首页> 外文期刊>Physics in medicine and biology. >Continuous MR bone density measurement using water- and fat-suppressed projection imaging (WASPI) for PET attenuation correction in PET-MR
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Continuous MR bone density measurement using water- and fat-suppressed projection imaging (WASPI) for PET attenuation correction in PET-MR

机译:使用水和脂肪抑制的投影成像(WASPI)连续进行MR骨密度测量,以校正PET-MR中的PET衰减

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摘要

Due to the lack of signal from solid bone in normal MR sequences for the purpose of MR-based attenuation correction, investigators have proposed using the ultrashort echo time (UTE) pulse sequence, which yields signal from bone. However, the UTE-based segmentation approach might not fully capture the intra-and inter-subject bone density variation, which will inevitably lead to bias in reconstructed PET images. In this work, we investigated using the water-and fat-suppressed proton projection imaging (WASPI) sequence to obtain accurate and continuous attenuation for bones. This approach is capable of accounting for intra-and inter-subject bone attenuation variations. Using data acquired from a phantom, we have found that that attenuation correction based on the WASPI sequence is more accurate and precise when compared to either conventional MR attenuation correction or UTE-based segmentation approaches.
机译:由于出于基于MR的衰减校正的目的,正常MR序列中缺乏来自实心骨骼的信号,因此研究人员提出了使用超短回波时间(UTE)脉冲序列的方法,该序列可从骨骼产生信号。但是,基于UTE的分割方法可能无法完全捕获受试者内部和受试者之间的骨密度变化,这将不可避免地导致重建的PET图像出现偏差。在这项工作中,我们使用水和脂肪抑制的质子投影成像(WASPI)序列进行了研究,以获取准确连续的骨骼衰减。这种方法能够解决受试者内部和受试者之间的骨衰减变化。使用从幻像获得的数据,我们发现,与常规MR衰减校正或基于UTE的分割方法相比,基于WASPI序列的衰减校正更加准确。

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