Hemodynamic characterization in experimental liver cirrhosis induced by thioacetamide administration
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T. Okanoue | K. Kashima | Takashi Mori | Y. Sawa | N. Hori
[1] R. P. Tamayo. Is Cirrhosis of the Liver Experimentally Produced by CC14 an Adequate Model of Human Cirrhosis? , 2007 .
[2] J. Vinel,et al. Systemic and splanchnic hemodynamic effects of molsidomine in rats with carbon tetrachloride–induced cirrhosis , 1991, Hepatology.
[3] M. Navasa,et al. Hemodynamic effects of glucagon in portal hypertension , 1990, Hepatology.
[4] A. Hadengue,et al. Circulatory effects of somatostatin analogue in two conscious rat models of portal hypertension. , 1988, Gastroenterology.
[5] J. L. le Noble,et al. Differential effects of general anesthetics on regional vasoconstrictor responses in the rat. , 1987, Archives internationales de pharmacodynamie et de therapie.
[6] J. Daugirdas,et al. Arteriovenous shunting in experimental liver cirrhosis in rats. , 1987, Journal of Laboratory and Clinical Medicine.
[7] V. Go,et al. Role of glucagon in splanchnic hyperemia of chronic portal hypertension. , 1986, The American journal of physiology.
[8] A. Hadengue,et al. Hemodynamic characterization of chronic bile duct-ligated rats: effect of pentobarbital sodium. , 1986, The American journal of physiology.
[9] D. Valla,et al. Effects of pentobarbital sodium anesthesia on splanchnic hemodynamics of normal and portal-hypertensive rats. , 1985, The American journal of physiology.
[10] D. Longnecker,et al. Effects of anesthetics on regional hemodynamics in normovolemic and hemorrhaged rats. , 1985, The American journal of physiology.
[11] R. Groszmann,et al. Increased blood flow through the portal system in cirrhotic rats. , 1984, Gastroenterology.
[12] J. Barrowman,et al. Role of humoral factors in the intestinal hyperemia associated with chronic portal hypertension. , 1984, The American journal of physiology.
[13] J. Kountouras,et al. Prolonged bile duct obstruction: a new experimental model for cirrhosis in the rat. , 1984, British journal of experimental pathology.
[14] D. Longnecker. Effects of general anesthetics on the microcirculation. , 1984, Microcirculation, endothelium, and lymphatics.
[15] A. Barger,et al. Pentobarbital alters compensatory neural and humoral mechanisms in response to hemorrhage. , 1982, The American journal of physiology.
[16] D. Lebrec,et al. Changes in splanchnic blood flow in portal hypertensive rats , 1982, European journal of clinical investigation.
[17] R. Groszmann,et al. Splanchnic hemodynamics in portal-hypertensive rats: measurement with gamma-labeled microspheres. , 1982, The American journal of physiology.
[18] R. Groszmann,et al. Measurement of portal-systemic shunting in the rat by using gamma-labeled microspheres. , 1981, The American journal of physiology.
[19] P. Hutchins,et al. Anesthetic effects on hemodynamics of spontaneously hypertensive and Wistar-Kyoto rats. , 1980, The American journal of physiology.
[20] S. Ngai. Effects of anesthetics on various organs. , 1980, The New England journal of medicine.
[21] A. Malik,et al. Reference sample method for cardiac output and regional blood flow determinations in the rat. , 1976, Journal of applied physiology.
[22] E. Smuckler,et al. Nonhepatic Thioacetamide Injury: II. The Morphologic Features of Proximal Renal Tubular Injury , 1974 .
[23] E. Smuckler,et al. Nonhepatic thioacetamide injury. I. Thymic cortical necrosis. , 1973, The American journal of pathology.
[24] H. Wagner,et al. Measurement of the distribution of cardiac output in unanesthetized rats. , 1971, Journal of applied physiology.
[25] E. Smuckler,et al. EFFECTS OF THIOACETAMIDE AND YELLOW PHOSPHORUS POISONING ON PROTEIN SYNTHESIS IN VIVO. , 1963, Laboratory investigation; a journal of technical methods and pathology.
[26] D. Sasse,et al. Metabolic zonation in thioacetamide-induced liver cirrhosis , 2004, Histochemistry.
[27] E. Sikuler,et al. Hemodynamic characterization of conscious and ketamine-anesthetized bile duct-ligated rats. , 1991, The American journal of physiology.
[28] D. Hoyer,et al. Determination of regional blood flow in abdominal organs and other structures in normal female rats and in rats with TAA-induced chronic liver injury using 99mTc labelled HSA-microsphere technique. , 1990, Experimental pathology.
[29] Takafumi Sato,et al. Cell kinetic studies on the experimental liver cirrhosis induced by thioacetamide in the rat. , 1990 .
[30] M. Abdulla,et al. Thioacetamide- and carbon tetrachloride-induced liver cirrhosis. , 1989, European surgical research. Europaische chirurgische Forschung. Recherches chirurgicales europeennes.
[31] R. Dargel,et al. Relation between renal and hepatic excretion of drugs: VII. Hepatic and renal excretion of phenol red in thioacetamide-induced acute and chronic liver damage. , 1988, Experimental pathology.
[32] R. Dargel,et al. Biochemical and morphological studies on production and regression of experimental liver cirrhosis induced by thioacetamide in Uje: WIST rats. , 1987, Zeitschrift fur Versuchstierkunde.
[33] C. Fleck,et al. Relation between renal and hepatic excretion of drugs. II. Age-dependence of phenol red excretion in comparison with those of p-aminohippurate and indocyanine green. , 1986, Experimental pathology.
[34] D. Lebrec,et al. Effect of two models of portal hypertension on splanchnic organ blood flow in the rat. , 1985, Clinical science.
[35] J. Iriuchijima,et al. Changes in cardiac output and peripheral flows on pentobarbital anesthesia in the rat. , 1984, The Japanese journal of physiology.
[36] R. Groszmann,et al. Hyperdynamic circulation in portal-hypertensive rat model: a primary factor for maintenance of chronic portal hypertension. , 1983, The American journal of physiology.