3Zimmer H G, Martius P A, Maschner G. Myocardial infarction in rats: effects of metabolic and pharmacologic interventions [J]. Basic Res Cardiol, 1989, 84: 332-343.
4Mauser M, Hoffmeister H M, Nienaber C, et al. Influence of ribose, adenosine, and "AICAR" on the rate of myocardial adenosine triphosphate synthesis during reperfusion after coronary artery occlusion in the dog[J]. Circ Res, 1985, 56:220-230.
5Sasajima K, Yoneda M. Carbohydrate metabolism-mutants of a Bacillus species part Ⅱ. D-ribose accumulation by pentose phosphate pathway mutants [J]. Agr Biol Chem, 1971,35(4): 509-517.
6Zimmer H G, Ibel H. Ribose accelerates the repletion of the ATP pool during recovery from reversible ischemia of the rat myocardium [J]. J Mol Cell Cardiol, 1984, 16: 863-866.
7Zimmer H G, et al. Ribose intervention in the cardiac pentose phosphate pathway is not species-specific [J]. Science,1984, 223: 712-714.
8Reimer K A, Hill M L, Jennings R B. Prolonged depletion of ATP and of adenine nucleotide pool due to delayed resynthesis of adenine nucleotides following reversible myocardial ischemic injury in dogs [J]. J Mol Cell Cardiol, 1981, 13:229-239.
9Zimmer H G. Normalization of depressed heart function in rats by ribose [J]. Science, 1983, 220: 81-82.
10Zimmer H G, Zierhut W, Marschner G. Combination of ribose with calcium antagonist and β -blocker treatment in closed-chest rats [J]. J Mol Cell Cardiol, 1987, 19: 635-639.