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Biomedical subjects

A Hadengue

Publications and source records attributed to A Hadengue.

At least 127 records · Page 7Linked to original sources

The changing scene of hepatic vein thrombosis: recognition of asymptomatic cases.

BACKGROUND/AIMS: Hepatic vein thrombosis is thought to be manifested by ascites, abdominal pain, and hepatomegaly, with a uniformly poor prognosis. However, new imaging techniques allow for the diagnosis of hepatic vein thrombosis in asymptomatic cases. The aim of our study was to re-evaluate symptoms and prognosis in patients with hepatic vein thrombosis. METHODS: Eighty-one patients with hepatic vein thrombosis were analyzed. Forty-seven patients were admitted from 1970 to June 1987 (group I, before Doppler ultrasonography and magnetic resonance imaging were introduced at our hospital) and 34 from July 1987 to June 1991 (group II). RESULTS: When comparing the two groups, age, sex ratio, and causes of hepatic vein thrombosis did not differ. Eight group II patients (asymptomatic patients) had no ascites, hepatomegaly, or abdominal pain. One major hepatic vein remained patent in 41% of group II patients, compared with 12% in group I (P < 0.05). Intrahepatic collaterals were seen in 79% of group II patients, compared with 21% of group I patients (P < 0.01). All asymptomatic patients had large intrahepatic and portasystemic collaterals. At 3 years, death occurred in 22% of group II patients and in 45% of group I patients. No asymptomatic patient died. CONCLUSIONS: Asymptomatic hepatic vein thrombosis is associated with the spontaneous development of large intrahepatic and portosystemic collaterals. In asymptomatic patients, prognosis at 3 years seems to be good, and surgical therapy may not be required.

Adult↗

Effect of clonidine on liver oxygen extraction during alcohol withdrawal in man.

Since catecholamines can alter splanchnic oxygen transport and extraction, the suppression of sympathetic overactivity during alcohol withdrawal might improve hepatic oxygen extraction. Therefore, this study investigated the effects of clonidine, a centrally-acting alpha 2-agonist which reduces sympathetic nervous outflow, on splanchnic oxygen transport and extraction in 13 patients with chronic alcoholism during alcohol withdrawal. All patients had elevated transaminases and steatosis at liver biopsy and were withdrawn from alcohol 51 +/- 15 h (mean +/- SD) before the study. Hepatic blood flow, cardiac output and the oxygen contents were measured in the radial and pulmonary arteries and in the hepatic veins before and 45 min after intravenous administration of clonidine, 150 micrograms. Basal hepatic blood flow was inversely correlated with norepinephrine plasma concentrations (r = -0.63, p < 0.025). After clonidine administration, the decrease in plasma norepinephrine correlated with the norepinephrine basal value (r = 0.889, p < 0.001), and splanchnic oxygen extraction increased (from 40 +/- 15 to 49 +/- 17%, p < 0.025). After clonidine administration, splanchnic oxygen extraction was correlated with the decrease in plasma norepinephrine (r = 0.72, p < 0.01). Arterial lactate concentration decreased (from 0.74 +/- 0.20 to 0.64 +/- 0.23 mmol/l, p < 0.01). These results suggest that defective liver oxygen extraction might occur during alcohol withdrawal as a result of sympathetic nervous hyperactivity. Alterations in the hepatic microcirculation during withdrawal might be related to catecholamine secretion and be controlled by pharmacological manipulation.

Adult↗

Hemodynamic effects of acute administration of furosemide in patients with cirrhosis receiving beta-adrenergic antagonists.

In patients with cirrhosis, both beta-blockers and diuretics decrease the degree of portal hypertension. Since their mechanisms of action differ, the combination of these two substances should induce a more pronounced effect on portal pressure than one of these substances alone. Thus, the hemodynamic effects of furosemide were evaluated in ten patients with cirrhosis receiving beta-blockers. One hour after furosemide (0.75 mg/kg intravenously) administration, cardiac output decreased significantly from 6.2 +/- 0.6 to 5.2 +/- 0.3 l/min and blood volume from 8.0 +/- 1.6 to 5.3 +/- 0.5 l. Mean arterial pressure was not affected. Wedged and free hepatic venous pressures did not change significantly; nor did the hepatic venous pressure gradient (19.6 +/- 1.7 to 18.6 +/- 1.5 mmHg). Azygos blood flow was not affected (0.46 +/- 0.05 to 0.50 +/- 0.07 l/min). In conclusion, this study did not demonstrate that the addition of furosemide to propranolol further decreased portal pressure in patients with cirrhosis. The long-term effects of this combination are unknown and should be tested.

