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一种具有神经发育特征的生物标志物及其在自闭症中的应用。

A Biomarker Characterizing Neurodevelopment with applications in Autism.

机构信息

Physics Department, Indiana University, Bloomington, Indiana, United States.

Key Laboratory of Theoretical Physics, Institute of Theoretical Physics, Chinese Academy of Sciences, Beijing, China.

出版信息

Sci Rep. 2018 Jan 12;8(1):614. doi: 10.1038/s41598-017-18902-w.

Abstract

Despite great advances in neuroscience and genetic studies, our understanding of neurodevelopmental disorders is still quite limited. An important reason is not having objective psychiatric clinical tests. Here we propose a quantitative neurodevelopment assessment by studying natural movement outputs. Movement is central to behaviors: It involves complex coordination, temporal alterations, and precise dynamic controls. We carefully analyzed the continuous movement output data, collected with high definition electromagnetic sensors at millisecond time scales. We unraveled new metrics containing striking physiological information that was unseen neither by using traditional motion assessments nor by naked eye observations. Our putative biomarker leads to precise individualized classifications. It illustrates clear differences between Autism Spectrum Disorder (ASD) subjects from mature typical developing (TD) individuals. It provides an ASD complementary quantitative classification, which closely agrees with the clinicaly assessed functioning levels in the spectrum. It also illustrates TD potential age-related neurodevelopmental trajectories. Applying our movement biomarker to the parents of the ASD individuals studied in the cohort also shows a novel potential familial signature ASD tie. This paper proposes a putative behavioral biomarker to characterize the level of neurodevelopment with high predicting power, as illustrated in ASD subjects as an example.

摘要

尽管神经科学和遗传学研究取得了巨大进展,但我们对神经发育障碍的理解仍然相当有限。一个重要的原因是缺乏客观的精神科临床测试。在这里,我们通过研究自然运动输出提出了一种定量的神经发育评估方法。运动是行为的核心:它涉及复杂的协调、时间变化和精确的动力控制。我们仔细分析了使用高清晰度电磁传感器在毫秒时间尺度上收集的连续运动输出数据。我们揭示了新的指标,其中包含了通过使用传统运动评估或肉眼观察都看不到的惊人的生理信息。我们提出的生物标志物可以进行精确的个体化分类。它清楚地区分了自闭症谱系障碍(ASD)患者与成熟的典型发育(TD)个体之间的差异。它提供了一种 ASD 的补充定量分类,与该谱系中临床评估的功能水平密切一致。它还说明了 TD 的潜在与年龄相关的神经发育轨迹。将我们的运动生物标志物应用于该队列中 ASD 个体的父母,也显示出一种新的潜在的家族 ASD 特征。本文提出了一种假设的行为生物标志物,以高预测能力来描述神经发育水平,以 ASD 患者为例进行说明。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74a6/5766517/0d64043fe2d4/41598_2017_18902_Fig1_HTML.jpg

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