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首页> 外文期刊>Acta oncologica. >Improved quality of computed tomography substitute derived from magnetic resonance (MR) data by incorporation of spatial information-potential application for MR-only radiotherapy and attenuation correction in positron emission tomography
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Improved quality of computed tomography substitute derived from magnetic resonance (MR) data by incorporation of spatial information-potential application for MR-only radiotherapy and attenuation correction in positron emission tomography

机译:通过将空间信息势应用合并到仅用于MR的放射治疗和正电子发射断层摄影术中的衰减校正中,改进了从磁共振(MR)数据得出的计算机断层摄影术替代品的质量

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Background. Estimation of computed tomography (CT) equivalent data, i.e. a substitute CT (s-CT), from magnetic resonance (MR) images is a prerequisite both for attenuation correction of positron emission tomography (PET) data acquired with a PET/MR scanner and for dose calculations in an MR-only radiotherapy workflow. It has previously been shown that it is possible to estimate Hounsfield numbers based on MR image intensities, using ultra short echo-time imaging and Gaussian mixture regression (GMR). In the present pilot study we investigate the possibility to also include spatial information in the GMR, with the aim to improve the quality of the s-CT. Material and methods. MR and CT data for nine patients were used in the present study. For each patient, GMR models were created from the other eight patients, including either both UTE image intensities and spatial information on a voxel by voxel level, or only UTE image intensities. The models were used to create s-CT images for each respective patient. Results. The inclusion of spatial information in the GMR model improved the accuracy of the estimated s-CT. The improvement was most pronounced in smaller, complicated anatomical regions as the inner ear and post-nasal cavities. Conclusions. This pilot study shows that inclusion of spatial information in GMR models to convert MR data to CT equivalent images is feasible. The accuracy of the s-CT is improved and the spatial information could make it possible to create a general model for the conversion applicable to the whole body.
机译:背景。从磁共振(MR)图像估计计算机断层扫描(CT)等效数据(即替代CT(s-CT))是使用PET / MR扫描仪获取的正电子发射断层扫描(PET)数据的衰减校正和用于仅MR放射治疗工作流程中的剂量计算。先前已经表明,可以使用超短回波时间成像和高斯混合回归(GMR)基于MR图像强度来估计Hounsfield数。在当前的初步研究中,我们调查了在GMR中也包含空间信息的可能性,目的是提高s-CT的质量。材料与方法。本研究使用了9例患者的MR和CT数据。对于每位患者,从其他八位患者中创建GMR模型,包括UTE图像强度和按体素水平在体素上的空间信息,或仅包含UTE图像强度。这些模型用于为每个患者创建s-CT图像。结果。在GMR模型中包含空间信息提高了估计s-CT的准确性。这种改善在较小且复杂的解剖区域如内耳和鼻腔后最为明显。结论这项初步研究表明,在GMR模型中包含空间信息以将MR数据转换为CT等效图像是可行的。 s-CT的准确性得到提高,空间信息可以为通用转换创建通用模型。

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