MR-Based Metabolic Characterization of Skeletal Muscle: Methods and Applications

M. Krššák
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Abstract

Assessment of the tissue metabolism gained a new opportunity with advent and dissemination of the in vivo magnetic resonance spectroscopy (MRS) and imaging methods. Skeletal muscle is readily accessible for non-invasive investigation. While MRI allows for the assessment macroscopic fat distribution, MRS allows for the quantification of ectopic of fat compartments and metabolic profiling of skeletal muscle. Volume selected proton MRS can be applied for the assessment of intramyocellular lipids, creatine, acetylcarnitine, and carnosine. Characterization of glucose fluxes from biopsy specimen could have been replaced by 13C and 31P MRS, which was able to quantify defects of glucose metabolism in diabetes and other insulin resistant states. Basal and stimulated intracellular energy metabolism can be monitored by 31P MRS and combination of spectroscopy and physiologic examinations of the skeletal muscle function and energetic metabolism can help to identify the links between impaired metabolism, function, aging and or training status. Selected issues with respect to methodological issues of skeletal muscle MRS and research oriented applications will be presented and discussed.
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基于核磁共振的骨骼肌代谢表征:方法和应用
随着体内磁共振波谱(MRS)和成像技术的出现和推广,对组织代谢的评估获得了新的机会。骨骼肌易于进行无创检查。MRI可以评估宏观脂肪分布,而MRS可以量化脂肪室异位和骨骼肌代谢谱。体积选择质子MRS可用于评估细胞内脂质,肌酸,乙酰肉碱和肌肽。活检标本中葡萄糖通量的表征可以用13C和31P MRS代替,这可以量化糖尿病和其他胰岛素抵抗状态下葡萄糖代谢的缺陷。基础和受刺激的细胞内能量代谢可以通过31P MRS监测,骨骼肌功能和能量代谢的光谱学和生理学检查相结合可以帮助识别代谢受损、功能、衰老和/或训练状态之间的联系。关于骨骼肌磁共振成像的方法学问题和面向研究的应用将提出和讨论选定的问题。
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