Harris Julia J, Reynell Clare
Life Sciences Department, Imperial College London, SW7 2AZ, UK; Francis Crick Institute, Midland Road, London, NW1 1AT, UK.
Département de Neurosciences, Université de Montréal, H3C 3J7, Canada.
Dev Cogn Neurosci. 2017 Jun;25:45-57. doi: 10.1016/j.dcn.2016.12.003. Epub 2016 Dec 21.
Depression is a highly prevalent life-threatening disorder, with its first onset commonly occurring during adolescence. Adolescent depression is increasingly being treated with antidepressants, such as fluoxetine. The use of medication during this sensitive period of physiological and cognitive brain development produces neurobiological changes, some of which may outlast the course of treatment. In this review, we look at how antidepressant treatment in adolescence is likely to alter neurovascular coupling and brain energy use and how these changes, in turn, affect our ability to identify neuronal activity changes between participant groups. BOLD (blood oxygen level dependent) fMRI (functional magnetic resonance imaging), the method most commonly used to record brain activity in humans, is an indirect measure of neuronal activity. This means that between-group comparisons - adolescent versus adult, depressed versus healthy, medicated versus non-medicated - rely upon a stable relationship existing between neuronal activity and the BOLD response across these groups. We use data from animal studies to detail the ways in which fluoxetine may alter this relationship, and explore how these alterations may influence the interpretation of BOLD signal differences between groups that have been treated with fluoxetine and those that have not.
抑郁症是一种高度普遍且危及生命的疾病,其首次发病通常发生在青春期。青少年抑郁症越来越多地使用抗抑郁药进行治疗,比如氟西汀。在大脑生理和认知发育的这个敏感时期使用药物会产生神经生物学变化,其中一些变化可能会在治疗过程结束后依然存在。在这篇综述中,我们探讨青少年抗抑郁治疗可能如何改变神经血管耦合和大脑能量利用,以及这些变化又如何反过来影响我们识别不同参与者组之间神经元活动变化的能力。血氧水平依赖性功能磁共振成像(BOLD fMRI)是人类记录大脑活动最常用的方法,它是对神经元活动的一种间接测量。这意味着组间比较——青少年与成年人、抑郁症患者与健康人、用药者与未用药者——依赖于这些组之间神经元活动和BOLD反应之间存在的稳定关系。我们利用动物研究的数据详细阐述氟西汀可能改变这种关系的方式,并探讨这些改变如何影响对使用氟西汀治疗组和未使用氟西汀治疗组之间BOLD信号差异的解读。