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Knowledge-based topographic feature extraction in medical images

机译:医学图像中知识的地形特征提取

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Diagnostic medical imaging often contains variations of patient anatomies, camera mispositioning, or other imperfect imaging condiitons. These variations contribute to uncertainty about shapes and boundaries of objects in images. As the results sometimes image features, such as traditional edges, may not be identified reliably and completely. We describe a knowledge based system that is able to reason about such uncertainties and use partial and locally ambiguous information to infer about shapes and lcoation of objects in an image. The system uses directional topographic features (DTFS), such as ridges and valleys, labeled from the underlying intensity surface to correlate to the intrinsic anatomical information. By using domain specific knowledge, the reasoning system can deduce significant anatomical landmarks based upon these DTFS, and can cope with uncertainties and fill in missing information. A succession of levels of representation for visual information and an active process of uncertain reasoning about this visual information are employed to realiably achieve the goal of image analysis. These landmarks can then be used in localization of anatomy of interest, image registration, or other clinical processing. The successful application of this system to a large set of planar cardiac images of nuclear medicine studies has demonstrated its efficiency and accuracy.
机译:诊断医学成像通常含有患者解剖,相机失值或其他不完美的成像条件的变化。这些变化有助于图像中物体的形状和边界的不确定性。结果,结果有时,例如传统边缘的图像特征可能无法可靠且完全地识别。我们描述了一种基于知识的系统,能够推理这些不确定性,并使用部分和局部模糊的信息来推断图像中对象的形状和LCoation。该系统使用从底层强度表面标记的脊和谷等方向性地形特征(DTF),以与内在解剖信息相关联。通过使用域的特定知识,推理系统可以基于这些DTF推导出显着的解剖标志,并且可以应对不确定性并填写缺失的信息。使用视觉信息的表现水平和关于该视觉信息的不确定推理的活动过程来实现图像分析的目标。然后可以将这些地标用于兴趣解剖学,图像登记或其他临床处理的本地化。将该系统的成功应用于一大集的核医学研究的心脏图像已经证明了其效率和准确性。

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