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JOINT EXPLORATION AND MINING OF MEMORY-RELEVANT BRAIN ANATOMIC AND CONNECTOMIC PATTERNS VIA A THREE-WAY ASSOCIATION MODEL

机译:基于三向关联模型的内存相关脑解剖学和连接学模型的联合探索与挖掘

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摘要

Early change in memory performance is a key symptom of many brain diseases, but its underlying mechanism remains largely unknown. While structural MRI has been playing an essential role in revealing potentially relevant brain regions, increasing availability of diffusion MRI data (e.g., Human Connectome Project (HCP)) provides excellent opportunities for exploration of their complex coordination. Given the complementary information held in these two imaging modalities, we hypothesize that studying them as a whole, rather than individually, and exploring their association will provide us valuable insights of the memory mechanism. However, many existing association methods, such as sparse canonical correlation analysis (SCCA), only manage to handle two-way association and thus cannot guarantee the selection of biomarkers and associations to be memory relevant. To overcome this limitation, we propose a new outcome-relevant SCCA model (OSCCA) together with a new algorithm to enable the three-way associations among brain connectivity, anatomic structure and episodic memory performance. In comparison with traditional SCCA, we demonstrate the effectiveness of our model with both synthetic and real data from the HCP cohort.
机译:记忆力的早期改变是许多脑部疾病的一个关键症状,但其潜在机制仍不清楚。尽管结构MRI在揭示潜在的相关大脑区域方面一直发挥着至关重要的作用,但扩散MRI数据(例如人类连接组计划(HCP))的可用性不断提高为探索其复杂的协调性提供了绝佳的机会。鉴于在这两种成像方式中拥有的补充信息,我们假设对它们进行整体研究而不是单独研究,并探索它们的关联将为我们提供有关记忆机制的宝贵见解。但是,许多现有的关联方法,例如稀疏规范相关分析(SCCA),只能设法处理双向关联,因此无法保证选择与记忆相关的生物标记和关联。为了克服这一局限性,我们提出了一种新的与结果相关的SCCA模型(OSCCA),并提出了一种新的算法,以实现大脑连接性,解剖结构和情景记忆性能之间的三向关联。与传统的SCCA相比,我们使用来自HCP队列的综合数据和真实数据证明了模型的有效性。

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