论文标题

特发性脊柱侧弯儿童患者随访

RGB-Topography and X-rays Image Registration for Idiopathic Scoliosis Children Patient Follow-up

论文作者

Setitra, Insaf, Aouaa, Noureddine, Meziane, Abdelkrim, Benrabia, Afef, Kaced, Houria, Belabassi, Hanene, Ziane, Sara Ait, Zenati, Nadia Henda, Djekkoune, Oualid

论文摘要

在每个X射线诊断中,在其随访期间暴露了被诊断患有脊柱侧弯病理的儿童。这种暴露会对患者的健康产生负面影响,并在成年时代引起疾病。为了减少X射线扫描,最近的系统可使用仅使用RGB图像来诊断脊柱侧弯患者。此类系统的输出是一组增强的图像和脊柱侧弯相关的角度。但是,这些角度由于大量的数量而使医生感到困惑。此外,缺乏X射线扫描使医生无法比较RGB和X射线图像,并决定是否减少X射线曝光。在这项工作中,我们利用了在临床诊断期间捕获的脊柱侧弯的RGB图像,以及患者提供的X射线副本,以注册这两个图像并对诊断进行丰富的比较。这项工作首先是建立单域(背面的RGB地形)和多模式(RGB和Xrays)图像数据库,然后根据患者地标进行注册图像,最后将注册的图像融合以进行视觉分析并进行跟进。拟议的注册是基于一个刚性转换,该转换保留了患者背部的拓扑结构。使用颈椎椎骨7的拟议角度最小化以及源和靶标的诊断的后脊柱上标,并使用颈椎上脊柱上的上脊柱上的上骨上骨上的近距离估算刚性转化的参数。在构造的数据库上进行的实验显示了使用我们提出的方法使用基于方程式系统求解的注册相比,使用我们提出的方法进行了更好的单峰注册。

Children diagnosed with a scoliosis pathology are exposed during their follow up to ionic radiations in each X-rays diagnosis. This exposure can have negative effects on the patient's health and cause diseases in the adult age. In order to reduce X-rays scanning, recent systems provide diagnosis of scoliosis patients using solely RGB images. The output of such systems is a set of augmented images and scoliosis related angles. These angles, however, confuse the physicians due to their large number. Moreover, the lack of X-rays scans makes it impossible for the physician to compare RGB and X-rays images, and decide whether to reduce X-rays exposure or not. In this work, we exploit both RGB images of scoliosis captured during clinical diagnosis, and X-rays hard copies provided by patients in order to register both images and give a rich comparison of diagnoses. The work consists in, first, establishing the monomodal (RGB topography of the back) and multimodal (RGB and Xrays) image database, then registering images based on patient landmarks, and finally blending registered images for a visual analysis and follow up by the physician. The proposed registration is based on a rigid transformation that preserves the topology of the patient's back. Parameters of the rigid transformation are estimated using a proposed angle minimization of Cervical vertebra 7, and Posterior Superior Iliac Spine landmarks of a source and target diagnoses. Experiments conducted on the constructed database show a better monomodal and multimodal registration using our proposed method compared to registration using an Equation System Solving based registration.

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