Fiber orientation measurements by diffusion tensor imaging improve hydrogen-1 magnetic resonance spectroscopy of intramyocellular lipids in human leg muscles
暂无分享,去创建一个
Feng Gao | Sunil K. Valaparla | Giuseppe Daniele | Muhammad A. Abdul-Ghani | Geoffrey D. Clarke | M. Abdul-Ghani | G. Clarke | G. Daniele | S. Valaparla | Feng Gao
[1] Zhaohua Ding,et al. DTI‐based muscle fiber tracking of the quadriceps mechanism in lateral patellar dislocation , 2009, Journal of magnetic resonance imaging : JMRI.
[2] K. Conley,et al. Skeletal muscle mitochondrial capacity and insulin resistance in type 2 diabetes. , 2011, The Journal of clinical endocrinology and metabolism.
[3] M. Roden,et al. The Role of Lipid Accumulation in Liver and Muscle for Insulin Resistance and Type 2 Diabetes Mellitus in Humans , 2004, Reviews in Endocrine and Metabolic Disorders.
[4] Usha Sinha,et al. Human soleus muscle architecture at different ankle joint angles from magnetic resonance diffusion tensor imaging. , 2011, Journal of applied physiology.
[5] T. Dresselaers,et al. Evaluation of intramyocellular lipid breakdown during exercise by biochemical assay, NMR spectroscopy, and Oil Red O staining. , 2007, American journal of physiology. Endocrinology and metabolism.
[6] Thorsten Feiweier,et al. Comparison of twice refocused spin echo versus stimulated echo diffusion tensor imaging for tracking muscle fibers , 2015, Journal of magnetic resonance imaging : JMRI.
[7] Vanhamme,et al. Improved method for accurate and efficient quantification of MRS data with use of prior knowledge , 1997, Journal of magnetic resonance.
[8] F. Schick,et al. Association of increased intramyocellular lipid content with insulin resistance in lean nondiabetic offspring of type 2 diabetic subjects. , 1999, Diabetes.
[9] J. Lexell,et al. Human aging, muscle mass, and fiber type composition. , 1995, The journals of gerontology. Series A, Biological sciences and medical sciences.
[10] Zhaohua Ding,et al. Quantitative diffusion tensor MRI-based fiber tracking of human skeletal muscle. , 2007, Journal of applied physiology.
[11] Fritz Schick,et al. Role of proton MR for the study of muscle lipid metabolism , 2006, NMR in biomedicine.
[12] Jingfei Ma. Dixon techniques for water and fat imaging , 2008, Journal of magnetic resonance imaging : JMRI.
[13] A. Sherry,et al. 1H MRS of intramyocellular lipids in soleus muscle at 7 T: Spectral simplification by using long echo times without water suppression , 2010, Magnetic resonance in medicine.
[14] M. Bredella,et al. Comparison of 3.0 T proton magnetic resonance spectroscopy short and long echo‐time measures of intramyocellular lipids in obese and normal‐weight women , 2010, Journal of magnetic resonance imaging : JMRI.
[15] R. Kreis,et al. Content of intramyocellular lipids derived by electron microscopy, biochemical assays, and (1)H-MR spectroscopy. , 2002, Journal of applied physiology.
[16] Ligong Wang,et al. Relaxation times of skeletal muscle metabolites at 7T , 2009, Journal of magnetic resonance imaging : JMRI.
[17] D. van Ormondt,et al. Improved algorithm for noniterative time-domain model fitting to exponentially damped magnetic resonance signals , 1987 .
[18] A. Häkkinen,et al. Intramyocellular lipid is associated with resistance to in vivo insulin actions on glucose uptake, antilipolysis, and early insulin signaling pathways in human skeletal muscle. , 2001, Diabetes.
[19] M. Johnson,et al. Data on the distribution of fibre types in thirty-six human muscles. An autopsy study. , 1973, Journal of the neurological sciences.
[20] D. Bluemke,et al. Myocardial fat quantification in humans: Evaluation by two‐point water‐fat imaging and localized proton spectroscopy , 2010, Magnetic resonance in medicine.
[21] F. Schick,et al. Measurement of intracellular triglyceride stores by H spectroscopy: validation in vivo. , 1999, American journal of physiology. Endocrinology and metabolism.
[22] Christian M Langton,et al. Comparison of fat quantification methods: A phantom study at 3.0T , 2008, Journal of magnetic resonance imaging : JMRI.
