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高密度扩散光学断层成像的定量评估:体内分辨率和映射性能。

Quantitative evaluation of high-density diffuse optical tomography: in vivo resolution and mapping performance.

机构信息

Washington University School of Medicine, Department of Radiology and Department of Physics, St. Louis, Missouri 63110, USA.

出版信息

J Biomed Opt. 2010 Mar-Apr;15(2):026006. doi: 10.1117/1.3368999.

Abstract

Despite the unique brain imaging capabilities and advantages of functional near-infrared spectroscopy (fNIRS), including portability and comprehensive hemodynamic measurement, widespread acceptance in the neuroimaging community has been hampered by low spatial resolution and image localization errors. While recent technical developments such as high-density diffuse optical tomography (HD-DOT) have, in principle, been shown to have superior in silico image quality, the majority of optical imaging studies are still conducted with sparse fNIRS arrays, perhaps partially because the performance increases of HD-DOT appear incremental. Without a quantitative comparative analysis between HD-DOT and fNIRS, using both simulation and in vivo neuroimaging, the implications of the new HD-DOT technology have been difficult to judge. We present a quantitative comparison of HD-DOT and two commonly used fNIRS geometries using (1) standard metrics of image quality, (2) simulated brain mapping tasks, and (3) in vivo visual cortex mapping results in adult humans. The results show that better resolution and lower positional errors are achieved with HD-DOT and that these improvements provide a substantial advancement in neuroimaging capability. In particular, we demonstrate that HD-DOT enables detailed phase-encoded retinotopic mapping, while sparse arrays are limited to imaging individual block-design visual stimuli.

摘要

尽管功能近红外光谱 (fNIRS) 具有独特的脑成像功能和优势,包括便携性和全面的血液动力学测量,但由于空间分辨率低和图像定位误差,它在神经影像学界的广泛接受受到了阻碍。虽然最近的技术发展,如高密度漫射光学断层扫描 (HD-DOT),在理论上已经显示出具有更高的图像质量,但大多数光学成像研究仍然使用稀疏的 fNIRS 阵列进行,部分原因可能是 HD-DOT 的性能提高似乎是渐进的。由于没有对 HD-DOT 和 fNIRS 进行定量比较分析,因此我们使用模拟和体内神经影像学进行了研究,很难判断这项新技术的影响。我们使用 (1) 图像质量的标准指标、(2) 模拟大脑映射任务和 (3) 成人视觉皮层的体内映射结果,对 HD-DOT 和两种常用的 fNIRS 几何结构进行了定量比较。结果表明,HD-DOT 可以实现更好的分辨率和更低的位置误差,并且这些改进为神经影像学能力提供了实质性的进步。特别是,我们证明了 HD-DOT 能够实现详细的相位编码视网膜映射,而稀疏阵列仅限于单个块设计视觉刺激的成像。

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