PubMed HealthSearch

PubMed · 6594955

Hemodynamic changes during isoflurane anesthesia.

Abstract

Isoflurane is known to produce slight tachycardia in humans. This study examined the effects of isoflurane on cardiovascular parameters in dogs. Four groups, with six dogs per group, were anesthetized with isoflurane. Prior to isoflurane administration, a femoral artery catheter was inserted. Group 1 was anesthetized with isoflurane alone. Group 2 was pretreated with fentanyl prior to administration of isoflurane. Group 3, anesthetized with isoflurane alone, had a Swan-Ganz catheter introduced through the external jugular vein. Group 4 was pre-treated with fentanyl prior to administration of isoflurane, and had a Swan-Ganz catheter. Physiologic parameters were recorded at 15-min intervals as isoflurane was reduced from 3.5% to 1.5% by 0.5% increments. Heart rate increased while blood pressure decreased during induction (8.5 min) in Group 1 and then returned to control values. In Group 2, heart rate declined with no changes in blood pressure over all isoflurane concentrations. The induction time (time from initiation of the anesthetic until intubation was achieved) was 2 min. In Group 3, the heart rate increased and the blood pressure decreased, with an induction time of 10 min. Cardiac output and pulmonary artery pressure varied inversely to the isoflurane concentration. In Group 4, heart rate decreased with a minimal decrease in blood pressure, and an induction time of 3.5 min. Cardiac output and pulmonary artery pressure varied inversely to the isoflurane concentration. A fifth group of 6 dogs was monitored for heart rate only, while a mask was placed over their noses to simulate the procedure for the administration of an anesthetic. The heart rate increased similar to that of the dogs in Groups 1 and 3, but the tachycardia was abolished with the administration of fentanyl. Increased heart rate could not be directly attributed to isoflurane but was probably due to catecholamines released during induction. Fentanyl blocked this effect, resulting in a decrease in heart rate.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J S Brahim, P D Thut. Hemodynamic changes during isoflurane anesthesia.. https://pubmed.ncbi.nlm.nih.gov/6594955/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

[Mycoplasma pneumonia found by the occurrence of atelectasis during the induction of anesthesia in a child with tetralogy of Fallot].

A 3-yr-old girl was scheduled to undergo surgical repair of tetralogy of Fallot. She had no sign or data indicating an infectious disease, other than a slight dry cough for a few days prior to the proposed operation. During the induction of anesthesia with nitrous oxide, oxygen and sevoflurane, transient moist rale was noticed with a precordial stethoscope. Her trachea was intubated without any difficulty after the administration of pancuronium, followed by a chest auscultation, which revealed vesicular sound bilaterally but no rale. However, a chest X-ray taken after the right subclavian vein catheterization showed a massive hypoaeration in the upper left pulmonary region. The presence of the right-to-left intracardiac shunt made it impossible to detect the occurrence of atelectasis by a decrease in SpO2. Fiberoptic bronchoscopy showed no obstruction of the bronchus and no hypersecretion initially, but physical therapy and humidification made it possible to aspirate intratracheal sputum. Because there seemed to be an imbalance between the relatively uneventful induction of anesthesia and the relative resistance of atelectasis to authentic therapies, the operation was postponed, and the antibody to mycoplasma pneumoniae was titrated. The titer in the serum was 1:80, and increased to 1:560 6 days later. Chest X-rays revealed normal lung condition 3 days later, and she was given erythromycin, 800 mg.day-1 for 2 weeks. We conclude that we should be alert to possible asymptomatic mycoplasma infection, which potentially makes patients susceptible to atelectasis during the perioperative period.

Anesthesia, Inhalation

Refractive indices for volatile anesthetic gases: equipment and method for calibrating vaporizers and monitors.

OBJECTIVE: The objective of our study was to establish the refractive indices and the virial coefficients of the volatile anesthetic vapors. These indices and coefficients will allow refractometry to be used by manufacturers to produce accurate calibration, without requiring expensive high-precision calibration gases. METHODS: We used a precision refractometer to measure the refractive indices for five volatile anesthetic vapors. We prepared our calibration gases by mixing a gravimetrically calibrated amount of liquid agent with a constant gas flow. RESULTS: The refractive indices for the volatile anesthetic vapors are 1,603.2 for halothane, 1,540.4 for enflurane, 1,563.3 for isoflurane, 1,538.3 for sevoflurane, and 1,211.7 for desflurane. The maximum theoretical error in our measurements, due to all sensors and all uncertainty in our measurement of apparatus and physical constants, is +/- 0.56% of the reading (+/- 0.70% for desflurane). CONCLUSIONS: If refractometry replaced calibration gases in cylinders, as a calibration standard, manufacturers might avoid errors that now occur because calibration gases manufactured by numerous companies seem to differ. We propose that our values serve as an interim database.

Anesthesia, Inhalation