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基于年龄和性别的区域脑萎缩自动容积估算:工作流程和可行性。

Automated age- and sex-specific volumetric estimation of regional brain atrophy: workflow and feasibility.

机构信息

Department of Diagnostic and Interventional Radiology, University Düsseldorf, Medical Faculty, Moorenstr. 5, D-40225, Düsseldorf, Germany.

出版信息

Eur Radiol. 2021 Feb;31(2):1043-1048. doi: 10.1007/s00330-020-07196-8. Epub 2020 Aug 27.

Abstract

OBJECTIVES

An automated workflow for age- and sex-specific estimation of regional brain volume changes from structural MRI relative to a standard population is presented and evaluated for feasibility.

METHODS

T1w MRI scans are preprocessed in a standardized way comprising gray matter (GM) segmentation, normalization, modulation, and spatial smoothing. Resulting GM images are then compared to precomputed age- and sex-specific GM templates derived from the population-based Nathan Kline Institute Rockland Sample, and voxel-wise z-maps are compiled. z-maps are color-coded and fused with the subject's T1w images. The rate of technical success of the proposed workflow was evaluated in 1330 subjects of the Alzheimer's Disease Neuroimaging Initiative (ADNI). Furthermore, medial temporal atrophy (MTA) was assessed using the color-coded maps and with the MTA visual rating scale in these subjects. Sensitivities and specificity of color-coded maps and MTA scale were compared using McNemar's test.

RESULTS

One test dataset was excluded due to severe motion artifacts. Out of the remaining 1329 datasets, atrophy map generation was successful in 1323 ADNI subjects (99.5%). Sensitivity for AD diagnosis (71.4 % vs. 53.3%, p < 0.0001 for left; 70.4% vs. 55.3%, p < 0.0001 for right hemisphere) and for MCI (45.4% vs. 17.4, p < 0.0001 for left; 43.5% vs. 14.6%, p < 0.0001 for right hemisphere) based on medial temporal atrophy assessment in color-coded maps was significantly higher than for MTA visual rating scale, while specificity was lower (78.4% vs. 93.8%, p < 0.0001 for left; 79.4% vs. 95.8%, p < 0.0001 for right hemisphere). The workflow is named veganbagel and is published as open-source software with an integrated PACS interface.

CONCLUSIONS

Automated brain volume change estimation with the proposed workflow is feasible and technically dependable. It provides high potential for radiologic assessment of brain volume changes and neurodegenerative diseases.

KEY POINTS

• A workflow combining techniques from voxel-based morphometry and population-based neuroimaging data is feasible and technically highly dependable. • The workflow is provided as open-source software, named veganbagel. • Sensitivity of medial temporal atrophy assessment in atrophy maps from veganbagel exceeds the sensitivity of MTA visual rating scale for the diagnosis of Alzheimer's disease.

摘要

目的

提出并评估一种针对结构 MRI 相对于标准人群的基于年龄和性别的区域脑容量变化的自动工作流程的可行性。

方法

以标准化的方式对 T1w MRI 扫描进行预处理,包括灰质(GM)分割、归一化、调制和空间平滑。然后将得到的 GM 图像与基于人群的 Nathan Kline 研究所罗克兰样本得出的年龄和性别特定 GM 模板进行比较,并编译体素级 z 映射。z 映射以颜色编码,并与主体的 T1w 图像融合。在阿尔茨海默病神经影像学倡议(ADNI)的 1330 名受试者中评估了所提出工作流程的技术成功率。此外,还使用彩色编码图和 MTA 视觉评分量表在这些受试者中评估了内侧颞叶萎缩(MTA)。使用 McNemar 检验比较彩色编码图和 MTA 量表的敏感性和特异性。

结果

由于严重的运动伪影,排除了一个测试数据集。在剩余的 1329 个数据集之外,ADNI 中的 1323 名受试者(99.5%)成功生成了萎缩图。基于内侧颞叶萎缩评估,彩色编码图在 AD 诊断中的敏感性(左侧为 71.4%比 53.3%,p <0.0001;右侧为 70.4%比 55.3%,p <0.0001)和 MCI(左侧为 45.4%比 17.4%,p <0.0001;右侧为 43.5%比 14.6%,p <0.0001)显著高于 MTA 视觉评分量表,而特异性较低(左侧为 78.4%比 93.8%,p <0.0001;右侧为 79.4%比 95.8%,p <0.0001)。该工作流程命名为 veganbagel,并作为具有集成 PACS 接口的开源软件发布。

结论

提出的工作流程用于自动估计脑容量变化是可行的,并且在技术上是可靠的。它为放射学评估脑容量变化和神经退行性疾病提供了很高的潜力。

关键点

  • 一种结合了基于体素形态学和基于人群的神经影像学数据的技术的工作流程是可行的,并且在技术上高度可靠。

  • 该工作流程以 veganbagel 的开源软件形式提供。

  • veganbagel 中从萎缩图得出的内侧颞叶萎缩评估的敏感性超过了 MTA 视觉评分量表在阿尔茨海默病诊断中的敏感性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbdc/7813701/08347e1c74d0/330_2020_7196_Fig1_HTML.jpg

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