Adrenergic beta-Antagonists↗

Biliary obstruction resulting from Strongyloides stercoralis infection. Report of a case.

Hepatobiliary manifestations of strongyloidiasis are rare. A case is described of biliary obstruction associated with the presence of Strongyloides stercoralis in the duodenal mucosa and 250 microns rhabditiform larvae in bile. Biliary obstruction resulted from papillary stenosis, which resolved after treatment with thiabendazole. It is proposed that papillary stenosis may be responsible for obstructive jaundice associated with Strongyloides stercoralis infection, and that strongyloidiasis should be added to the causes of papillary stenosis.

Adult↗

[Relationships between plasma concentrations of endothelin and the severity of liver cirrhosis].

OBJECTIVES: Results of studies on plasma endothelin concentrations in patients with cirrhosis are conflicting. Moreover, the relationships between plasma endothelin concentrations and the severity of cirrhosis have not yet been studied. The aim of this study was to measure plasma endothelin concentrations in controls and in patients with cirrhosis. In addition, this study examined the relationships between plasma endothelin concentrations, and the severity of liver disease, splanchnic and systemic hemodynamics. METHODS: Plasma endothelin concentrations (in the hepatic vein and the right atria), hepatic venous pressures, arterial pressure, cardiac output, pulmonary pressures and plasma concentrations of sodium and creatinine were measured in 7 controls and 28 patients with cirrhosis. RESULTS: Plasma endothelin concentrations in the hepatic vein and the right atria were significantly higher in patients with cirrhosis (18.9 +/- 2.9 and 20.2 +/- 3.1 pg/mL, respectively) than in controls (6.1 +/- 1.1 and 7.2 +/- 1.1 pg/mL, respectively). In these patients, hepatic venous plasma endothelin concentrations were significantly correlated with Pugh's score (r = 0.49), hepatic venous pressure gradient (r = -0.44), and plasma sodium concentrations (r = -0.46). No significant correlation was found between plasma endothelin concentrations and systemic hemodynamics. CONCLUSION: Plasma endothelin concentrations are increased in patients with cirrhosis. Moreover, this increase is more marked in patients with severe liver disease than in patients with no or moderate impairment of liver function.

Blood Chemical Analysis↗

[Therapeutic attitude in adult recipients waiting for liver transplantation].

Any new therapeutic procedure raises the question of its possible interference with a possible liver transplantation. This management must therefore give a change to medical treatments of complications of liver disease without interfering with the possibility of subsequent liver transplantation. The treatment of the complications related to chronic liver disease: gastrointestinal haemorrhage, ascites, ascitic infection are examined from this point of view. The necessity of repeated investigation for hepatocellular carcinoma and the importance of maintaining a correct nutritional status are recalled. The elements of monitoring and treatment which can interfere with the planned transplantation are examined in patients with alcoholic cirrhosis, chronic active viral hepatitis B, sclerosing cholangitis, autoimmune chronic active hepatitis or hepatocellular carcinoma. In fulminant hepatitis, the administration of drugs and any form of clotting factor is prohibited due to the particular risk of altering regular reassessment of the level of consciousness and hepatocellular function. Don't transplant those who are going to recover and don't transplant too late those who are not going to recover.

Adult↗

Effects of terlipressin on hemodynamics and oxygen content in conscious portal vein stenosed and cirrhotic rats receiving propranolol.

