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S Gelman

Publications and source records attributed to S Gelman.

At least 55 records · Page 3Linked to original sources

Hypothermia, hepatic oxygen supply-demand, and ischemia-reperfusion injury in pigs.

We examined the effects of two degrees of hypothermia on hepatic oxygen delivery and uptake, hepatic lactate uptake as a marker of hepatic function, and the effect of hypothermia on ischemia-reperfusion injury in the liver in miniature pigs (n = 18, 21-30 kg body wt). Hepatic arterial and portal venous blood flows were measured while hepatic oxygen delivery was progressively decreased without venous congestion in the preportal area. With decreases in hepatic blood and oxygen supply, oxygen extraction gradually increased from 50 to 90% in the normothermic group and from 25 to 70 and 84% in the hypothermic (30. and 34 degrees C, respectively) groups. The values of critical hepatic oxygen delivery were between 7.3 and 11.9 ml O2.min-1.100 g-1 without significant differences among the groups. During reperfusion after ischemic insult, hepatic oxygen uptake returned to base-line values in both hypothermic groups but remained substantially below base-line values in normothermic groups of animals. Hepatic enzyme concentrations (lactate dehydrogenase, alanine aminotransferase, aspartate aminotransferase, and alcohol dehydrogenase) were substantially increased (up to 30-fold) in normothermic animals, but the concentrations did not increase in either of the hypothermic groups. These results demonstrated that hypothermia per se does not affect hepatic oxygen delivery but decreases hepatic oxygen demand and uptake, provides an effective protection from hepatic oxygen deprivation, and lessens reperfusion injury.

Animals↗

Angiotensin and alpha-adrenoceptor activation play a role in hemodynamic response to aortic cross-clamping.

This study was designed to identify the possible role of vasoconstricting compounds released from ischemic tissues in the hemodynamic response to cross-clamping of the thoracic aorta. Twenty-one dogs were anesthetized with pentobarbital sodium. The left hindlimb was denervated, vascularly isolated, and pump perfused at a constant rate with blood drained from the inferior vena cava after passing through a gas-exchanging membrane where oxygen and carbon dioxide tensions were maintained within normal limits. Left and right thoracotomies were performed, and the aorta and inferior vena cava were cross-clamped. The cross-clamping was associated with 33-45% increase in limb vascular resistance in denervated control animals (n = 6). In animals pretreated with Enalaprilat (2 mg/kg, n = 6), an angiotensin-converting enzyme inhibitor, limb vascular resistance did not change significantly. In animals pretreated with phenoxybenzamine (3 mg/kg, n = 6), an alpha-adrenoceptor antagonist, limb vascular resistance significantly decreased to 43% of preclamped level. The study demonstrated that vasoconstrictive compounds, such as angiotensin and catecholamines, play a role in systemic hemodynamic changes, including arterial hypertension, observed during cross-clamping of the thoracic aorta.

Angiotensin II↗

Hepatic circulation and oxygen supply-uptake relationships after hepatic ischemic insult during anesthesia with volatile anesthetics and fentanyl in miniature pigs.

The objective of the present study was to quantitate the effects of several anesthetics on hepatic circulation, oxygenation, and function after hepatic ischemic insult and during reperfusion. We examined the effects of different anesthetics on hepatic circulation, oxygenation, and function after hepatic ischemic insult in 28 miniature pigs weighing 20-27 kg. The preparation allowed a stepwise decrease followed by a complete cessation for 1 h of hepatic blood and oxygen supply. Immediately after the unclamping of both vessels supplying the liver and restoration of the hepatic circulation, systemic mean arterial pressure decreased to approximately 75% of preischemic values in animals anesthetized with pentobarbital and fentanyl and to 60% of preischemic values in pigs anesthetized with halothane, enflurane, or isoflurane. Total hepatic blood flow immediately returned to preischemic values without significant difference between the groups. Subsequently, hepatic oxygen delivery returned to 75%-95% of preischemic values. Hepatic oxygen uptake returned to 50%-60% of preischemic values in animals anesthetized with pentobarbital and with volatile anesthetics and up to 80% and then later to baseline values with fentanyl anesthesia. Lactate uptake by the liver returned to preischemic values only in animals given fentanyl or isoflurane but remained at approximately 50% of preischemic values during enflurane and 20%-40% during halothane and pentobarbital anesthesia. Thus, the study indicates that both isoflurane and fentanyl anesthesia provide more protection from ischemic insult than do halothane, enflurane, or pentobarbital anesthesia.

