compared with reductions in ratings of depressive symptoms. Right hippocampal connectivity increased (normalized) after the ECT series and correlated with depressive symptom reduction. Similarly, the volumes of the right hippocampal cornu ammonis (CA2/3), dentate gyrus and subiculum regions increased, but the hippocampal subfields were unchanged relative to the comparison group. Connectivity changes were not evident in the left hippocampus, and volume changes were limited to the left CA2/3 subfields. The laterality of the right hippocampal functional connectivity and volume increases may be related to stimulus delivery method, which was predominately right unilateral in this investigation. The findings suggested that increased hippocampal functional connectivity and volumes may be biomarkers for ECT response.
机译:先前的动物模型和结构成像研究已将海马神经可塑性与电惊厥治疗(ECT)反应联系在一起,但是在ECT反应的背景下海马体积变化与时间连贯性之间的关系尚不清楚。我们假设ECT反应将增加海马静息状态功能磁共振成像连接性和海马体积。在ECT系列检查前后对重度抑郁症患者(n = 19)进行了扫描。健康的,人口统计学匹配的比较(n = 20)以一次间隔进行扫描。将海马区功能连接的纵向变化和海马亚区的体积与抑郁症状等级的降低进行了比较。 ECT系列后右海马连接性增加(正常化),并与抑郁症状减轻相关。类似地,右侧海马角膜氨水(CA2 / 3),齿状回和下丘脑区域的体积增加,但是海马亚视野相对于对照组没有变化。左海马区的连通性变化不明显,并且体积变化仅限于左CA2 / 3子区。右侧海马功能连接的侧向性和体积增加可能与刺激传递方法有关,该方法在本研究中主要为右单侧。这些发现表明,海马功能连接性和容量的增加可能是ECT反应的生物标志。

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