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一种使用结构磁共振成像图像对阿尔茨海默病中的轻度认知障碍进行分类的多流卷积神经网络。

A Multi-Stream Convolutional Neural Network for Classification of Progressive MCI in Alzheimer's Disease Using Structural MRI Images.

作者信息

Ashtari-Majlan Mona, Seifi Abbas, Dehshibi Mohammad Mahdi

出版信息

IEEE J Biomed Health Inform. 2022 Aug;26(8):3918-3926. doi: 10.1109/JBHI.2022.3155705. Epub 2022 Aug 11.

Abstract

Early diagnosis of Alzheimer's disease and its prodromal stage, also known as mild cognitive impairment (MCI), is critical since some patients with progressive MCI will develop the disease. We propose a multi-stream deep convolutional neural network fed with patch-based imaging data to classify stable MCI and progressive MCI. First, we compare MRI images of Alzheimer's disease with cognitively normal subjects to identify distinct anatomical landmarks using a multivariate statistical test. These landmarks are then used to extract patches that are fed into the proposed multi-stream convolutional neural network to classify MRI images. Next, we train the architecture in a separate scenario using samples from Alzheimer's disease images, which are anatomically similar to the progressive MCI ones and cognitively normal images to compensate for the lack of progressive MCI training data. Finally, we transfer the trained model weights to the proposed architecture in order to fine-tune the model using progressive MCI and stable MCI data. Experimental results on the ADNI-1 dataset indicate that our method outperforms existing methods for MCI classification, with an F1-score of 85.96%.

摘要

阿尔茨海默病及其前驱期(也称为轻度认知障碍,MCI)的早期诊断至关重要,因为一些患有进行性MCI的患者会发展为该病。我们提出了一种多流深度卷积神经网络,输入基于图像块的成像数据,以对稳定型MCI和进行性MCI进行分类。首先,我们将阿尔茨海默病的MRI图像与认知正常的受试者进行比较,使用多变量统计测试来识别不同的解剖标志。然后,这些标志被用于提取图像块,输入到所提出的多流卷积神经网络中以对MRI图像进行分类。接下来,我们在一个单独的场景中使用来自阿尔茨海默病图像的样本训练该架构,这些样本在解剖结构上与进行性MCI的样本以及认知正常的图像相似,以弥补进行性MCI训练数据的不足。最后,我们将训练好的模型权重转移到所提出的架构中,以便使用进行性MCI和稳定型MCI数据对模型进行微调。在ADNI - 1数据集上的实验结果表明,我们的方法在MCI分类方面优于现有方法,F1分数为85.96%。

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