Dynamic multivoxel-localized31P MRS during plantar flexion exercise with variable knee angle
Author:
Affiliation:
1. Center for Medical Physics and Biomedical Engineering; Medical University of Vienna; Austria
2. Highfield MR Center; Medical University of Vienna; Austria
3. Department of Clinical Pharmacology; Medical University of Vienna; Austria
Funder
Austrian Science Fund
Austrian BMFWF
Publisher
Wiley
Subject
Spectroscopy,Radiology Nuclear Medicine and imaging,Molecular Medicine
Reference32 articles.
1. Observation of tissue metabolites using 31P nuclear magnetic resonance;Hoult;Nat,1974
2. Skeletal muscle energetics with PNMR: Personal views and historic perspectives;Chance;NMR Biomed,2006
3. Quantification of skeletal muscle mitochondrial function by 31P magnetic resonance spectroscopy techniques: A quantitative review;Kemp;Acta Physiol (Oxf),2015
4. Skeletal muscle ATP synthesis and cellular H+ handling measured by localized 31P-MRS during exercise and recovery;Fiedler;Sci Rep,2016
5. Absolute quantification of phosphorus metabolite concentrations in human muscle in vivo by 31P MRS: A quantitative review;Kemp;NMR Biomed,2007
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