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In vivo monitoring of external pressure induced hemodynamics in skin tissue using optical coherence tomography angiography

机译:使用光学相干断层扫描血管造影术对皮肤组织中外部压力诱导的血液动力学进行体内监测

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Characterization of the relationship between external pressure and blood flow is important in the examination of pressure-induced disturbance in tissue microcirculation. Optical coherence tomography (OCT) angiography is a promising imaging technique, capable of providing the noninvasive extraction of functional vessels within the skin tissue with capillary-scale resolution. Here, we present a feasibility study of OCT angiography to monitor effect of external pressures on blood perfusion in human skin tissue in vivo. Graded external pressure is loaded normal to the surface of the nailfold tissue of a healthy human. The incremental loading is applied step by step and then followed by an immediate release. Concurrent OCT imaging of the nailfold is performed during the pre/post loading. Blood perfusion images including baseline (at pre-loading) and corresponding tissue strain maps are calculated from 3D OCT dataset obtained at the different applied pressures, allowing visualization of capillary perfusion events at stressed nailfold tissue. The results indicate that the perfusion progressively decreases with the constant increase of tissue strain. Reactive hyperemia is occurred right after the removal of the pressure corresponding to quick drop of the increased strain. The perfusion is returned to the baseline level after a few minutes. These findings suggest that OCT microangiography may have great potential for quantitatively assessing tissue microcirculation in the locally pressed tissue in vivo.
机译:在检查压力引起的组织微循环障碍时,表征外部压力与血流之间的关系很重要。光学相干断层扫描(OCT)血管造影是一种很有前途的成像技术,能够以毛细管规模的分辨率提供皮肤组织内功能性血管的无创提取。在这里,我们提出了一项可行的OCT血管造影术研究,以监测外界压力对体内人体皮肤组织血液灌注的影响。渐变的外部压力垂直于健康人的指甲折叠组织表面。逐步加载逐步加载,然后立即释放。在装甲前/装甲后同时进行OCT成像。从在不同施加压力下获得的3D OCT数据集计算出包括基线(预加载时)和相应组织应变图的血液灌注图像,从而可以观察受压的指甲褶皱组织处的毛细血管灌注事件。结果表明,随着组织应变的不断增加,灌注逐渐减少。反应性充血是在消除压力后立即发生的,该压力对应于增加的应变的快速下降。几分钟后,灌注将恢复到基线水平。这些发现表明,OCT微血管造影可能具有定量评估体内局部压迫组织中微循环的巨大潜力。

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