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Muscle-fat MRI: 1.5 Tesla and 3.0 Tesla versus histology

机译:肌肉脂肪MRI:与组织学相比1.5 Tesla和3.0 Tesla

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Introduction: We evaluated muscle/fat fraction (MFF) accuracy and reliability measured with an MR imaging technique at 1.5 Tesla (T) and 3.0T scanner strengths, using biopsy as reference. Methods: MRI was performed on muscle samples from pig and rabbit species (n=8) at 1.5T and 3.0T. A chemical shift based 2-point Dixon method was used, collecting in-phase and out-of-phase data for fat/water of muscle samples. Values were compared with MFFs calculated from histology. Results: No significant difference was found between 1.5T and 3.0T (P values=0.41-0.96), or between histology and imaging (P=0.83) for any muscle tested. Conclusions: Results suggest that a 2-point Dixon fat/water separation MRI technique may provide reliable quantification of MFFs at varying field strengths across different animal species, and consistency was established with biopsy. The results set a foundation for larger scale investigation of quantifying muscle fat in neuromuscular disorders.
机译:简介:我们以活检为参考,评估了在1.5特斯拉(T)和3.0T扫描仪强度下使用MR成像技术测得的肌肉/脂肪分数(MFF)的准确性和可靠性。方法:在1.5T和3.0T下对来自猪和兔子(n = 8)的肌肉样本进行MRI检查。使用基于化学位移的2点Dixon方法,收集肌肉样本脂肪/水的同相和异相数据。将值与根据组织学计算的MFF进行比较。结果:对于任何测试的肌肉,在1.5T和3.0T之间(P值= 0.41-0.96)或组织学与影像学之间(P = 0.83)均未发现显着差异。结论:结果表明,两点Dixon脂肪/水分离MRI技术可以为不同动物物种在不同场强下提供可靠的MFF定量,并且可以通过活检建立一致性。该结果为定量研究神经肌肉疾病中的肌肉脂肪奠定了基础。

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