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OCT methods for capillary velocimetry

机译:OCT毛细管测速法

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To date, two main categories of OCT techniques have been described for imaging hemodynamics: Doppler OCT and OCT angiography. Doppler OCT can measure axial velocity profiles and flow in arteries and veins, while OCT angiography can determine vascular morphology, tone, and presence or absence of red blood cell (RBC) perfusion. However, neither method can quantify RBC velocity in capillaries, where RBC flow is typically transverse to the probe beam and single-file. Here, we describe new methods that potentially address these limitations. Firstly, we describe a complex-valued OCT signal in terms of a static scattering component, dynamic scattering component, and noise. Secondly, we propose that the time scale of random fluctuations in the dynamic scattering component are related to red blood cell velocity. Analysis was performed along the slow axis of repeated B-scans to parallelize measurements. We correlate our purported velocity measurements against two-photon microscopy measurements of RBC velocity, and investigate changes during hypercapnia. Finally, we image the ischemic stroke penumbra during distal middle cerebral artery occlusion (dMCAO), where OCT velocimetry methods provide additional insight that is not afforded by either Doppler OCT or OCT angiography.
机译:迄今为止,已经描述了两种主要的OCT技术来成像血流动力学:多普勒OCT和OCT血管造影。多普勒OCT可以测量轴向速度分布和动脉和静脉中的流量,而OCT血管造影可以确定血管的形态,音调以及是否存在红细胞(RBC)灌注。但是,这两种方法都无法量化毛细管中的RBC速度,在这种情况下,RBC流动通常垂直于探测光束和单光束。在这里,我们描述了可能解决这些限制的新方法。首先,我们从静态散射分量,动态散射分量和噪声的角度描述了复数值OCT信号。其次,我们提出动态散射分量随机波动的时间尺度与红细胞速度有关。沿着重复的B扫描的慢轴执行分析以并行化测量。我们将我们所谓的速度测量结果与RBC速度的两光子显微镜测量结果相关联,并调查高碳酸血症期间的变化。最后,我们对远端中脑动脉闭塞(dMCAO)期间的缺血性中风半影进行了成像,其中OCT测速法提供了多普勒OCT或OCT血管造影术无法提供的其他见解。

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