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首页> 外文期刊>NeuroImage >Noise concerns and post-processing procedures in cerebral blood flow (CBF) and cerebral blood volume (CBV) functional magnetic resonance imaging
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Noise concerns and post-processing procedures in cerebral blood flow (CBF) and cerebral blood volume (CBV) functional magnetic resonance imaging

机译:脑血流(CBF)和脑血容量(CBV)功能磁共振成像中的噪声问题和后处理程序

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摘要

Functional neuroimaging with blood oxygenation level-dependent (BOLD) contrast has emerged as the most popular method for evaluating qualitative changes in brain function in humans. At typical human field strengths (1.5-3.0 T), BOLD contrast provides a measure of changes in transverse water relaxation rates in and around capillary and venous blood, and as such provides only a surrogate marker of brain function that depends on dynamic changes in hemodynamics (e.g., cerebral blood flow and volume) and metabolism (e.g., oxygen extraction fraction and the cerebral metabolic rate of oxygen consumption). Alternative functional neuroimaging methods that are specifically sensitive to these constituents of the BOLD signal are being developed and applied in a growing number of clinical and neuroscience applications of quantitative cerebral physiology. These methods require additional considerations for interpreting and quantifying their contrast responsibly. Here, an overview of two popular methods, arterial spin labeling and vascular space occupancy, is presented specifically in the context of functional neuroimaging. Appropriate post-processing and experimental acquisition strategies are summarized with the motivation of reducing sensitivity to noise and unintended signal sources and improving quantitative accuracy of cerebral hemodynamics.
机译:具有血氧水平依赖性(粗体)对比的功能性神经影像已经成为评估人类脑功能的定性变化的最常见的方法。在典型的人场强度(1.5-3.0t),粗体对比度提供毛细血管和静脉血液中横向水松弛率的变化的衡量标记,因此仅提供了血流动力学的动态变化的替代脑功能标记(例如,脑血流量和体积)和代谢(例如,氧气提取级分和氧代代谢耗氧率)。正在开发和应用对这些粗体信号的这些组分特异性敏感的替代功能性神经成像方法,并应用于数量脑生理学的营养性临床和神经科学应用。这些方法需要额外的考虑因素负责地解释和量化它们的对比。这里,在功能性神经化的背景下具体介绍了两种流行的方法,动脉旋转标记和血管空间占用率的概述。概括了适当的后处理和实验性收购策略,其动机降低了对噪声和意想不到的信号源的敏感性以及提高脑血流动动力学的定量准确性。

著录项

  • 来源
    《NeuroImage》 |2017年第2017期|共16页
  • 作者单位

    Vanderbilt Univ Sch Med Radiol &

    Radiol Sci Nashville TN 37212 USA;

    Vanderbilt Univ Sch Med Radiol &

    Radiol Sci Nashville TN 37212 USA;

    Vanderbilt Univ Sch Med Radiol &

    Radiol Sci Nashville TN 37212 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 诊断学;
  • 关键词

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