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Enhanced delineation of degradation in aortic walls through OCT

机译:通过OCT增强主动脉墙中的降解划清

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Degradation of the wall of human ascending thoracic aorta has been assessed through Optical Coherence Tomography (OCT). OCT images of the media layer of the aortic wall exhibit micro-structure degradation in case of diseased aortas from aneurysmal vessels or in aortas prone to aortic dissections. The degeneration in vessel walls appears as low-reflectivity areas due to the invasive appearance of acidic polysaccharides and mucopolysaccharides within a typical ordered microstructure of parallel lamellae of smooth muscle cells, elastin and collagen fibers. An OCT indicator of wall degradation can be generated upon the spatial quantification of the extension of degraded areas in a similar way as conventional histopathology. This proposed OCT marker offers a real-time clinical insight of the vessel status to help cardiovascular surgeons in vessel repair interventions. However, the delineation of degraded areas on the B-scan image from OCT is sometimes difficult due to presence of speckle noise, variable SNR conditions on the measurement process, etc. Degraded areas could be outlined by basic thresholding techniques taking advantage of disorders evidences in B-scan images, but this delineation is not always optimum and requires complex additional processing stages. This work proposes an optimized delineation of degraded spots in vessel walls, robust to noisy environments, based on the analysis of the second order variation of image intensity of backreflection to determine the type of local structure. Results improve the delineation of wall anomalies providing a deeper physiological perception of the vessel wall conditions. Achievements could be also transferred to other clinical scenarios: carotid arteries, aorto-iliac or ilio-femoral sections, intracranial, etc.
机译:通过光学相干断层扫描(OCT)评估人升胸主动脉壁的劣化。主动脉壁的介质层的OCT图像显示出在动脉瘤血管或易于主动脉夹层的患病的主动脉中的微结构降解。由于平滑肌细胞,弹性蛋白和胶原纤维的平行薄片的典型有序的微观结构内的酸性多糖和粘膜糖的侵袭性外观,血管壁的变性看起来低反射率区域。在与常规组织病理学类似的方式的脱脂区域的延伸时,可以产生壁劣化的OCT指示器。这提出的OCT标记提供了船舶地位的实时临床洞察,以帮助心血管外科医生在船舶修复干预中。然而,由于存在斑点噪声的存在,测量过程的变量SNR条件等,来自OCT的B扫描图像上的B扫描图像上的逐渐逐渐困难。通过基本阈值技术利用疾病证据,可以概述劣化区域。 B扫描图像,但这种描绘并不总是最佳的并且需要复杂的额外处理阶段。这项工作提出了优化的浮雕斑点在血管壁中的劣化斑点,基于对反抗射的图像强度的二阶变化来确定局部结构的第二阶变化。结果改善了墙壁异常的描绘,提供了对血管壁条件的更深层次的生理感知。成就也可以转移到其他临床情景:颈动脉,主动脉动脉,主动脉,髂骨或伊氏股,颅内等。

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