超声医学图像分割算法综述

S. Sridevi, M. Sundaresan
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引用次数: 25

摘要

视觉信息在我们生活的几乎所有领域都扮演着重要的角色。如今,这些信息中的大部分都是以数字方式表示和处理的。图像处理无处不在,其应用范围从电视到计算机断层扫描,从摄影到印刷,从机器人到遥感和医疗应用。超声是医学应用技术之一。它用于临床。最重要的技术包括换能器、光束形成、造影剂、用于测量血流的脉冲压缩技术和三维成像。超声成像提供了一种有价值的成像方式,提供了以下功能:易于使用,低成本,安全,无创和快速的检查。超声成像系统为检查甲状腺、乳腺、腹部器官、心脏、肌肉、肌腱、动静脉等人体各组织提供了有效的手段。本文旨在介绍目前用于医学图像的分割算法。讨论了每一种算法,并确定了它们的主要应用领域。将该算法应用于超声图像分割的实验,以进一步评估其行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Survey of image segmentation algorithms on ultrasound medical images
Visual information plays an important role in almost all areas our life. Nowadays, much of this information is represented and processed digitally. Image processing is ubiquitous, with the applications ranging from Television (TV) to Computed Tomography, from Photography to Printing, from Robotics to remote sensing and medical applications. Ultrasound is one of the techniques for medical application. It is used for clinical usage. The most important technologies include transducers, beam forming, contrast agents, pulse compression techniques for measuring blood flow and three-dimensional imaging. Ultrasound imaging provides valuable imaging modality to provide the following functionalities as ease of use, low cost, safe, non invasive and fast examination. Ultrasound imaging system provides effective way for examining the various tissues of human body including thyroid, breast, abdominal organs, heart, muscles, tendons, arteries and veins. This paper aims to present on current segmentation algorithms used for medical images. Each and every type of algorithm is discussed as well as their main application fields identified. Experiments that apply the algorithms to segment ultrasound images are presented to further evaluate their behaviour.
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