首页> 外文会议>1999 International Conference on Biomedical Optics >Microscopic imaging through tissue-like turbid media
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Microscopic imaging through tissue-like turbid media

机译:通过组织状浑浊介质进行显微成像

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Abstract: Imaging an object embedded in turbid media has become considerably active during the last ten years because of its potential applications including tumor diagnoses in medical and biomedical studies. One method in this area is called transillumination imaging, in which case, image resolution is in the millimeter scale. To increase image resolution, an objective is needed to focus an illumination beam onto a sample. However, the time-gating method, which is usually used in transillumination imaging, becomes less efficient. To solve this problem, we have proposed an angle-grating method for microscopic imaging through a turbid medium. In our experiment, the angle-gating mechanism is implemented by the use of a pair of matched annular filters in the illumination and collection optical paths. The experimental results show that image resolution in a tens-of-micrometer scale is feasible with angle-gating. This new method is then combined with polarization-gating for selecting photons maintaining the incident polarization state, which carry more information of an object embedded in a turbid medium. In the case of a thick turbid medium, the differential polarization intensity can be achieved by subtracting the perpendicular-polarization intensity from the parallel- polarization intensity. Our experimental results on imaging through milk suspension demonstrate that image resolution is significantly improved when differential polarization-gating is employed. Image resolution of tens of micrometer has been achieved in a thick turbid medium, which is 15 times better than that achieved using the transillumination imaging method in a similar medium. With the concept of an effective point spread function derived in a turbid medium, image resolution through a turbid medium may further improve in post image processing.!21
机译:摘要:由于在医学和生物医学研究中包括肿瘤诊断在内的潜在应用,在过去十年中对嵌入浑浊介质中的物体进行成像已变得相当活跃。该领域中的一种方法称为透照成像,在这种情况下,图像分辨率为毫米级。为了提高图像分辨率,需要一个物镜将照明光束聚焦到样品上。但是,通常在透照成像中使用的时间门控方法效率降低。为了解决这个问题,我们提出了一种角度光栅方法,用于通过混浊介质的显微成像。在我们的实验中,通过在照明和收集光路中使用一对匹配的环形滤光片来实现角度选通机制。实验结果表明,角度选通可以在数十微米范围内实现图像分辨率。然后,将这种新方法与极化选通相结合,以选择保持入射极化状态的光子,这些光子携带嵌入到浑浊介质中的物体的更多信息。在较厚的混浊介质的情况下,可以通过从平行偏振强度中减去垂直偏振强度来获得差分偏振强度。我们通过牛奶悬浮液成像的实验结果表明,使用差分偏振门控时,图像分辨率会显着提高。在较厚的混浊介质中已实现了数十微米的图像分辨率,这比在类似介质中使用透射照明成像方法获得的分辨率高15倍。使用从浑浊介质中导出的有效点扩散函数的概念,通过浑浊介质的图像分辨率可在后期图像处理中进一步提高!21

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