Department of Physiology and Pharmacology, Schulich School of Medicine and Dentistry, Western University, London, ON, Canada.
Department of Medical Biophysics, Schulich School of Medicine and Dentistry, Western University, London, ON, Canada.
Methods Mol Biol. 2022;2515:227-236. doi: 10.1007/978-1-0716-2409-8_14.
The amygdala is central for social and emotional processing and has been implicated in various disorders including autism spectrum disorder (ASD) and Alzheimer's disease (AD). Animal research and some limited research with humans has indicated that widespread alterations in neuronal development or neuronal loss in the basolateral and other amygdala subnuclei may be a contributing factor to variations in social behaviours. Yet, the basolateral amygdala is comprised of three subnuclei, each with a specialized role related to the coordination of emotional regulation. Due to their small size, the nuclei which comprise the basolateral amygdala remain understudied in humans in vivo. In this work, we describe methodology to examine the basolateral amygdala and other subnuclei in human ex vivo medial temporal lobe prosections using ultrahigh-field magnetic resonance imaging (MRI) at 9.4 T. Manual segmentations of the amygdala subnuclei on MR images, verified with immunohistochemical data, provide a robust three-dimensional atlas of the human amygdala. The goal is to apply the atlas to in vivo MRI scans to examine basolateral amygdala macrostructural development attributed to social cognitive dysfunction in ASD and other neurodevelopmental disorders. Furthermore, the atlas can be used to examine MRI-based correlates of neuronal loss commonly seen in neurodegenerative disorders.
杏仁核是社交和情绪处理的核心,与各种疾病有关,包括自闭症谱系障碍 (ASD) 和阿尔茨海默病 (AD)。动物研究和一些有限的人类研究表明,外侧和其他杏仁核亚核中神经元发育或神经元丢失的广泛改变可能是导致社交行为变化的一个因素。然而,杏仁核的外侧核由三个亚核组成,每个亚核都有一个与情绪调节协调相关的专门作用。由于它们的体积小,组成杏仁核外侧核的核在人类体内的研究仍然不足。在这项工作中,我们描述了使用 9.4T 超高场磁共振成像 (MRI) 检查人类离体内侧颞叶切片中的杏仁核外侧核和其他亚核的方法。通过免疫组织化学数据验证的 MR 图像上的杏仁核亚核手动分割为人类杏仁核提供了一个强大的三维图谱。目标是将图谱应用于体内 MRI 扫描,以检查归因于 ASD 和其他神经发育障碍的社交认知功能障碍的外侧杏仁核宏观结构发育。此外,该图谱可用于检查神经退行性疾病中常见的基于 MRI 的神经元丢失的相关性。