arXiv:2410.22454cs.CV2024-10中稿 · Imaging Neuroscien…被引 5

用扩散MRI预测脑龄,提前发现阿尔茨海默病风险

Brain age identification from diffusion MRI synergistically predicts neurodegenerative disease

  • 通过非刚性配准消除宏观结构干扰,专注微结构变化
  • 在认知正常转轻度痴呆前五年预测准确率更高
  • 适合早期筛查阿尔茨海默病高危人群

基于磁共振成像(MRI)的脑龄估算及其与实际年龄的偏差,可为神经退行性疾病提供早期预警,支持早期干预。扩散MRI(dMRI)能捕捉比宏观结构改变更早的微结构变化,具备构建早期生物标志物的潜力。然而,当前dMRI中同时包含宏观与微结构信息,导致现有模型是否真正利用微结构尚存疑问。为此,本文提出一种新方法:通过非刚性配准将所有dMRI图像对齐至标准模板,以抑制模型对宏观结构信息的依赖。研究使用来自12个数据集的13,398名参与者的数据进行训练与评估。结果表明,在从认知正常(CN)向轻度认知障碍(MCI)过渡阶段,基于dMRI的脑龄显著高于基于T1加权(T1w)MRI的脑龄;而在已确诊阿尔茨海默病(AD)的患者中,dMRI脑龄反而更年轻。此外,dMRI脑龄在预测从CN到MCI转变方面,优于传统T1w模型,可提前长达五年实现有效预警。

原文摘要 · Abstract (English)

Estimated brain age from magnetic resonance image (MRI) and its deviation from chronological age can provide early insights into potential neurodegenerative diseases, supporting early detection and implementation of prevention strategies. Diffusion MRI (dMRI) presents an opportunity to build an earlier biomarker for neurodegenerative disease prediction because it captures subtle microstructural changes that precede more perceptible macrostructural changes. However, the coexistence of macro- and micro-structural information in dMRI raises the question of whether current dMRI-based brain age estimation models are leveraging the intended microstructural information or if they inadvertently rely on the macrostructural information. To develop a microstructure-specific brain age, we propose a method for brain age identification from dMRI that mitigates the model's use of macrostructural information by non-rigidly registering all images to a standard template. Imaging data from 13,398 participants across 12 datasets were used for the training and evaluation. We compare our brain age models, trained with and without macrostructural information mitigated, with an architecturally similar T1-weighted (T1w) MRI-based brain age model and two recent, popular, openly available T1w MRI-based brain age models that primarily use macrostructural information. We observe difference between our dMRI-based brain age and T1w MRI-based brain age across stages of neurodegeneration, with dMRI-based brain age being older than T1w MRI-based brain age in participants transitioning from cognitively normal (CN) to mild cognitive impairment (MCI), but younger in participants already diagnosed with Alzheimer's disease (AD). Furthermore, dMRI-based brain age may offer advantages over T1w MRI-based brain age in predicting the transition from CN to MCI up to five years before diagnosis.

脑龄预测扩散MRI阿尔茨海默病早期诊断

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