Anesthetics↗

Hemodynamics and oxygen uptake below and above aortic occlusion during crossclamping of the thoracic aorta and sodium nitroprusside infusion.

The effects of controlled vasodilation on blood flow and oxygen consumption above and below the aortic occlusion during crossclamping of the thoracic aorta were examined in 16 mongrel dogs anesthetized with halothane. Blood flow in the inferior vena cava was measured with an electromagnetic cannulating flow probe, and cardiac output was measured by thermodilution. The animals were divided into two groups. In the control group the thoracic aorta was crossclamped at the diaphragmatic level for 30 minutes. In the sodium nitroprusside group the aorta was also crossclamped for 30 minutes, but an infusion of sodium nitroprusside was initiated after 10 minutes of occlusion to decrease systemic blood pressure. Measurements were made before and at 10, 20, and 30 minutes after aortic crossclamping, and at 10 minutes after aortic unclamping. Crossclamping of the thoracic aorta was associated with marked decreases in blood flow and oxygen consumption in organs and tissues below the aortic occlusion in both groups. Above the occlusion, blood flow increased but oxygen uptake decreased. Sodium nitroprusside increased cardiac output and blood flow above the aortic occlusion even more than crossclamping alone while it decreased blood flow and oxygen consumption below the crossclamp.

Animals↗

Circulatory responses to laryngoscopy: the comparative effects of placebo, fentanyl and esmolol.

The circulatory response to a 30-second laryngoscopy followed by orotracheal intubation was recorded in 60 patients of ASA physical status III or IV undergoing a variety of non-cardiac surgical procedures. Patients were randomly allocated to either the placebo, esmolol (500 micrograms.kg-1.min-1 X 6 minutes, followed by 300 micrograms.kg-1.min-1 X 9 minutes), or fentanyl (0.8 microgram.kg-1.min-1 X 10 minutes) group, and the observer was blinded to the infusion administered. Esmolol blunted the heart rate (HR) response, while fentanyl decreased it below the baseline and maintained it there, in spite of laryngoscopy. Similarly, fentanyl decreased the systolic (SBP), mean (MBP) and diastolic blood pressures (DBP) significantly below the baseline, while these pressures were either retained at or elevated slightly above control in the esmolol group. In these doses, the HR response to laryngoscopy was more effectively blocked by fentanyl, while esmolol better retained perfusion pressure. There were no complications or ischaemic electrocardiographic changes in any patient.

Adrenergic beta-Antagonists↗

Anaphylactoid reactions to vascular graft material presenting with vasodilation and subsequent disseminated intravascular coagulation.

This report describes five patients who had immediate adverse reactions following placement of a vascular graft. All had unusually persistent decreases in systemic vascular resistance, and four of these patients had bleeding as an early manifestation of this reaction. In two of three patients in whom the graft was replaced, uneventful recovery followed. Both patients in whom the graft was not replaced died. Blood samples from two of the patients demonstrated activation of complement and of the kinin system, whereas control patients did not demonstrate increased levels of activation products from these cascade systems. Recognition of this syndrome is important to patient survival, which appears to depend on rapid replacement of the graft.

Aged↗

Hemodynamic changes and oxygen consumption in burned patients during enflurane or isoflurane anesthesia.

