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作为脑研究中医学成像与数据管理的信息物理系统的神经成像网络服务接口:设计研究

A Neuroimaging Web Services Interface as a Cyber Physical System for Medical Imaging and Data Management in Brain Research: Design Study.

作者信息

Lizarraga Gabriel, Li Chunfei, Cabrerizo Mercedes, Barker Warren, Loewenstein David A, Duara Ranjan, Adjouadi Malek

机构信息

Center for Advanced Technology and Education, Computer Science, Florida International University, Miami, FL, United States.

Wien Center for Alzheimer's Disease & Memory Disorders, Mount Sinai Medical Center, Miami Beach, FL, United States.

出版信息

JMIR Med Inform. 2018 Apr 26;6(2):e26. doi: 10.2196/medinform.9063.

Abstract

BACKGROUND

Structural and functional brain images are essential imaging modalities for medical experts to study brain anatomy. These images are typically visually inspected by experts. To analyze images without any bias, they must be first converted to numeric values. Many software packages are available to process the images, but they are complex and difficult to use. The software packages are also hardware intensive. The results obtained after processing vary depending on the native operating system used and its associated software libraries; data processed in one system cannot typically be combined with data on another system.

OBJECTIVE

The aim of this study was to fulfill the neuroimaging community’s need for a common platform to store, process, explore, and visualize their neuroimaging data and results using Neuroimaging Web Services Interface: a series of processing pipelines designed as a cyber physical system for neuroimaging and clinical data in brain research.

METHODS

Neuroimaging Web Services Interface accepts magnetic resonance imaging, positron emission tomography, diffusion tensor imaging, and functional magnetic resonance imaging. These images are processed using existing and custom software packages. The output is then stored as image files, tabulated files, and MySQL tables. The system, made up of a series of interconnected servers, is password-protected and is securely accessible through a Web interface and allows (1) visualization of results and (2) downloading of tabulated data.

RESULTS

All results were obtained using our processing servers in order to maintain data validity and consistency. The design is responsive and scalable. The processing pipeline started from a FreeSurfer reconstruction of Structural magnetic resonance imaging images. The FreeSurfer and regional standardized uptake value ratio calculations were validated using Alzheimer’s Disease Neuroimaging Initiative input images, and the results were posted at the Laboratory of Neuro Imaging data archive. Notable leading researchers in the field of Alzheimer’s Disease and epilepsy have used the interface to access and process the data and visualize the results. Tabulated results with unique visualization mechanisms help guide more informed diagnosis and expert rating, providing a truly unique multimodal imaging platform that combines magnetic resonance imaging, positron emission tomography, diffusion tensor imaging, and resting state functional magnetic resonance imaging. A quality control component was reinforced through expert visual rating involving at least 2 experts.

CONCLUSIONS

To our knowledge, there is no validated Web-based system offering all the services that Neuroimaging Web Services Interface offers. The intent of Neuroimaging Web Services Interface is to create a tool for clinicians and researchers with keen interest on multimodal neuroimaging. More importantly, Neuroimaging Web Services Interface significantly augments the Alzheimer’s Disease Neuroimaging Initiative data, especially since our data contain a large cohort of Hispanic normal controls and Alzheimer’s Disease patients. The obtained results could be scrutinized visually or through the tabulated forms, informing researchers on subtle changes that characterize the different stages of the disease.

摘要

背景

大脑结构和功能图像是医学专家研究脑解剖学的重要成像方式。这些图像通常由专家进行目视检查。为了无偏差地分析图像,必须先将其转换为数值。有许多软件包可用于处理图像,但它们复杂且难以使用。这些软件包对硬件要求也很高。处理后获得的结果因所使用的原生操作系统及其相关软件库而异;在一个系统中处理的数据通常不能与另一个系统上的数据合并。

目的

本研究的目的是满足神经成像学界对一个通用平台的需求,该平台可使用神经成像网络服务接口存储、处理、探索和可视化他们的神经成像数据及结果,神经成像网络服务接口是一系列设计为用于脑研究中神经成像和临床数据的网络物理系统的处理管道。

方法

神经成像网络服务接口接受磁共振成像、正电子发射断层扫描、扩散张量成像和功能磁共振成像。这些图像使用现有的和定制的软件包进行处理。然后将输出存储为图像文件、列表文件和MySQL表。该系统由一系列相互连接的服务器组成,有密码保护,可通过网络界面安全访问,并允许(1)可视化结果和(2)下载列表数据。

结果

所有结果均使用我们的处理服务器获得,以保持数据的有效性和一致性。该设计响应迅速且可扩展。处理管道从对结构磁共振成像图像进行FreeSurfer重建开始。使用阿尔茨海默病神经成像计划的输入图像对FreeSurfer和区域标准化摄取值比率计算进行了验证,结果发布在神经成像实验室数据存档中。阿尔茨海默病和癫痫领域的知名领先研究人员已使用该接口访问和处理数据并可视化结果。带有独特可视化机制的列表结果有助于指导更明智的诊断和专家评级,提供了一个真正独特的多模态成像平台,该平台结合了磁共振成像、正电子发射断层扫描、扩散张量成像和静息态功能磁共振成像。通过至少2名专家参与的专家视觉评级加强了质量控制组件。

结论

据我们所知,没有经过验证的基于网络的系统能提供神经成像网络服务接口所提供的所有服务。神经成像网络服务接口的目的是为对多模态神经成像有浓厚兴趣的临床医生和研究人员创建一个工具。更重要的是,神经成像网络服务接口显著扩充了阿尔茨海默病神经成像计划的数据,特别是因为我们的数据包含大量西班牙裔正常对照和阿尔茨海默病患者队列。所获得的结果可以通过目视或通过列表形式进行审查,为研究人员提供有关该疾病不同阶段特征的细微变化的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce93/5945984/6158a224c214/medinform_v6i2e26_fig1.jpg

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