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Quantitative quality-control metrics for in vivo oximetry in small vessels by visible light optical coherence tomography angiography

机译:通过可见光光学相干断层扫描血管造影术对小血管进行体内血氧定量的质量控制指标

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摘要

Biological functions rely on local microvasculature to deliver oxygen and nutrients and carry away metabolic waste. Alterations to local oxygenation levels are manifested in diseases including cancer, diabetes mellitus, etc. The ability to quantify oxygen saturation (sO2) within microvasculature in vivo to assess local tissue oxygenation and metabolic function is highly sought after. Visible light optical coherence tomography (vis-OCT) angiography has shown promise in reaching this goal. However, achieving reliable measurements in small vessels can be challenging due to the reduced contrast and requires data averaging to improve the spectral data quality. Therefore, a method for quality-control of the vis-OCT data from small vessels becomes essential to reject unreliable readings. In this work, we present a quantitative metrics to evaluate the spectral data for a reliable measurement of sO2, including angiography signal to noise ratio (SNR), spectral anomaly detection and discard, and theory-experiment correlation analysis. The thresholds for each quantity can be flexibly adjusted according to different applications and system performance. We used these metrics to measure sO2 of C57BL/6J mouse lower extremity microvasculature and validated it by introducing hyperoxia for expected sO2 changes. After validation, we applied this protocol on C57BL/6J mouse ear microvasculature to conduct in vivo small blood vessel OCT oximetry. This work seeks to standardize the data processing method for in vivo oximetry in small vessels by vis-OCT.
机译:生物功能依赖于局部微脉管系统来输送氧气和营养,并带走代谢废物。在包括癌症,糖尿病等在内的疾病中表现出局部氧合水平的改变。人们强烈寻求在体内量化微脉管系统中的氧饱和度(sO 2)以评估局部组织氧合和代谢功能的能力。可见光光学相干断层扫描(vis-OCT)血管造影已显示出实现这一目标的希望。但是,由于对比度降低,因此在小型容器中实现可靠的测量可能具有挑战性,并且需要对数据进行平均以提高光谱数据的质量。因此,对于拒绝来自不可靠读数的小型船只的vis-OCT数据进行质量控制的方法变得至关重要。在这项工作中,我们提出了一种定量指标来评估光谱数据,以可靠地测量sO2,包括血管造影信噪比(SNR),光谱异常检测和丢弃以及理论与实验相关性分析。每个数量的阈值可以根据不同的应用和系统性能灵活调整。我们使用这些指标来测量C57BL / 6J小鼠下肢微脉管系统的sO2,并通过引入高氧来预期sO2的变化来对其进行验证。验证后,我们将此协议应用于C57BL / 6J小鼠耳朵微脉管系统以进行体内小血管OCT血氧饱和度测定。这项工作旨在通过vis-OCT标准化小血管体内血氧饱和度的数据处理方法。

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