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Physiological basis and image processing in functional magnetic resonance imaging: Neuronal and motor activity in brain

机译:功能磁共振成像的生理基础和图像处理:大脑的神经元和运动活动

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摘要

Functional magnetic resonance imaging (fMRI) is recently developing as imaging modality used for mapping hemodynamics of neuronal and motor event related tissue blood oxygen level dependence (BOLD) in terms of brain activation. Image processing is performed by segmentation and registration methods. Segmentation algorithms provide brain surface-based analysis, automated anatomical labeling of cortical fields in magnetic resonance data sets based on oxygen metabolic state. Registration algorithms provide geometric features using two or more imaging modalities to assure clinically useful neuronal and motor information of brain activation. This review article summarizes the physiological basis of fMRI signal, its origin, contrast enhancement, physical factors, anatomical labeling by segmentation, registration approaches with examples of visual and motor activity in brain. Latest developments are reviewed for clinical applications of fMRI along with other different neurophysiological and imaging modalities.
机译:功能磁共振成像(fMRI)作为一种用于在大脑激活方面绘制与神经元和运动事件相关的组织血氧水平依赖性(BOLD)的血流动力学的成像方式,最近正在发展。通过分割和配准方法执行图像处理。分割算法提供基于大脑表面的分析,基于氧代谢状态的磁共振数据集中皮质区域的自动解剖标记。配准算法使用两种或多种成像方式提供几何特征,以确保临床有用的大脑激活的神经元和运动信息。这篇综述文章总结了功能磁共振成像信号的生理学基础,其来源,对比增强,物理因素,通过分割的解剖学标记,配准方法以及大脑中视觉和运动活动的例子。综述了功能磁共振成像的临床应用以及其他不同的神经生理和影像学方法的最新进展。

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