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Biomedical subjects

D Howland

Publications and source records attributed to D Howland.

22 records · Page 2Linked to original sources

Isoflurane potency in the dog and cat.

Cardiopulmonary effects of isoflurane, a new inhalation anesthetic, were investigated in healthy unpremedicated dogs and cats under conditions of spontaneous and controlled (dogs only) ventilation. Measurements were made at minimal alveolar concentration (MAC) multiples of 1.0, 1.5, 2.0, and 3.0 in dogs and 1.0, 1.5, 2.0, and 2.4 in cats. The isoflurane MAC was previously determined in these animals and was 1.28 +/- 0.06% for dogs and 1.63 +/- 0.02% for cats. We found that as anesthetic dose increased, mean arterial pressure consistently and significantly (P less than 0.05) decreased. Cardiac output, measured only in dogs, was sustained only during light-moderate levels (1.0 to 2.0 MAC) of anesthesia because the heart rate significantly increased. Stroke volume, total peripheral resistance, and left ventricular work tended to decrease as anesthesia deepened. We found no significant difference in cardiovascular measurements in dogs between spontaneous and controlled ventilation at equal MAC multiples. That isoflurane is a profound respiratory depressant in dogs and cats is supported by our findings of a dose-dependent increase in PaCO2. In addition, the alveolar isoflurane concentration required to produce at least 60 seconds of apnea divided by MAC (i.e., the anesthetic index) averaged 2.5 for dogs and 2.4 for cats. The anesthetic index which we determined for isoflurane in dogs equals or is less than the index reported for other inhaled anesthetics in this species.

Anesthesia, Inhalation↗

Nitrous oxide: effect on accumulation rate and uptake of bowel gases.

Breathing 79% nitrous oxide (N2O) in oxygen increased the rate of accumulation of bowel gas during intraluminal bowel segment infusions of hydrogen, methane (CH4), air, or carbon dioxide (CO2) in four pentobarbital-anesthetized dogs more than did breathing 100% oxygen. A N2O-associated increase in the volume of naturally produced intestinal gas in five halothane-anesthetized ponies corroborated the findings in the dog studies. In a second group of four dogs a bolus of CH4 or CO2 was injected into the bowel lumen. When the dogs breathed O2 the bowel gas volume decreased. Gas was virtually absent in the CO2-containing segment within 20 minutes. Breathing N2O increased the volume of the segments containing CH4 while the CO2 segments decreased less rapidly than during O2 breathing. Breathing O2 after 30 minutes of N2O breathing caused little change in the rate of decrease in CO2 segment volumes. However, the CH4 segment volume ceased to increase and eventually returned toward control volumes.

Air↗