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首页> 外文期刊>Bipolar disorders. >Changes of cortical excitability as markers of antidepressant response in bipolar depression: Preliminary data obtained by combining transcranial magnetic stimulation (TMS) and electroencephalography (EEG)
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Changes of cortical excitability as markers of antidepressant response in bipolar depression: Preliminary data obtained by combining transcranial magnetic stimulation (TMS) and electroencephalography (EEG)

机译:皮层兴奋性变化作为双相性抑郁症抗抑郁反应的标志物:结合经颅磁刺激(TMS)和脑电图(EEG)获得的初步数据

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Background: It is still unclear which biological changes are needed to recover from a major depressive episode. Current perspectives focus on cortical synaptic neuroplasticity. Measures of cortical responses evoked by transcranial magnetic stimulation (TMS) change with sleep homeostasic pressure in humans and approximate measures of synaptic strength in animal models. Using repeated total sleep deprivation as a model of antidepressant treatment, we aimed to correlate recovery from depression with these measures of cortical excitability. Methods: We recorded electroencephalographic responses to TMS in the prefrontal cortex of 21 depressed inpatients with bipolar disorder treated with repeated sleep deprivation combined with light therapy. We performed seven TMS/electroencephalography sessions during one week and calculated three measures of cortical excitability. Results: Cortical excitability progressively increased during the antidepressant treatment and as a function of time awake. Higher values differentiated responders from non-responders at baseline and during and after treatment on all measures. Conclusions: Changes in measures of cortical excitability parallel and predict antidepressant response to combined sleep deprivation and light therapy. Data suggest that promoting cortical plasticity in bipolar depression could be a major effect of successful antidepressant treatments, and that patients not responding could suffer a persistent impairment in their neuroplasticity mechanisms.
机译:背景:目前尚不清楚从重度抑郁发作中需要恢复哪些生物学变化。当前观点集中在皮质突触神经可塑性。经颅磁刺激(TMS)诱发的皮质反应的测量值随人的睡眠稳态压力而变化,而动物模型中的突触强度的近似测量值。我们将反复剥夺全部睡眠作为抗抑郁药治疗的模型,旨在将抑郁症的恢复与皮质兴奋性的这些指标相关联。方法:我们记录了21名抑郁症住院患者的前额叶皮层对TMS的脑电图反应,该患者经反复睡眠剥夺和光疗后治疗。我们在一周内进行了7次TMS /脑电图检查,并计算了三种皮层兴奋性指标。结果:抗抑郁药治疗期间皮层兴奋性逐渐增加,并随着时间的流逝而变化。较高的值会在所有措施的基线,治疗期间和治疗后将反应者与未反应者区分开。结论:皮质兴奋性措施的变化平行,并预测对睡眠剥夺和光疗相结合的抗抑郁反应。数据表明,在双相抑郁症中促进皮质可塑性可能是成功的抗抑郁治疗的主要作用,而无反应的患者的神经可塑性机制可能会持续受到损害。

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