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Time multiplexed super resolution of multicore fiber endoscope using multimode fiber illumination patterns

机译:使用多模光纤照明模式的多芯光纤内窥镜的时间多路复用超分辨率

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摘要

Optical fibers' flexible mechanics and thin diameter makes them highly desirable for imaging in the field of optical endoscopy. Their ability to efficiently convey light towards an external imaging sensor outside the subject's body, allows an optical fiber-based system to achieve high-resolution optical imaging from inside the body. Typically, commercial systems consist of a single core illumination fiber and a multi-core imaging fiber. Each of the cores acts like a fiber in itself, and serves as a single pixel in the final image. To eliminate core-to-core light coupling, each core has to be separated from its neighbor with a sufficient length. This creates a pixelated image having reduced resolution for small overall fiber diameter and it is being damaged by pixelization artifacts.In this paper we describe a method that uses a multimode illumination fiber to project different high-resolution patterns on the inspected sample. Images of the different patterns illuminating the inspected sample are then taken using a multi-core imaging fiber, and a post processing algorithm eliminates the pixelization effects and increases the imaging resolution. The advantage of the proposed concept is that the overall endoscope can have overall very thin diameter which consists from a very thin low-resolution multi-core fiber and a diameter of a projection multi-mode fiber which is also being very thin.
机译:光纤的柔性力学和薄直径使得它们非常希望用于在光学内窥镜检查领域进行成像。它们能够在受试者身体外部朝向外部成像传感器的能力,允许光纤基系统从体内实现高分辨率的光学成像。通常,商业系统由单芯照明光纤和多核成像光纤组成。每个核心本身起作用,并且用作最终图像中的单个像素。为了消除核心光耦合,必须将每个芯与其邻居分开,具有足够的长度。这将产生具有减小的分辨率的像素化图像,用于小的整体纤维直径,并且它被像素化伪影损坏。本文描述了一种使用多模照度光纤在检查的样本上投影不同高分辨率模式的方法。然后使用多核成像光纤照射照亮所检查样品的不同图案,并且后处理算法消除了像素化效果并增加了成像分辨率。所提出的概念的优点是整体内窥镜可以具有总体非常薄的直径,该直径由非常薄的低分辨率多芯光纤和投影多模光纤的直径而成,这也是非常薄的。

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