The Effect of Oxygen Supplementation on the Arterial Ketone Body Ratio in Human Cirrhosis
暂无分享,去创建一个
[1] B. Robinson,et al. Mitochondria, oxygen free radicals, and apoptosis. , 2001, American journal of medical genetics.
[2] P. J. Harvey,et al. Acute oxygen supplementation restores markers of hepatocyte energy status and hypoxia in cirrhotic rats. , 2000, The Journal of pharmacology and experimental therapeutics.
[3] F. Marumo,et al. Clinical Significance of Arterial Ketone Body Ratio in Chronic Liver Disease , 1998, Digestion.
[4] L. Irving,et al. Resolution of gas exchange abnormalities and intrapulmonary shunting following liver transplantation , 1997, Hepatology.
[5] T. Saibara,et al. The arterial ketone body ratio and serum alpha-fetoprotein level in patients with acute hepatic failure. , 2008, Liver.
[6] F. Moriyasu,et al. Effect of dobutamine on the arterial ketone body ratio and portal blood flow velocity in cirrhosis. , 2008, Liver.
[7] N. Takeyama,et al. Changes of hepatic fatty acid metabolism produced by chronic thioacetamide administration in rats , 1992, Hepatology.
[8] Y. Yamaoka,et al. Decrease in arterial ketone body ratio indicating graft dysfunction after liver transplantation. , 1992, The European journal of surgery = Acta chirurgica.
[9] D. Morgan,et al. Therapeutic implications of impaired hepatic oxygen diffusion in chronic liver disease , 1991, Hepatology.
[10] D. Morgan,et al. Clinical Pharmacokinetics in Patients with Liver Disease , 1991, Clinical pharmacokinetics.
[11] Y. Yamaoka,et al. Diurnal fluctuations of arterial ketone body ratio in normal subjects and patients with liver dysfunction. , 1991, Gastroenterology.
[12] J. Stucki,et al. Mitochondrial structure and function in CCl4‐induced cirrhosis in the rat , 1990, Hepatology.
[13] S. Krähenbühl,et al. Mitochondrial function in carbon tetrachloride-induced cirrhosis in the rat. Qualitative and quantitative defects. , 1989, Biochemical pharmacology.
[14] A. Tanaka,et al. Influence of hypoxia on mitochondrial function and energy status in CCl4-induced cirrhotic rat liver , 1989, Research in experimental medicine. Zeitschrift fur die gesamte experimentelle Medizin einschliesslich experimenteller Chirurgie.
[15] S. French,et al. Hepatic adenosine in rats fed ethanol: effect of acute hyperoxia or hypoxia. , 1988, Alcoholism, clinical and experimental research.
[16] Y. Yamaoka,et al. The Influence of Hemodilution in Normal and Cirrhotic Rats in Relation to Hepatic Energy Metabolism , 1987, The American journal of the medical sciences.
[17] Y. Kamiyama,et al. Adenylate energy charge and cytochrome a (+a3) in the cirrhotic rat liver. , 1984, The Journal of surgical research.
[18] R. Dargel,et al. Structural and functional impairment of mitochondria from rat livers chronically injured by thioacetamide. , 1984, Acta pharmacologica et toxicologica.
[19] Y. Kamiyama,et al. Metabolic abnormalities associated with postoperative organ failure. A redox theory. , 1983, Archives of surgery.
[20] J. Siegel,et al. Direct, fixed-time kinetic assays for beta-hydroxybutyrate and acetoacetate with a centrifugal analyzer or a computer-backed spectrophotometer. , 1980, Clinical chemistry.
[21] P. Scheuer,et al. Oxyphilic granular hepatocytes. Mitochondrion-rich liver cells in hepatic disease. , 1980, American journal of clinical pathology.
[22] B. Wedzicha,et al. An enzymic assay for β‐hydroxybutyric acid in liquid whole egg , 1980 .
[23] K. Ozawa,et al. The influence of hypoxia and hemorrhage upon adenylate energy charge and bile flow. , 1979, Surgery, gynecology & obstetrics.
[24] M. Gosálvez,et al. Mitochondrial functions and content of microsomal and mitochondrial cytochromes in human cirrhosis. , 1977, Clinical science and molecular medicine.
[25] Y. Yamaoka,et al. Adaptive increase of respiratory enzymes in the mitochondria from cirrhotic livers of patients and rats, and its relationship to glucose tolerance , 1977, The American journal of the medical sciences.
[26] H. Popper,et al. Capillarization of hepatic sinusoids in man. , 1963, Gastroenterology.