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功能磁共振成像中统一参数管理、实验控制和数据分析的新概念:应用于3T和7T的实时功能磁共振成像

A new concept of a unified parameter management, experiment control, and data analysis in fMRI: application to real-time fMRI at 3T and 7T.

作者信息

Hollmann M, Mönch T, Mulla-Osman S, Tempelmann C, Stadler J, Bernarding J

机构信息

Department of Medical Informatics, Otto-von-Guericke University, Magdeburg, Germany.

出版信息

J Neurosci Methods. 2008 Oct 30;175(1):154-62. doi: 10.1016/j.jneumeth.2008.08.013. Epub 2008 Aug 19.

Abstract

In functional MRI (fMRI) complex experiments and applications require increasingly complex parameter handling as the experimental setup usually consists of separated soft- and hardware systems. Advanced real-time applications such as neurofeedback-based training or brain computer interfaces (BCIs) may even require adaptive changes of the paradigms and experimental setup during the measurement. This would be facilitated by an automated management of the overall workflow and a control of the communication between all experimental components. We realized a concept based on an XML software framework called Experiment Description Language (EDL). All parameters relevant for real-time data acquisition, real-time fMRI (rtfMRI) statistical data analysis, stimulus presentation, and activation processing are stored in one central EDL file, and processed during the experiment. A usability study comparing the central EDL parameter management with traditional approaches showed an improvement of the complete experimental handling. Based on this concept, a feasibility study realizing a dynamic rtfMRI-based brain computer interface showed that the developed system in combination with EDL was able to reliably detect and evaluate activation patterns in real-time. The implementation of a centrally controlled communication between the subsystems involved in the rtfMRI experiments reduced potential inconsistencies, and will open new applications for adaptive BCIs.

摘要

在功能磁共振成像(fMRI)中,复杂的实验和应用对参数处理的要求日益提高,因为实验装置通常由独立的软件和硬件系统组成。诸如基于神经反馈的训练或脑机接口(BCI)等先进的实时应用甚至可能需要在测量过程中对范式和实验装置进行适应性更改。全面工作流程的自动化管理以及对所有实验组件之间通信的控制将有助于实现这一点。我们基于一个名为实验描述语言(EDL)的XML软件框架实现了一个概念。与实时数据采集、实时功能磁共振成像(rtfMRI)统计数据分析、刺激呈现和激活处理相关的所有参数都存储在一个中央EDL文件中,并在实验过程中进行处理。一项将中央EDL参数管理与传统方法进行比较的可用性研究表明,整个实验操作得到了改进。基于这一概念,一项实现基于动态rtfMRI的脑机接口的可行性研究表明,所开发的系统与EDL相结合能够实时可靠地检测和评估激活模式。rtfMRI实验中各子系统之间中央控制通信的实现减少了潜在的不一致性,并将为自适应BCI开辟新的应用领域。

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