The effects of enflurane or isoflurane anesthesia on the systemic circulation and whole-body oxygen (O2) uptake (VO2) of 15 burn patients undergoing wound excision and skin grafting procedures were studied. The possibility that burn wound excision might adversely affect pulmonary circulation was also investigated. The patients were preanesthetically in a hyperdynamic-hypermetabolic state, characterized by a resting cardiac index (CI) of 6.2 +/- 0.9 L.min-1.m-2 (mean +/- SD), a VO2 (calculated using the Fick principle) of 213 +/- 44 mL.min-1.m-2, a normal mean systemic arterial pressure (MAP) (92 +/- 15 mm Hg), and markedly decreased systemic vascular resistance (SVR) (570 +/- 162 dynes.sec.cm-5). Mean pulmonary arterial pressure (MPAP) preanesthetically was slightly increased (21 +/- 3 mm Hg), while pulmonary vascular resistance (PVR) was in the low-normal range (59 +/- 16 dynes.sec.cm-5). No difference among the effects of enflurane and isoflurane on systemic and pulmonary hemodynamics and metabolic rate was detected. Induction of anesthesia was associated with a decrease in VO2, CI, MAP, and MPAP (P less than 0.001), while SVR and PVR did not change. The decrease in CI paralleled the decrease in VO2, thereby maintaining whole-body O2 supply-demand balance. VO2 decreased most likely because of lessened tissue O2 requirements. When anesthesia was discontinued, all metabolic and hemodynamic variables promptly returned to preanesthetic values. No effect of burn wound excision on pulmonary circulation was detected.

Adult↗

The reason for cardiac output reduction after aortic cross-clamping.

The hypothesis that a decrease in cardiac output during infrarenal aortic cross-clamping is related to a decrease in oxygen consumption in the perfused tissues (cross-clamp-adapted oxygen consumption) rather than to deterioration of myocardial performance has been tested. Twenty-two patients undergoing excision of an aortic abdominal aneurysm were randomly divided into two groups of equal number. During aortic cross-clamping, Group 1 patients received nitroglycerin infusion, 1 to 2 micrograms.kg-1.min-1, whereas Group 2 patients did not receive a nitroglycerin infusion. During aortic cross-clamping, cross-clamp-adapted body oxygen consumption decreased equally in both groups by 40 to 42 percent of baseline values, whereas cardiac output decreased by 17 percent in Group 2 but did not change significantly in Group 1. Mixed venous oxygen content increased significantly after induction of anesthesia and prior to aortic cross-clamping in both groups. During cross-clamping, the values of mixed venous oxygen content remained increased in Group 2 and increased further in Group 1. The data support our hypothesis since a decrease in cardiac output was not associated with an increase in filling pressures during aortic cross-clamping, but was instead associated with an increase in mixed venous oxygen content and a decrease in the arteriovenous oxygen content difference. Nitroglycerin infusion was associated with a further increase in mixed venous oxygen content during aortic cross-clamping and a decrease in the arteriovenous oxygen content difference, without a concomitant increase in oxygen utilization.

Aorta, Abdominal↗

Inferior and superior vena caval blood flows during cross-clamping of the thoracic aorta in pigs.

Changes in blood flow through the inferior and superior venae cavae during cross-clamping of the thoracic aorta just above the diaphragm were studied in 28 miniature pigs anesthetized with enflurane titrated to maintain systemic arterial blood pressure close to normal values. Surgical preparation included sternotomy with subsequent placement of a noncannulating electromagnetic probe around the ascending aorta and a cannulating electromagnetic probe in the transected inferior vena cava. Superior vena caval flow was calculated as the difference between aortic flow and inferior vena caval flow. Clamping of the thoracic aorta alone (n = 10) was accompanied by severe arterial hypertension, a dramatic decrease in inferior vena caval flow, and an increase in superior vena caval flow, which resulted in a moderate increase in aortic flow. Simultaneous clamping of the thoracic aorta and inferior vena cava (n = 13) was accompanied by no significant change in arterial pressure or superior vena caval flow. The oxygen content in mixed venous blood significantly (p less than 0.05) increased from 9.5 +/- 1.1 to 13.4 +/- 1.8 ml.dl-1 in animals undergoing clamping of the thoracic aorta only, but did not change significantly in animals subjected to simultaneous clamping of the aorta and inferior vena cava. The study demonstrates a substantial increase in superior vena caval flow during cross-clamping of the thoracic aorta. Further studies elucidating the mechanism of the observed changes are required.

Animals↗

Hepatic oxygen supply during halothane or isoflurane anesthesia in guinea pigs.

