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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Impingement angle and scan direction influence on B-scan imaging in tissue classification
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Impingement angle and scan direction influence on B-scan imaging in tissue classification

机译:撞击角度和扫描方向对组织分类中B扫描成像的影响

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摘要

The potential critical influence of impingement angle and scan direction on B-scan imaging for tissue classification is explored in this work. The effects of variations of other system parameters on B-scan images are also investigated. Particular attention is paid to the influence of the direction of propagation of the interrogating wave within the tissue structure. This is done in order to explore the hypothesis that the detection of malignant areas embedded inside a host ordered tissue can be improved by exploiting the disordered structure of the diseased region. Results of preliminary experiments performed on a phantom give an indication that speckle pattern variations due to impingement angle and/or scan direction can occur that relates to the structural properties of the tissue from a scattering point of view. Sample problems are presented to differentiate the structural variations within a tissue by analyzing a phantom constructed of unidirectional fibers arranged in layers that are staggered with respect to each other.
机译:这项工作探讨了撞击角度和扫描方向对B扫描成像进行组织分类的潜在关键影响。还研究了其他系统参数变化对B扫描图像的影响。特别注意询问波在组织结构内的传播方向的影响。这样做是为了探索这样的假设:通过利用患病区域的无序结构,可以改善嵌入宿主有序组织内部的恶性区域的检测。从体模上进行的初步实验的结果表明,由于散射角度和/或扫描方向而引起的斑点图案变化可能会发生,从散射的角度来看,这些变化与组织的结构特性有关。提出了一些样本问题,以通过分析由单向纤维构成的体模来区分组织内的结构变化,该体模以相互交错的层状排列。

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