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Highly sensitive imaging of renal microcirculation in vivo using ultrahigh sensitive optical microangiography

机译:使用超高灵敏度光学微血管造影对体内肾脏微循环进行高灵敏度成像

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摘要

Studying renal microcirculation and its dynamics is of great importance for understanding the renal function and further aiding the diagnosis, prevention and treatment of renal pathologies. In this paper, we present a potentially useful method to provide high-sensitive volumetric imaging of renal microcirculations using ultrahigh-sensitive optical microangiography (UHS-OMAG). The UHS-OMAG image system used here is based on spectral domain optical coherence tomography, which uses a broadband light source centered at 1300 nm with an imaging speed of 150 frames per second that requires ~6.7 sec to complete one 3D scan of ~2.5 × 2.5 mm2 area. The technique is sensitive enough to image capillary networks, such as peritubular capillaries within renal cortex. We show the ability of UHS-OMAG to provide depth-resolved volumetric images of capillary level renal microcirculation. We also show that UHS-OMAG is capable of monitoring the changes of renal microcirculation in response to renal ischemia and reperfusion. Finally, we attempt to show the capability of OMAG to provide quantitative analysis about velocity changes in a single capillary vessel (down to tens of microns per second) in response to the ischemic event.
机译:研究肾脏微循环及其动力学对了解肾脏功能,进一步帮助诊断,预防和治疗肾脏疾病具有重要意义。在本文中,我们提出了一种潜在有用的方法,可使用超高灵敏度光学微血管造影术(UHS-OMAG)对肾脏微循环进行高灵敏度体积成像。此处使用的UHS-OMAG图像系统基于光谱域光学相干断层扫描,该技术使用以1300 nm为中心的宽带光源,每秒成像速度为150帧,需要约6.7秒才能完成约2.5×的3D扫描2.5毫米 2 区域。该技术对成像毛细管网络(例如肾皮质内的肾小管毛细血管)足够敏感。我们展示了UHS-OMAG提供毛细血管水平肾微循环深度分辨体积图像的能力。我们还表明,UHS-OMAG能够监测对肾脏缺血和再灌注的肾脏微循环的变化。最后,我们试图证明OMAG能够对单个毛细管响应缺血事件的速度变化(低至每秒几十微米)进行定量分析。

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