Bio-Imaging Laboratory, University of Antwerp, CDE, Universiteitsplein 1, B-2610 Antwerp, Belgium.
Research Group in Behavioral Neuroendocrinology, GIGA Neurosciences, University of Liège, B-4000 Liège, Belgium.
Horm Behav. 2018 Aug;104:63-76. doi: 10.1016/j.yhbeh.2018.03.011. Epub 2018 Apr 7.
Contribution to Special Issue on Fast effects of steroids. This review introduces functional MRI (fMRI) as an outstanding tool to assess rapid effects of sex steroids on auditory processing in seasonal songbirds. We emphasize specific advantages of this method as compared to other more conventional and invasive methods used for this purpose and summarize an exemplary auditory fMRI study performed on male starlings exposed to different types of starling song before and immediately after the inhibition of aromatase activity by an i.p. injection of Vorozole™. We describe how most challenges that relate to the necessity to anesthetize subjects and minimize image- and sound-artifacts can be overcome in order to obtain a voxel-based 3D-representation of changes in auditory brain activity to various sound stimuli before and immediately after a pharmacologically-induced depletion of endogenous estrogens. Analysis of the fMRI data by assumption-free statistical methods identified fast specific changes in activity in the auditory brain regions that were stimulus-specific, varying over different seasons, and in several instances lateralized to the left side of the brain. This set of results illustrates the unique features of fMRI that provides opportunities to localize and quantify the brain responses to rapid changes in hormonal status. fMRI offers a new image-guided research strategy in which the spatio-temporal profile of fast neuromodulations can be identified and linked to specific behavioral inputs or outputs. This approach can also be combined with more localized invasive methods to investigate the mechanisms underlying the observed neural changes.
为本期刊特刊“类固醇的快速作用”贡献。本综述介绍了功能磁共振成像(fMRI)作为评估季节性鸣禽中类固醇对听觉处理的快速作用的杰出工具。我们强调了与为此目的而使用的其他更传统和更具侵入性的方法相比,该方法的特定优势,并总结了在雄性星雀上进行的一项听觉 fMRI 研究,这些星雀在芳香酶活性被腹腔注射 Vorozole™抑制之前和之后立即暴露于不同类型的星雀歌声中。我们描述了如何克服与必须麻醉对象和最小化图像和声音伪影相关的大多数挑战,以便在通过药理学耗尽内源性雌激素之前和之后,获得对各种声音刺激的听觉大脑活动的基于体素的 3D 表示。通过无假设的统计方法对 fMRI 数据进行分析,确定了听觉大脑区域中与刺激特异性、不同季节变化以及在某些情况下偏向大脑左侧的活动的快速特异性变化。这组结果说明了 fMRI 的独特特征,为定位和量化对激素状态快速变化的大脑反应提供了机会。fMRI 提供了一种新的图像引导研究策略,其中可以识别和链接快速神经调制的时空分布与特定的行为输入或输出。这种方法还可以与更局部的侵入性方法相结合,以研究观察到的神经变化的机制。