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Improving spatial resolution of a fiber bundle optical biopsy system

机译:改善纤维束光学活检系统的空间分辨率

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To reduce the number of invasive tissue biopsies and needle aspirations performed during cancer screenings, endo-microscopes can be used to image tissue in vivo. However, when optical fiber bundles are used to transmit the image, the resolution of such systems is limited by undersampling due to the spacing of the bundle's individual fibers for a given field of view. We propose a method to increase the sampling of an optical biopsy system and thereby improve the system's resolution. The method involves taking several images, shifting the object and fiber bundle slightly relative to each other from one image to the next. Multiple shifting patterns were evaluated to determine which provided the greatest increase in resolution. The shifted images are later realigned and recombined by a custom algorithm. By combining four shifted images of a USAF resolution target, we were able to measure an improvement in the resolution of the system from approximately 3.9 μm to 2.2 μm. When tested on cultured cells, a visible increase in detail was detectable. This technique can provide the basis for improving the diagnostic abilities of optical biopsy systems.
机译:为了减少在癌症筛查期间进行的侵入性组织活检和穿刺抽吸的次数,可以使用内窥镜在体内对组织成像。但是,当使用光纤束传输图像时,由于给定视场中光纤束的单个光纤的间距,这种系统的分辨率会受到欠采样的限制。我们提出了一种增加光学活检系统采样,从而提高系统分辨率的方法。该方法涉及拍摄几张图像,将物体和光纤束相对彼此从一个图像稍微移到另一个图像。评估了多个移位模式,以确定哪种模式可最大程度地提高分辨率。移位后的图像随后通过自定义算法进行重新对齐和重新组合。通过组合USAF分辨率目标的四个偏移图像,我们能够测量系统分辨率从大约3.9μm到2.2μm的提高。在培养的细胞上进行测试时,可以检测到明显的细节增加。该技术可为提高光学活检系统的诊断能力提供基础。

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