Terlipressin is used in patients with variceal bleeding but its effects in patients receiving beta-adrenergic antagonists are unknown. In this study, the hemodynamic effects of terlipressin were evaluated in conscious portal hypertensive rats which had previously received a single dose of propranolol. Moreover, oxygen content and acid-base status were studied. In portal vein stenosed and cirrhotic rats, the addition of terlipressin (0.05 mg/kg) to propranolol (0.4 mg/kg) produced a decrease in portal pressure of 34% and 17%, respectively, and in portal tributary blood flow of 46% and 42%, respectively. In cirrhotic rats, however, the decrease in portal pressure was not significantly different when propranolol was combined with terlipressin than when propranolol was administered alone. Cardiac index also further decreased after terlipressin administration. In both groups of rats, these values were similar to those observed after terlipressin alone. In portal vein stenosed rats but not in cirrhotic rats, arterial pH was significantly lower following the combination of propranolol plus terlipressin than following saline, propranolol or terlipressin alone. In conclusion, terlipressin further reduces both portal pressure and cardiac index in rats with portal hypertension receiving beta-blockers. In portal vein stenosed rats but not in cirrhotic rats, the addition of terlipressin to propranolol induces acidemia. This study suggests that terlipressin might further reduce portal pressure in patients with portal hypertension treated with beta-blockers.

Animals↗

Arterial and mixed venous acid-base status in patients with cirrhosis. Influence of liver failure.

Although it has been established that liver failure is associated with arterial hypocapnia and alkalaemia (i.e., respiratory alkalosis), the influence of liver failure on mixed venous acid-base status has not yet been studied. Thus, arterial and mixed venous acid-base status were simultaneously measured in controls and in a large series of patients with cirrhosis. Grade B patients (n = 28) or Grade C patients (n = 21) had significantly lower arterial and mixed venous carbon dioxide tensions than controls (n = 29). Grade B or Grade C patients also had significantly higher arterial, mixed venous pH, and lower mixed venous bicarbonate concentrations than controls. Among Grade A patients (n = 27), those with the lowest Pugh's score (i.e., equal to five) had significantly lower mixed venous carbon dioxide tension than controls. The other arterial and mixed venous acid-base values did not differ significantly between Grade A patients with the lowest Pugh's score and controls. Grade A patients with a Pugh's score equal to six and Grade B patients had similar acid-base disorders. No significant differences were found between groups concerning the anion gap and plasma chloride concentrations. In conclusion, this study shows that in Grade B or C patients, respiratory alkalosis was responsible for mixed venous hypocapnia, alkalaemia and hypobicarbonataemia. In addition, in Grade A patients with the lowest Pugh's score (equal to five), analysis of arterial and mixed venous blood revealed that mixed venous hypocapnia was the sole anomaly of the acid-base status. This last finding suggests that mixed venous hypocapnia might be an early event preceding the onset of arterial hypocapnia.

Alkalosis, Respiratory↗

Renal hemodynamics in patients with cirrhosis: relationship with ascites and liver failure.

In patients with cirrhosis and ascites decreased renal blood flow might be related to the severity of liver disease but the relationship between the severity of cirrhosis and renal perfusion has not yet been established. Thus we measured renal, systemic and splanchnic hemodynamics in 63 patients with ascites and in 28 without ascites. When compared to patients without ascites, patients with ascites had lower renal blood flow (1,170 +/- 100 vs. 935 +/- 55 ml/min/1.73 m2; mean +/- SEM, p < 0.05) and renal perfusion pressure (78 +/- 2 vs. 72 +/- 1 mm Hg, p < 0.05 and higher inferior vena cava pressure (6.5 +/- 0.7 vs. 10.7 +/- 0.7 mm Hg, p < 0.05). Patients with ascites had significantly higher serum bilirubin concentrations, hepatic venous pressure gradient and lower serum albumin concentrations, indocyanine green (ICG) extraction than patients without ascites. Renal vascular resistance, glomerular filtration rate, mean arterial pressure, cardiac index and systemic vascular resistance were not significantly different between the two groups. By multiple regression analysis no significant correlation was found between liver tests (i.e., prothrombin time, serum bilirubin and albumin concentrations, ICG extraction), hepatic venous pressure gradient, cardiac index and systemic vascular resistance on the one hand and renal blood flow on the other. No significant correlation was found between glomerular filtration rate and liver tests. In conclusion, in patients with cirrhosis and ascites, renal hypoperfusion is not related to the severity of liver disease.

Ascites↗

Persistence of systemic and splanchnic hyperkinetic circulation in liver transplant patients.

