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Development of a computer vision binocular system for non-contact small animal model skin cancer tumour imaging

机译:用于非接触小动物模型皮肤癌肿瘤成像的计算机视觉双目体系的开发

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This paper describes the development of a novel gauging computer vision system for murine non-melanoma skin cancer tumours volume imaging. The system utilized binocular stereovision, enhanced through the use of telecentric lenses. These lenses optically compromised for the distortion factors and provided orthographic projection, leading to parallax free image acquisition. In order to improve the resolution of the system, a structured light projector, with 450 nm dominant wavelength, was used to illuminate the target with a custom pattern. Robust image processing algorithms granted accurate segmentation, feature recognition, labeling and correlation between the stereo pairs. Under these premises, the well-known "matching" problem was resolved successfully and geometrical interpolation provided an accurate three-dimensional reconstruction of the tumour volume. Through back-projection of the calibration object the resolution of the system was calculated up to 0.04 mm. The system was applied to measure the induced geometrical alterations of the tumour after PDT by using the Fosgel photosensitizer, excited by a laser diode emitting at 652 nm. The measurement of the volume induced alterations after each PDT treatment and up to the final tumour shrinkage is critical, to compare PDT efficacy between different protocols.
机译:本文介绍了小鼠非黑色素瘤皮肤癌肿瘤体积成像的新型测量计算机视觉系统的开发。该系统利用双目立体宽度,通过使用远心镜头增强。这些镜片光学损害用于失真因子并提供正交投影,导致视差自由图像采集。为了改善系统的分辨率,使用具有450nm的主导波长的结构化光投影仪来利用自定义图案来照亮目标。强大的图像处理算法授予立体对之间准确的分割,要素识别,标记和相关性。在这些前提下,已知众所周知的“匹配”问题已成功解决,几何内插提供了肿瘤体积的准确三维重建。通过校准对象的背部投影系统的分辨率计算高达0.04 mm。应用该系统通过使用福斯格光敏剂在PDT后测量肿瘤的诱导的几何改变,通过在652nm处发射的激光二极管激发。每次PDT治疗和最终肿瘤收缩后的体积诱导的改变的测量是至关重要的,以比较不同方案之间的PDT功效。

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