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Advances in low-coherence interferometry for tissue imaging

机译:组织成像的低相干干涉测量研究进展

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We present fiberized OCT systems developed to image biological tissue with high depth resolution. The systems can deliver transversal as well as longitudinal OCT images. When in the transversal mode, the systems provide a confocal image simultaneously with the OCT image. Design particularly in adopting the system for imaging either the skin or the retina in vivo are presented. They refer to the interface optics, power to the tissue and imaging speed. Images from retina and skin in vitro and in vivo are shown. When applied to the eye, line rates up to 1 kHz and frame rates up to 5 Hz can be used. In order to improve the penetration depth in skin, lower scanning rates are used. ALso, flow of milk into a vessel simulator is investigated using Doppler OCT. In this case, no transversal scanning is applied. The laminar profile of the velocity inside the vessel is determined with the depth accuracy of the OCT.
机译:我们将开发的OCT系统呈现为具有高深度分辨率的图像生物组织。系统可以提供横向和纵向OCT图像。当在横向模式中时,系统与OCT图像同时提供共焦图像。特别是在采用体内成像的系统中采用系统,特别是设计。他们指的是接口光学,电源到组织和成像速度。显示了视网膜和皮肤的图像,显​​示出体外和体内。当应用于眼睛时,可以使用高达1 kHz的线速率和高达5Hz的帧速率。为了改善皮肤的穿透深度,使用较低的扫描速率。此外,使用多普勒OCT研究牛奶流入血管模拟器。在这种情况下,不应用横向扫描。血管内的速度的层状轮廓以OCT的深度精度确定。

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