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Multi-atlas-based CT synthesis from conventional MRI with patch-based refinement for MRI-based radiotherapy planning

机译:基于常规MRI的基于多标准的CT合成,具有基于蛋白的放射治疗计划的蛋白酶的细化

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Accurate CT synthesis, sometimes called electron density estimation, from MRI is crucial for successful MRI-based radiotherapy planning and dose computation. Existing CT synthesis methods are able to synthesize normal tissues but are unable to accurately synthesize abnormal tissues (i.e., tumor), thus providing a suboptimal solution. We propose a multi-atlas-based hybrid synthesis approach that combines multi-atlas registration and patch-based synthesis to accurately synthesize both normal and abnormal tissues. Multi-parametric atlas MR images are registered to the target MR images by multi-channel deformable registration, from which the atlas CT images are deformed and fused by locally-weighted averaging using a structural similarity measure (SSIM). Synthetic MR images are also computed from the registered atlas MRIs by using the same weights used for the CT synthesis; these are compared to the target patient MRIs allowing for the assessment of the CT synthesis fidelity. Poor synthesis regions are automatically detected based on the fidelity measure and refined by a patch-based synthesis. The proposed approach was tested on brain cancer patient data, and showed a noticeable improvement for the tumor region.
机译:精确的CT合成,有时称为电子密度估计,来自MRI对于成功的基于MRI的放射治疗计划和剂量计算至关重要。现有的CT合成方法能够合成正常组织,但不能精确地合成异常组织(即,肿瘤),从而提供次优溶液。我们提出了一种基于多标准的混合合成方法,其结合了多标准的注册和基于贴剂的合成,以精确地合成正常和异常组织。通过多通道可变形的注册将多参数ATLAS MR图像注册到目标MR图像,通过使用结构相似度测量(SSIM)通过本地加权的平均来实现ATLAS CT图像。通过使用用于CT合成的相同权重,还通过注册的ATLAS MRI计算合成MR图像;将这些与目标患者MRIS进行比较,允许评估CT综合保真度。基于保真度测量自动检测差的合成区域,并通过基于贴剂的合成来改进。该方法对脑癌患者数据进行了测试,并对肿瘤区显示出明显的改善。

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