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Evaluation of Novel Genetic Algorithm Generated Schemes for Positron Emission Tomography (PET)/Magnetic Resonance Imaging (MRI) Image Fusion

机译:正电子发射断层扫描(PET)/磁共振成像(MRI)图像融合的新型遗传算法生成方案的评估

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摘要

The use and benefits of a multimodality approach in the context of breast cancer imaging are discussed. Fusion techniques that allow multiple images to be viewed simultaneously are discussed. Many of these fusion techniques rely on the use of color tables. A genetic algorithm that generates color tables that have desired properties such as satisfying the order principle, the rows, and columns principle, have perceivable uniformity and have maximum contrast is introduced. The generated 2D color tables can be used for displaying fused datasets. The advantage the proposed method has over other techniques is the ability to consider a much larger set of possible color tables, ensuring that the best one is found. We asked radiologists to perform a set of tasks reading fused PET/MRI breast images obtained using eight different fusion techniques. This preliminary study clearly demonstrates the need and benefit of a joint display by estimating the inaccuracies incurred when using a side-by-side display. The study suggests that the color tables generated by the genetic algorithm are good choices for fusing MR and PET images. It is interesting to note that popular techniques such as the Fire/Gray and techniques based on the HSV color space, which are prevalent in the literature and clinical practice, appear to give poorer performance.
机译:讨论了在乳腺癌影像学背景下多模态方法的使用和益处。讨论了允许同时查看多个图像的融合技术。这些融合技术中的许多技术都依赖于色表的使用。引入了一种遗传算法,该算法生成具有所需属性(例如满足顺序原理,行和列原理),具有可感知的均匀性并具有最大对比度的颜色表。生成的2D颜色表可用于显示融合的数据集。与其他技术相比,该方法具有的优势是能够考虑更多可能的色表,从而确保找到最佳色表。我们要求放射科医生执行一组任务,以读取使用八种不同融合技术获得的融合PET / MRI乳房图像。这项初步研究通过估算使用并排显示时的不准确性,清楚地表明了联合显示的必要性和好处。研究表明,遗传算法生成的色表是融合MR和PET图像的不错选择。有趣的是,在文学和临床实践中普遍使用的流行技术(例如Fire / Gray和基于HSV颜色空间的技术)似乎性能较差。

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