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Journal Abstract Search


164 related items for PubMed ID: 1625368

  • 1. High-energy phosphate metabolism of the myocardium in normal subjects and patients with various cardiomyopathies--the study using ECG gated MR spectroscopy with a localization technique.
    Masuda Y, Tateno Y, Ikehira H, Hashimoto T, Shishido F, Sekiya M, Imazeki Y, Imai H, Watanabe S, Inagaki Y.
    Jpn Circ J; 1992 Jun; 56(6):620-6. PubMed ID: 1625368
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  • 2. Absolute concentrations of high-energy phosphate metabolites in normal, hypertrophied, and failing human myocardium measured noninvasively with (31)P-SLOOP magnetic resonance spectroscopy.
    Beer M, Seyfarth T, Sandstede J, Landschütz W, Lipke C, Köstler H, von Kienlin M, Harre K, Hahn D, Neubauer S.
    J Am Coll Cardiol; 2002 Oct 02; 40(7):1267-74. PubMed ID: 12383574
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  • 3. In vivo phosphorus-31 spectroscopic imaging in patients with global myocardial disease.
    Schaefer S, Gober JR, Schwartz GG, Twieg DB, Weiner MW, Massie B.
    Am J Cardiol; 1990 May 01; 65(16):1154-61. PubMed ID: 2139540
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  • 4. Measuring inorganic phosphate and intracellular pH in the healthy and hypertrophic cardiomyopathy hearts by in vivo 7T 31P-cardiovascular magnetic resonance spectroscopy.
    Valkovič L, Clarke WT, Schmid AI, Raman B, Ellis J, Watkins H, Robson MD, Neubauer S, Rodgers CT.
    J Cardiovasc Magn Reson; 2019 Mar 14; 21(1):19. PubMed ID: 30871562
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  • 5. In vivo mouse myocardial (31)P MRS using three-dimensional image-selected in vivo spectroscopy (3D ISIS): technical considerations and biochemical validations.
    Bakermans AJ, Abdurrachim D, van Nierop BJ, Koeman A, van der Kroon I, Baartscheer A, Schumacher CA, Strijkers GJ, Houten SM, Zuurbier CJ, Nicolay K, Prompers JJ.
    NMR Biomed; 2015 Oct 14; 28(10):1218-27. PubMed ID: 26269430
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  • 6. Normal and diffusely abnormal myocardium in humans: functional and metabolic characterization with P-31 MR spectroscopy and cine MR imaging.
    Auffermann W, Chew WM, Wolfe CL, Tavares NJ, Parmley WW, Semelka RC, Donnelly T, Chatterjee K, Higgins CB.
    Radiology; 1991 Apr 14; 179(1):253-9. PubMed ID: 2006287
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  • 7. [31P Magnetic Resonance Spectroscopy in Patients With Various Genesis of Left Ventricular Hypertrophy].
    Ternovoy SK, Mazaev VV, Stukalova OV, Serova NS.
    Kardiologiia; 2015 Apr 14; 55(9):5-9. PubMed ID: 26898088
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  • 11. Human Cardiac 31P-MR Spectroscopy at 3 Tesla Cannot Detect Failing Myocardial Energy Homeostasis during Exercise.
    Bakermans AJ, Bazil JN, Nederveen AJ, Strijkers GJ, Boekholdt SM, Beard DA, Jeneson JAL.
    Front Physiol; 2017 Apr 14; 8():939. PubMed ID: 29230178
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  • 12. Influence of aging or left ventricular hypertrophy on the human heart: contents of phosphorus metabolites measured by 31P MRS.
    Okada M, Mitsunami K, Inubushi T, Kinoshita M.
    Magn Reson Med; 1998 May 14; 39(5):772-82. PubMed ID: 9581609
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  • 16. Evaluation of altered myocardial high energy phosphate metabolism in patients on maintenance dialysis using phosphorus-31 magnetic resonance spectroscopy.
    Tagami T, Sakuma H, Matsumura K, Takeda K, Mori S, Takeuchi T, Nakano T.
    Invest Radiol; 1998 Mar 14; 33(3):171-6. PubMed ID: 9525756
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  • 17. Exercise-induced decrease in myocardial high-energy phosphate metabolites in patients with Chagas heart disease.
    Betim Paes Leme AM, Salemi VM, Weiss RG, Parga JR, Ianni BM, Mady C, Kalil-Filho R.
    J Card Fail; 2013 Jul 14; 19(7):454-60. PubMed ID: 23834921
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  • 20. Noninvasive assessment of cardiomyopathy development with simultaneous measurement of topical 1H- and 31P-magnetic resonance spectroscopy.
    Toyo-oka T, Nagayama K, Suzuki J, Sugimoto T.
    Circulation; 1992 Jul 14; 86(1):295-301. PubMed ID: 1319856
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