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Structural Neuroimaging of Anorexia Nervosa: Future Directions in the Quest for Mechanisms Underlying Dynamic Alterations

机译:神经性厌食症的结构性神经影像学:寻找动态变化背后的机制的未来方向。

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摘要

Anorexia nervosa (AN) is a serious eating disorder characterized by self-starvation and extreme weight loss. Pseudoatrophic brain changes are often readily visible in individual brain scans, and AN may be a valuable model disorder to study structural neuroplasticity. Structural magnetic resonance imaging studies have found reduced gray matter volume and cortical thinning in acutely underweight patients to normalize following successful treatment. However, some well-controlled studies have found regionally greater gray matter and persistence of structural alterations following long-term recovery. Findings from diffusion tensor imaging studies of white matter integrity and connectivity are also inconsistent. Furthermore, despite the severity of AN, the number of existing structural neuroimaging studies is still relatively low, and our knowledge of the underlying cellular and molecular mechanisms for macrostructural brain changes is rudimentary. We critically review the current state of structural neuroimaging in AN and discuss the potential neurobiological basis of structural brain alterations in the disorder, highlighting impediments to progress, recent developments, and promising future directions. In particular, we argue for the utility of more standardized data collection, adopting a connectomics approach to understanding brain network architecture, employing advanced magnetic resonance imaging methods that quantify biomarkers of brain tissue microstructure, integrating data from multiple imaging modalities, strategic longitudinal observation during weight restoration, and large-scale data pooling. Our overarching objective is to motivate carefully controlled research of brain structure in eating disorders, which will ultimately help predict therapeutic response and improve treatment.
机译:神经性厌食症(AN)是一种严重的饮食失调症,特征是自我饥饿和极端体重减轻。伪萎缩性脑部变化通常在单个脑部扫描中很容易看到,而AN可能是研究结构神经可塑性的有价值的模型障碍。结构磁共振成像研究发现,严重体重过轻的患者灰质体积减少和皮质变薄,可在成功治疗后恢复正常。但是,一些控制良好的研究发现,长期恢复后,该地区灰质含量更高,并且结构变化持续存在。扩散张量成像研究对白质完整性和连通性的发现也不一致。此外,尽管AN的严重性,现有的结构神经影像学研究的数量仍然相对较低,并且我们对宏观结构性脑部改变的潜在细胞和分子机制的知识是基本的。我们批判性地审查了AN中结构性神经影像学的现状,并讨论了该疾病中结构性脑部改变的潜在神经生物学基础,强调了进展的障碍,近期的发展以及有希望的未来方向。特别是,我们主张采用更标准化的数据收集,采用连接组学方法来了解脑网络架构,采用先进的磁共振成像方法(对大脑组织微结构的生物标记物进行量化),整合来自多种成像方式的数据,在体重期间进行战略性纵向观察,来寻求实用性恢复和大规模数据池化。我们的首要目标是激发饮食失调症患者大脑结构的严格受控研究,这最终将有助于预测治疗反应并改善治疗。

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