Portal pressure and portal-systemic collateral circulation after orthotopic liver transplantation have not been investigated. We studied systemic and splanchnic hemodynamics in 17 patients with cirrhosis before and 205 +/- 146 days after orthotopic liver transplantation. Among the 17 orthotopic liver transplantation patients, 12 had undergone hemodynamic study in the 6 mo before orthotopic liver transplantation. Controls were 50 patients with normal liver architecture. Cardiac index remained elevated in orthotopic liver transplantation patients compared with controls (3.6 +/- 0.9 vs 3.1 +/- 0.4 L/min.m2; p < 0.05). Azygos blood flow, which was elevated before orthotopic liver transplantation (585 +/- 402 ml/min), remained elevated after orthotopic liver transplantation (553 +/- 343 ml/min). In transplant patients, hepatic blood flow was higher than it was in controls (2.26 +/- 0.86 vs. 1.38 +/- 0.57 L/min; p < 0.05). Elevated hepatic blood flow correlated with cardiac index (r = 0.647, p < 0.025). In patients with normal graft function, hepatic venous pressure gradient was normal (2 +/- 1 mm Hg). In a patient with acute rejection, a sharp elevation in the hepatic venous pressure gradient was observed; it returned to normal 45 days after treatment. We conclude that despite normal portal pressure, portal-systemic collateral blood flow remains elevated after orthotopic liver transplantation. Possibly because of persistent collateral circulation, which may keep portal tributary blood flow elevated, hepatic blood flow is increased after orthotopic liver transplantation. Elevated splanchnic blood flow, in turn, contributes to the high cardiac index in liver recipients. Finally, a sharp elevation in portal pressure, which may be observed during acute rejection and subsides after treatment, merits further study.

Adult↗

Hemodynamic effects of terbutaline, a beta 2-adrenoceptor agonist, in conscious rats with secondary biliary cirrhosis.

The hemodynamic responses to terbutaline - a selective beta 2-adrenoceptor agonist - were studied in conscious normal rats and in conscious rats with secondary biliary cirrhosis. Compared with those of normal rats, dose-response curves in cirrhotic rats indicated significantly decreased reactivity in arterial pressure and heart rate. Half-maximal effective dose was not significantly different between the two groups. Terbutaline induced significant, dose-dependent decreases in portal pressure in both normal rats (9.3%) and cirrhotic rats (13.8%). In normal rats, terbutaline administration (32 micrograms.min-1.kg-1 body wt) increased both cardiac output and portal tributary blood flow, thus mimicking hemodynamic changes in cirrhotic rats. In cirrhotic rats, despite a significant increase in portal tributary blood flow (from 19.9 +/- 1.7 ml/min to 22.7 +/- 1.5 ml/min), terbutaline decreased portal pressure from 17.4 +/- 1.0 mm Hg to 15.0 +/- 0.8 mm Hg. This study indicates that increased beta 2-adrenoceptor stimulation in cirrhotic rats may be involved in hyperdynamic circulation. The association of a decreased portal pressure and increased splanchnic blood flow suggests that beta 2-adrenoceptor stimulation may modulate hepatic and portal collateral vascular resistance.

Adrenergic beta-Agonists↗

Total effective vascular compliance in patients with cirrhosis: a study of the response to acute blood volume expansion.

Although arterial vasodilation is a well-known feature in patients with cirrhosis, the venous system remains unexplored. To measure total effective vascular compliance, a reflection of the properties of the venous system, rapid volume expansion (300 ml of a gelatin solution in 3 min) was performed in 23 patients. Eleven patients had compensated cirrhosis (Child-Pugh grade A or B), and eight had decompensated cirrhosis (Child-Pugh grade C). Four control patients had mild chronic hepatitis, normal hepatic venous pressure and normal liver architecture. Cardiac index, hepatic venous pressures, hepatic and azygos blood flow and renal plasma flow were measured before and immediately after volume expansion. Right atrial pressure was recorded during volume expansion. This allowed the calculation of total effective vascular compliance, which was higher in patients with decompensated cirrhosis than in those with compensated cirrhosis (4.65 +/- 4.21 vs. 1.34 +/- 0.63 ml.mm Hg-1.kg-1; p less than 0.05). In response to volume expansion, renal vascular resistance decreased significantly in patients with compensated cirrhosis, but not in those with decompensated cirrhosis (-30% +/- 33% vs. +2% +/- 23%; p less than 0.05). No change was seen in glomerular filtration rate. Systemic oxygen consumption increased in patients with compensated cirrhosis, but not in those patients with decompensated cirrhosis (25% +/- 33% vs. -4% +/- 9%; p less than 0.05). Although in all patients with cirrhosis volume expansion increased central venous pressures, azygos blood flow and the hepatic venous pressure gradient did not change.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Evidence for normal nitric oxide-mediated vasodilator tone in conscious rats with cirrhosis.

