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In vivo microvascular imaging of human oral and nasal cavities using swept-source optical coherence tomography with a single forward/side viewing probe

机译:使用扫描源光学相干断层扫描的人口腔和鼻腔的体内微血管成像用单个前向/侧观察探针

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We report three-dimensional (3D) imaging of microcirculation within human cavity tissues in vivo using a high-speed swept-source optical coherence tomography (SS-OCT) at 1.3 μm with a modified probe interface. Volumetric structural OCT images of the inner tissues of oral and nasal cavities are acquired with a field of view of 2 mm × 2 mm. Two types of disposable and detachable probe attachments are devised and applied to the port of the imaging probe of OCT system, enabling forward and side imaging scans for selective and easy access to specific cavity tissue sites. Blood perfusion is mapped with OCT-based microangiography from 3D structural OCT images, in which a novel vessel extraction algorithm is used to decouple dynamic light scattering signals, due to moving blood cells, from the background scattering signals due to static tissue elements. Characteristic tissue anatomy and microvessel architectures of various cavity tissue regions of a healthy human volunteer are identified with the 3D OCT images and the corresponding 3D vascular perfusion maps at a level approaching capillary resolution. The initial finding suggests that the proposed method may be engineered into a promising tool for evaluating and monitoring tissue microcirculation and its alteration within a wide-range of cavity tissues in the patients with various pathological conditions.
机译:我们人类腔组织内体内使用高速扫描源光学相干断层扫描(SS-OCT)在1.3微米与经修饰的探针接口报告微循环的三维(3D)成像。的口腔和鼻腔内组织的体积结构的OCT图像被获取的视为2mm×2mm的字段。两种类型的一次性和可拆卸探针的附件被设计和施加到OCT系统的成像探针的端口,从而使前向和侧向成像扫描用于向特定腔组织部位选择性和容易获得。血液灌注被映射与来自三维结构的OCT图像,其中一个新的血管提取算法用于解耦动态光散射信号,由于移动的血细胞,从背景散射信号基于OCT-微血管造影由于静态组织元素。一个健康的人类志愿者的各个腔中的组织区域的特征性组织解剖学和微血管结构被识别与3D OCT图像和对应的3D血管灌注图以接近毛细管分辨率的水平。初始发现表明,所提出的方法可以被改造成用于评估和监测在患者的各种病理状况腔组织的一个宽范围内组织的微循环和其改变的有前途的工具。

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