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An optimized algorithm of image stitching in the case of a multi-modal probe for monitoring the evolution of scars

机译:一种用于监测疤痕演化的多模态探头的图像缝合优化算法

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We propose a new system that makes possible to monitor the evolution of scars after the excision of a tumorous dermatosis. The hardware part of this system is composed of a new optical innovative probe with which two types of images can be acquired simultaneously: an anatomic image acquired under a white light and a functional one based on autofluorescence from the protoporphyrin within the cancer cells. For technical reasons related to the maximum size of the area covered by the probe, acquired images are too small to cover the whole scar. That is why a sequence of overlapping images is taken in order to cover the required area. The main goal of this paper is to describe the creation of two panoramic images (anatomic and functional). Fluorescence images do not have enough salient information for matching the images; stitching algorithms are applied over each couple of successive white light images to produce an anatomic panorama of the entire scar. The same transformations obtained from this step are used to register and stitch the functional images. Several experiments have been implemented using different stitching algorithms (SIFT, ASIFT and SURF), with various transformation parameters (angles of rotation, projection, scaling, etc…) and different types of skin images. We present the results of these experiments that propose the best solution. Thus, clinician has two panoramic images superimposed and usable for diagnostic support. A collaborative layer is added to the system to allow sharing panoramas among several practitioners over different places.
机译:我们提出了一种新的系统,可以在切除肿瘤皮肤病后监测疤痕的演变。该系统的硬件部分由新的光学创新探针组成,具有同时获取两种类型的图像:在白光下获取的解剖图像和基于来自癌细胞内的原始荧光的功能性荧光。出于技术原因与探头所覆盖的区域的最大尺寸相关,所获取的图像太小而无法覆盖整个瘢痕。这就是为什么采取一系列重叠图像以覆盖所需区域。本文的主要目标是描述两个全景图像(解剖学和功能)的创建。荧光图像没有足够的危号信息来匹配图像;拼接算法应用于每对连续白光图像,以产生整个瘢痕的解剖全景。从该步骤获得的相同变换用于注册和缝合功能图像。已经使用不同的拼接算法(SIFT,asift和冲浪)来实现几个实验,具有各种变换参数(旋转角度,投影,缩放等)和不同类型的皮肤图像。我们介绍了这些实验的结果,提出了最佳解决方案。因此,临床医生有两个全景图像叠加和可用于诊断支持。将协作层添加到系统中,以允许在不同地方的几个从业者之间共享全景。

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