共 26 条
[1]
Thulborn K, Radda G, Correlation of oxygen consumption with energy metabolism by in vivo NMR, J Cereb Blood Flow Metab, 1, (1981)
[2]
Thulborn K, Waterton J, Matthews P, Radda G, Oxy‐genation dependence of the transverse relaxation time of water protons in whole blood at high field, Biochim Biophys Acta, 714, pp. 265-270, (1982)
[3]
Gomori J, Grossman R, Yu-Ip C, Asakura T, NMR relaxation times of blood: dependence on field strength, oxidation state, and cell integrity, J Comput Assist To‐mogr, 11, pp. 684-690, (1987)
[4]
Hayman L, Ford J, Taber K, Saleem A, Round M, Bryan R, T<sub>2</sub> effect of hemoglobin concentration: assessment with in vitro MR spectroscopy, Radiology, 168, pp. 489-491, (1988)
[5]
Terrier F, Lazeyras F, Posse S, Et al., Study of acute renal ischemia in the rat using magnetic resonance imaging and spectroscopy, Magn Reson Med, 12, pp. 114-136, (1989)
[6]
Ogawa S, Lee T, Nayak A, Glynn P, Oxygenation‐sensi‐tive contrast in magnetic resonance image of rodent brain at high magnetic fields, Magn Reson Med, 14, pp. 68-78, (1990)
[7]
Bryant R, Marill K, Blackmore C, Francis C, Magnetic relaxation in blood and blood clots, Magn Reson Med, 13, pp. 133-144, (1990)
[8]
Matwiyoff N, Gasparovic C, Mazurchuk R, Matwiyoff G, The line shapes of the water proton resonances of red blood cells containing carbonyl hemoglobin, deoxyhemo‐globin, and methemoglobin, Magn Reson Imaging, 8, pp. 295-301, (1990)
[9]
Luz Z, Meiboom S, Nuclear magnetic resonance study of the protolysis of trimethylammonium ion in aqueous solution: order of the reaction with respect to the solvent, J Chem Phys, 39, pp. 366-370, (1963)
[10]
Labotka RJ, Measurement of intracellular pH and de‐oxyhemoglobin concentration in deoxygenated erythro‐cytes by phosphorus‐31 nuclear magnetic resonance, Biochemistry, 23, pp. 5549-5555, (1984)