首页> 外文会议>Physiology, Function, and Structure from Medical Images pt.1; Progress in Biomedical Optics and Imaging; vol.7,no.29 >Application of multi-resolution modality independent elastography for detection of multiple anomalous objects
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Application of multi-resolution modality independent elastography for detection of multiple anomalous objects

机译:多分辨率模态无关弹性成像在检测多个异常物体中的应用

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This work extends a recently realized inverse problem technique of extracting soft tissue elasticity information via non-rigid model-based image registration. The algorithm uses the elastic properties of the tissue in a biomechanical model to achieve maximal similarity between image data acquired under different states of loading. A new multi-resolution, nonlinear optimization framework has been employed which allows for improved performance and object detection. Prior studies have demonstrated successful reconstructions from images of a tissue-like thin membrane phantom with a single embedded inclusion that was significantly stiffer than its surroundings. For this investigation, a similar phantom was fabricated with two stiff inclusions to test the effectiveness of this method in discriminating multiple smaller objects. Elasticity values generated from both simulation and real data testing scenarios provided sufficient contrast for detection and good quantitative localization of the inclusion areas.
机译:这项工作扩展了最近实现的反问题技术,该技术通过基于非刚性模型的图像配准提取软组织弹性信息。该算法在生物力学模型中利用组织的弹性特性来实现在不同加载状态下获取的图像数据之间的最大相似度。已经采用了一种新的多分辨率,非线性优化框架,可以改善性能和检测物体。先前的研究表明,可以从组织样的薄膜幻影的图像中成功重建,该幻影具有单个嵌入的内含物,其周围环境明显坚硬。为了进行这项研究,制作了一个带有两个刚性夹杂物的相似模型,以测试该方法在区分多个较小物体方面的有效性。从模拟和真实数据测试场景中生成的弹性值为检测和包含区域的良好定量定位提供了足够的对比度。

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