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首页> 外文期刊>Optics Letters >Cerebral blood flow imaged with ultrahigh-resolution optical coherence angiography and Doppler tomography
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Cerebral blood flow imaged with ultrahigh-resolution optical coherence angiography and Doppler tomography

机译:超高分辨率光学相干血管造影和多普勒断层扫描成像的脑血流

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摘要

Speckle contrast based optical coherence angiography (OCA) and optical coherence Doppler tomography (ODT) have been applied to image cerebral blood flow previously. However, the contrast mechanisms of these two methods are not fully studied. Here, we present both flow phantom and in vivo animal experiments using ultrahigh-resolution OCA ((mu)OCA) and ODT ((mu)ODT) to investigate the flow sensitivity differences between these two methods. Our results show that the high sensitivity of (mu)OCA for visualizing minute vasculature (e.g., slow capillary beds) is due to the enhancement by random Brownian motion of scatterers (e.g., red and white blood cells) within the vessels; whereas, (mu)ODT permits detection of directional flow below the Brownian motion regime (e.g., laser-induced microischemia) and is, therefore, more suitable for brain functional imaging.
机译:基于斑点对比的光学相干血管造影(OCA)和光学相干多普勒断层扫描(ODT)已被应用于图像脑血流。但是,这两种方法的对比机制尚未完全研究。在这里,我们介绍了使用超高分辨率OCA(μOCA)和ODT(μODT)进行的体模和体内动物实验,以研究这两种方法之间的流动敏感性差异。我们的结果表明,(μ)OCA对可视化微小脉管系统(例如,缓慢的毛细血管床)的高敏感性是由于血管内散射体(例如,红细胞和白细胞)的随机布朗运动增强了;然而,μODT允许检测低于布朗运动状态的定向流(例如,激光诱导的微缺血),因此更适合于脑功能成像。

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