Because it has been hypothesized that the hyperkinetic circulation in portal hypertension is the result of increased synthesis of nitric oxide, we compared the hemodynamic effects of nitric oxide synthesis--specific agonist (L-arginine) and antagonist between normal and cirrhotic conscious rats. The dose-response curves showed that L-arginine significantly decreased arterial pressure and increased heart rate. These changes started at the 200 mg/kg dose and were similar in both groups of rats. In both groups of rats NG-monomethyl-L-arginine (25 mg/kg) significantly decreased cardiac output by 35%. In cirrhotic rats, NG-monomethyl-L-arginine decreased portal pressure from 15.3 +/- 0.9 mm Hg to 13.6 +/- 0.7 mm Hg and portal tributary blood flow from 7.8 +/- 0.7 ml.min-1.100 gm-1 to 5.9 +/- 0.7 ml.min-1.100 gm-1; it significantly increased portal territory vascular resistance from 950 +/- 108 dyn.sec.cm-5.100 gm-1 x 10(3) to 1,579 +/- 258 dyn.sec.cm-5.100 gm-1 x 10(3). In normal rats, portal tributary blood flow decreased similarly, by 27%, and portal territory vascular resistance increased by 55%. In neither group was hepatic arterial blood flow altered. Before and after NG-monomethyl-L-arginine administration, arterial cyclic GMP concentrations were not significantly different between normal and cirrhotic rats. In conclusion, this study shows evidence of a normal role for nitric oxide-mediated vasodilatation in rats with cirrhosis and that inhibition of nitric oxide synthesis reduces portal hypertension. These results did not support the hypothesis that nitric oxide synthesis is increased in cirrhosis.

Animals↗

Hemodynamic, neurohumoral, and metabolic responses to amino acid infusion in patients with cirrhosis.

In patients with cirrhosis the renal response to amino acid infusion is controversial. In addition, the renal and systemic metabolic effects of amino acids are unknown. Therefore, the present study examined the effects of amino acids on renal hemodynamics, renal and systemic oxygen (O2) consumption, and hormones in patients with cirrhosis. Twelve patients received an 8% amino acid solution for 30 minutes at a rate providing 250 mg of amino acids/kg body wt. Renal blood flow increased by 45% (P less than 0.05) and the glomerular filtration rate by only 9% (P greater than 0.05). Renal vascular resistance decreased by 23% (P less than 0.05), and renal perfusion pressure did not change significantly. Renal and systemic O2 consumption and pulmonary artery plasma glucagon level significantly increased. There were no significant changes in plasma osmolality, plasma volume, and plasma atrial natriuretic peptide concentrations. In conclusion, the results show that amino acid-induced renal vasodilation caused hyperperfusion but not renal hyperfiltration in patients with cirrhosis. In addition, renal hyperemia was associated with renal and systemic hypermetabolism.

Amino Acids↗

Hemodynamic and sympathetic responses to human atrial natriuretic peptide infusion in patients with cirrhosis.

To determine the potential usefulness of atrial natriuretic peptide (ANP) in patients with cirrhosis, we examined the effects of the infusion of a low dose of alpha-human ANP (alpha hANP, 25 ng.kg-1.min-1 for 30 min) on renal, splanchnic, systemic hemodynamics and sympathetic outflow in eight patients. Pulmonary arterial plasma ANP concentrations increased from 59 +/- 9 to 328 +/- 41 pg/ml (mean +/- S.E., p less than 0.05). Mean values of glomerular filtration rate and renal plasma flow were not significantly changed. Individual renal plasma flow responses differed from one patient to another. Renal plasma flow increased in two patients, decreased in three and did not change in the other patients. Renal plasma flow changes were correlated with basal renal plasma flow values (r = -0.938, p less than 0.05) but not with arterial pressure changes or renal vein plasma norepinephrine concentration changes. Azygos blood flow increased from 0.43 +/- 0.10 to 0.63 +/- 0.13 l/min (p less than 0.05) and the hepatic-venous pressure gradient decreased from 19.9 +/- 1.5 to 17.5 +/- 2.9 mmHg in post-infusion (p less than 0.05). Mean arterial pressure decreased significantly by 18% and cardiac output by 12%. Systemic vascular resistance and pulmonary arterial plasma norepinephrine concentrations were not significantly modified. Thus, in patients with cirrhosis, alpha hANP appears to have a direct vasodilating action on renal arterioles when basal renal vascular tone is high. In addition, although alpha hANP might exert a portal hypotensive action, alpha hANP induced arterial hypotension as a result of both low cardiac output and a lack of increased sympathetic vascular tone. The arterial hypotensive action may, thus, limit the therapeutic use of low doses of alpha hANP in cirrhotic patients.

