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Edge preserving smoothing and segmentation of 4-D images via transversely isotropic scale-space processing and fingerprint analysis

机译:通过横向各向同性尺度空间处理和指纹分析,对边缘保留的4D图像进行平滑和分割

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Enhancements are described for an approach that unifies edge preserving smoothing with segmentation of time sequences of volumetric images, based on differential edge detection at multiple spatial and temporal scales. Potential applications of these 4-D methods include segmentation of respiratory gated positron emission tomography (PET) transmission images to improve accuracy of attenuation correction for imaging heart and lung lesions, and segmentation of dynamic cardiac single photon emission computed tomography (SPECT) images to facilitate unbiased estimation of time-activity curves and kinetic parameters for left ventricular volumes of interest. Improved segmentation of lung surfaces in simulated respiratory gated cardiac PET transmission images is achieved with a 4-D edge detection operator composed of edge preserving 1-D operators applied in various spatial and temporal directions. Smoothing along the axis of a 1-D operator is driven by structure separation seen in the scale-space fingerprint, rather than by image contrast. Spurious noise structures are reduced with use of small-scale isotropic smoothing in directions transverse to the 1-D operator axis. Analytic expressions are obtained for directional derivatives of the smoothed, edge preserved image, and the expressions are used to compose a 4-D operator that detects edges as zero-crossings in the second derivative in the direction of the image intensity gradient. Additional improvement in segmentation is anticipated with use of multiscale transversely isotropic smoothing and a novel interpolation method that improves the behavior of the directional derivatives. The interpolation method is demonstrated on a simulated 1-D edge and incorporation of the method into the 4-D algorithm is described.
机译:描述了一种增强方法,该方法基于多个空间和时间尺度的差分边缘检测,通过对体积图像的时间序列进行分割来统一边缘保留平滑处理。这些4-D方法的潜在应用包括分割呼吸门控正电子发射断层扫描(PET)透射图像以提高对心脏和肺部病变进行成像的衰减校正的准确性,以及分割动态心脏单光子发射计算机断层扫描(SPECT)图像以方便感兴趣的左心室容积的时间活动曲线和动力学参数的无偏估计。使用4-D边缘检测算子实现了在模拟呼吸门控的心脏PET透射图像中肺表面的改进分割,该算子由应用于各个空间和时间方向的边缘保留一维算子组成。沿一维运算符的轴进行平滑处理是通过在比例空间指纹中看到的结构分离而不是图像对比度来驱动的。通过在横向于一维操作员轴的方向上进行小规模的各向同性平滑,可以减少杂散噪声结构。获得了平滑的边缘保留图像的方向导数的解析表达式,并且该表达式用于组成4-D算子,该算子在图像强度梯度的方向上将边缘检测为二阶导数中的零交叉。通过使用多尺度横向各向同性平滑和改进方向导数特性的新型插值方法,可以期望在分割方面有进一步的改进。在模拟的一维边缘上演示了插值方法,并介绍了该方法在4-D算法中的结合。

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