[23] G. Adriany,et al. Influence of foot orientation on the appearance and quantification of 1H magnetic resonance muscle spectra obtained from the soleus and the vastus lateralis , 2012, Magnetic resonance in medicine.
[24] L. Thienpont,et al. Interpreting method comparison studies by use of the bland-altman plot: reflecting the importance of sample size by incorporating confidence limits and predefined error limits in the graphic. , 2004, Clinical chemistry.
[25] R. Ross,et al. Skeletal muscle lipid concentration quantified by magnetic resonance imaging. , 2004, The American journal of clinical nutrition.
[26] F. Schick,et al. Intramyocellular lipids and insulin resistance , 2004, Diabetes, obesity & metabolism.
[27] D. Downham,et al. Distribution of different fibre types in human skeletal muscles Fibre type arrangement in m. vastus lateralis from three groups of healthy men between 15 and 83 years , 1983, Journal of the Neurological Sciences.
[28] Usha Sinha,et al. In vivo diffusion tensor imaging of the human calf muscle , 2006, Journal of magnetic resonance imaging : JMRI.
[29] M. Bruvold,et al. High-Resolution Echo-Planar Spectroscopic Imaging of the Human Calf , 2014, PloS one.
[30] S. Månsson,et al. Simultaneous quantification of fat content and fatty acid composition using MR imaging , 2013, Magnetic resonance in medicine.
[31] W. Grodd,et al. Intramyocellular lipid quantification from 1H long echo time spectra at 1.5 and 3 T by means of the LCModel technique , 2006, Journal of magnetic resonance imaging : JMRI.
[32] Zenon Starčuk,et al. Quantitation of magnetic resonance spectroscopy signals: the jMRUI software package , 2009 .
[33] Krista Vandenborne,et al. Chemical shift‐based MRI to measure fat fractions in dystrophic skeletal muscle , 2014, Magnetic resonance in medicine.
[34] S. Stannard,et al. Fasting for 72 h increases intramyocellular lipid content in nondiabetic, physically fit men. , 2002, American journal of physiology. Endocrinology and metabolism.
[35] F. Schick,et al. Optimized in-phase and opposed-phase MR imaging for accurate detection of small fat or water fractions: theoretical considerations and experimental application in emulsions , 2011, Magnetic Resonance Materials in Physics, Biology and Medicine.
[36] R. Spencer,et al. Distinct patterns of fat metabolism in skeletal muscle of normal-weight, overweight, and obese humans. , 2008, American journal of physiology. Regulatory, integrative and comparative physiology.
[37] Jullie W Pan,et al. Regional differences in intramyocellular lipids in humans observed by in vivo 1H-MR spectroscopic imaging. , 2001, Journal of applied physiology.
[38] Usha Sinha,et al. Reproducibility analysis of diffusion tensor indices and fiber architecture of human calf muscles in vivo at 1.5 Tesla in neutral and plantarflexed ankle positions at rest , 2011, Journal of magnetic resonance imaging : JMRI.
[39] F Schick,et al. Echoplanar diffusion tensor imaging of the lower leg musculature using eddy current nulled stimulated echo preparation , 2006, Magnetic resonance in medicine.
[40] R. DeFronzo,et al. Chronic Reduction of Plasma Free Fatty Acid Improves Mitochondrial Function and Whole-Body Insulin Sensitivity in Obese and Type 2 Diabetic Individuals , 2014, Diabetes.
[41] D. Graveron-Demilly,et al. Java-based graphical user interface for the MRUI quantitation package , 2001, Magnetic Resonance Materials in Physics, Biology and Medicine.
[42] D. Woessner,et al. Orientation of lipid strands in the extracellular compartment of muscle: Effect on quantitation of intramyocellular lipids , 2009, Magnetic resonance in medicine.
[43] Thomas D. Sandry,et al. Introductory Statistics With R , 2003, Technometrics.
[44] D. Altman,et al. STATISTICAL METHODS FOR ASSESSING AGREEMENT BETWEEN TWO METHODS OF CLINICAL MEASUREMENT , 1986, The Lancet.
[45] Chris Boesch,et al. Skeletal muscle 1H MRSI before and after prolonged exercise. I. muscle specific depletion of intramyocellular lipids , 2012, Magnetic resonance in medicine.