Aldosterone↗

Septic shock in patients with cirrhosis: hemodynamic and metabolic characteristics and intensive care unit outcome.

OBJECTIVES: To examine the hemodynamic and metabolic characteristics and ICU outcome of septic shock in patients with cirrhosis. DESIGN: Prospective, comparative study. Measurements performed in the first 24 hrs of septic shock. SETTING: A general hospital ICU. PATIENTS: Twelve patients with cirrhosis and 23 patients without cirrhosis admitted for septic shock. MEASUREMENTS AND MAIN RESULTS: Arterial pressure was measured using an arterial catheter. Pulmonary arterial and right atrial pressures were measured by using a pulmonary artery catheter. Cardiac output was determined by using the thermodilution method. Pulmonary arterial L-lactate plasma concentrations were measured using an automated spectrophotometer, and blood temperature was measured using a cardiac output computer. Arterial and mixed venous PO2, PCO2, and pH values were measured by using specific electrodes. Oxygen saturations and hemoglobin concentrations were measured using a hemoximeter. Patients with cirrhosis had decompensated liver disease (grade C of the Child-Pugh classification). The number of Gram-negative infections and therapeutic interventions were similar in both groups. Patients with cirrhosis had higher cardiac indices (5.14 +/- 0.52 [SE] vs. 3.91 +/- 0.30 L/min/m2, p less than .05), plasma lactate concentrations (9.0 +/- 2.0 vs. 5.2 +/- 0.7 mmol/L, p less than .05) and ICU mortality rates (100% vs. 43%, p less than .05), and lower blood temperatures (35.5 +/- 0.6 vs. 37.6 +/- 0.2 degrees C, p less than .05) than patients without cirrhosis. Systemic vascular resistance, arterial pressure, pulmonary arterial pressure, oxygen delivery and consumption, and arterial and mixed venous acid-base status were not significantly different between the two groups. CONCLUSIONS: In patients with cirrhosis, septic shock was characterized by severe liver dysfunction, low blood temperature, marked increases in cardiac index and lactic acidemia, and a 100% ICU mortality rate. These findings should be taken into account if patients with cirrhosis are to be included in controlled studies on septic shock.

Acid-Base Equilibrium↗

[Effect of the severity of liver disease on renal hemodynamics and renal oxygen consumption in patients with cirrhosis].

In patients with cirrhosis, it has been shown that abnormal systemic and splanchnic hemodynamics and systemic oxygen (O2) consumption are related to the severity of liver disease. Little is known on the relationship between the severity of cirrhosis, on one hand, and renal hemodynamics and O2 consumption, on the other. We measured renal hemodynamics and renal O2 consumption in 31 patients Pugh's grade A and B and in 13 patients grade C. Systemic and splanchnic hemodynamics as well as systemic O2 consumption were studied. Renal blood flow, glomerular filtration rate, and renal O2 consumption were not significantly different between grades A and B and grade C patients. The renal fraction of systemic O2 consumption was higher (11.4 +/- 5.9 vs 7.9 +/- 4.1 percent respectively; P less than 0.05) and the systemic O2 consumption (111 +/- 23 vs 128 +/- 26 ml.min-1.m-2 respectively; P less than 0.05) lower in patients with grade C than in grades A and B patients. The degree of systemic hyperkineticism and portal hypertension was related to the severity of cirrhosis. In our patients, renal hemodynamics and renal O2 consumption were not related to the severity of cirrhosis. However, liver failure was associated with an increased renal fraction of systemic O2 consumption due to unchanged renal O2 consumption and decreased systemic O2 consumption.

Adult↗