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Journal Abstract Search


99 related items for PubMed ID: 9622384

  • 1. Mitochondrial dysfunction of human muscle in chronic alcoholism detected by using 31P-magnetic resonance spectroscopy and near-infrared light absorption.
    Haida M, Yazaki K, Kurita D, Shinohara Y.
    Alcohol Clin Exp Res; 1998 May; 22(S3 Pt 1):108S-110S. PubMed ID: 9622384
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  • 3. Mitochondrial function and oxygen supply in normal and in chronically ischemic muscle: a combined 31P magnetic resonance spectroscopy and near infrared spectroscopy study in vivo.
    Kemp GJ, Roberts N, Bimson WE, Bakran A, Harris PL, Gilling-Smith GL, Brennan J, Rankin A, Frostick SP.
    J Vasc Surg; 2001 Dec; 34(6):1103-10. PubMed ID: 11743568
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  • 4. High-energy phosphate metabolism during incremental calf exercise in patients with unilaterally symptomatic peripheral arterial disease measured by phosphor 31 magnetic resonance spectroscopy.
    Greiner A, Esterhammer R, Messner H, Biebl M, Mühlthaler H, Fraedrich G, Jaschke WR, Schocke MF.
    J Vasc Surg; 2006 May; 43(5):978-86. PubMed ID: 16678693
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  • 6. 31P-NMR study of skeletal muscle metabolism in patients with chronic respiratory impairment.
    Kutsuzawa T, Shioya S, Kurita D, Haida M, Ohta Y, Yamabayashi H.
    Am Rev Respir Dis; 1992 Oct; 146(4):1019-24. PubMed ID: 1416390
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  • 7. Skeletal muscle metabolism in myotonic dystrophy A 31P magnetic resonance spectroscopy study.
    Barnes PR, Kemp GJ, Taylor DJ, Radda GK.
    Brain; 1997 Oct; 120 ( Pt 10)():1699-711. PubMed ID: 9365364
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  • 8. Bio-energetic changes in human gastrocnemius muscle 1-2 days after strenuous exercise.
    Kemp GJ, Taylor DJ, Radda GK, Rajagopalan B.
    Acta Physiol Scand; 1992 Sep; 146(1):11-4. PubMed ID: 1442119
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  • 9. High-energy phosphate metabolism in the calf muscle of healthy humans during incremental calf exercise with and without moderate cuff stenosis.
    Greiner A, Esterhammer R, Bammer D, Messner H, Kremser C, Jaschke WR, Fraedrich G, Schocke MF.
    Eur J Appl Physiol; 2007 Mar; 99(5):519-31. PubMed ID: 17206438
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  • 10. Bioenergetics of intact human muscle. A 31P nuclear magnetic resonance study.
    Taylor DJ, Bore PJ, Styles P, Gadian DG, Radda GK.
    Mol Biol Med; 1983 Jul; 1(1):77-94. PubMed ID: 6679873
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  • 12. Bioenergetics of skeletal muscle in mitochondrial myopathy.
    Taylor DJ, Kemp GJ, Radda GK.
    J Neurol Sci; 1994 Dec 20; 127(2):198-206. PubMed ID: 7707079
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  • 15. Abnormal cardiac and skeletal muscle energy metabolism in patients with type 2 diabetes.
    Scheuermann-Freestone M, Madsen PL, Manners D, Blamire AM, Buckingham RE, Styles P, Radda GK, Neubauer S, Clarke K.
    Circulation; 2003 Jun 24; 107(24):3040-6. PubMed ID: 12810608
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  • 16. [Simultaneous measurement of muscle energy metabolism by MRS and frequency-domain NIR spectroscopy].
    Zhao J, Ding HS, Ruan MQ, Kime R, Chance B.
    Guang Pu Xue Yu Guang Pu Fen Xi; 2005 Jun 24; 25(6):861-5. PubMed ID: 16201358
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  • 18. Effects of active and passive recoveries on splitting of the inorganic phosphate peak determined by 31P-nuclear magnetic resonance spectroscopy.
    Yoshida T, Watari H, Tagawa K.
    NMR Biomed; 1996 Feb 24; 9(1):13-9. PubMed ID: 8842028
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  • 19. Simultaneous in vivo measurements of HbO2 saturation and PCr kinetics after exercise in normal humans.
    McCully KK, Iotti S, Kendrick K, Wang Z, Posner JD, Leigh J, Chance B.
    J Appl Physiol (1985); 1994 Jul 24; 77(1):5-10. PubMed ID: 7961273
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  • 20. Muscle metabolism and acid-base status during exercise in forearm work-related myalgia measured with 31P-MRS.
    Raymer GH, Green HJ, Ranney DA, Marsh GD, Thompson RT.
    J Appl Physiol (1985); 2009 Apr 24; 106(4):1198-206. PubMed ID: 19112160
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