The present study was designed to determine changes in hepatic oxygen supply in guinea pigs during halothane or isoflurane anesthesia. Twenty-seven guinea pigs were randomly divided into three equal groups: control (no anesthesia) group, and animals anesthetized with halothane or isoflurane to decrease mean arterial pressure (MAP) by 50%. Hepatic arterial blood flow (HABF) and portal blood flow (PBF), as well as arterial and portal venous blood oxygen content, were determined in awake animals (stage I, baseline values), and during anesthesia (stage II). HABF was found to be extremely low (0.04 ml.min-1.g-1) during both stages of observation in the control (no anesthesia) group, as well as during stage I (awake) in animals treated with halothane or isoflurane. Equal degrees of arterial hypotension during halothane and isoflurane anesthesia were accompanied by decreased HABF during halothane (37%), but no significant change in HABF during isoflurane anesthesia. PBF decreased significantly in both experimental groups; however, the decrease was more prominent during halothane than during isoflurane anesthesia (57% vs. 23%). The observed hepatic circulatory changes led to a 65% decrease in hepatic oxygen delivery during halothane, but only a 34% decrease during isoflurane anesthesia. The present study does not exclude the possibility that liver damage in the guinea pig model is related to the reductive metabolism of halothane or any other mechanism. However, the extremely low HABF and a prominent reduction in both HABF and PBF during halothane anesthesia may be responsible for hepatic damage observed in the guinea pig model.

Anesthesia, Inhalation↗

Total body oxygen supply-demand balance in burned patients under enflurane anesthesia.

The effects of enflurane anesthesia on the oxygen supply-demand balance have been studied in nine hypermetabolic-hyperdynamic burned patients undergoing debridement and skin-grafting procedures. Mean burn size was 55% of total body surface area. The patients were without cardiac, lung, hepatic, and kidney dysfunction and were not septic. Anesthesia was induced with sodium pentothal and maintained with enflurane and nitrous oxide in oxygen. Ventilation was controlled to maintain PaCO2 within normal limits. Crystalloid solutions and blood were administered to maintain adequate heart filling pressures. Serial measurements of cardiac output, arterial and mixed venous blood gases, and oxygen content were made before, during, and after anesthesia. Following induction of anesthesia and enflurane administration, cardiac output, oxygen delivery, and oxygen consumption decreased in a parallel fashion to approximately 60% of control. These variables did not change significantly throughout the procedure and returned to control values when enflurane was discontinued. Arteriovenous oxygen content difference did not increase and metabolic acidosis did not develop, suggesting that tissue perfusion remained adequate. Under anesthesia, oxygen consumption in burned patients was similar to that observed in normal subjects, indicating that enflurane blunts the hypermetabolic effects of thermal injury. It is concluded that in burned patients enflurane decreases metabolic rate and cardiac output, and maintains an adequate oxygen supply-demand balance.

Adolescent↗

General anesthesia and hepatic circulation.

This article describes hepatic circulatory disturbances associated with anesthesia and surgical intervention. The material is presented in three parts: part 1 describes the effects of general anesthetics on the hepatic circulation; part 2 deals with different factors related to surgical procedures and anesthesia; and part 3 analyzes the role of hepatic circulatory disturbances and hepatic oxygen deprivation in anesthesia-induced hepatotoxicity. The analysis of available data suggests that general anesthesia affects the splanchnic and hepatic circulation in various directions and to different degrees. The majority of anesthetics decreases portal blood flow in association with a decrease in cardiac output. However, hepatic arterial blood flow can be preserved, decreased, or increased. The increase in hepatic arterial blood flow, when it occurs, is usually not enough to compensate for a decrease in portal blood flow and therefore total hepatic blood flow is usually decreased during anesthesia. This decrease in total hepatic blood flow has certain pharmacokinetic implications, namely a decrease in clearance of endogenous and exogenous substances with a high hepatic extraction ratio. On the other hand, a reduction in the hepatic oxygen supply might play a certain role in liver dysfunction occurring perioperatively. Surgical procedures-preparations combined with anesthesia have a very complex effect on the splanchnic and hepatic circulation. Within this complex, the surgical procedure-preparation plays the main role in developing circulatory disturbances, while anesthesia plays only a modifying role. Hepatic oxygen deprivation may play an important role in anesthesia-induced hepatotoxicity in different experimental models.

Anesthesia, General↗