The correct antidote for beta-antagonists.
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Biomedical subjects
Publications and source records attributed to A G Tolas.
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Barbiturate, nitrous oxide, and oxygen are commonly used by the oral and maxillofacial surgeon to anesthetize the ambulatory oral surgery patient. The authors report three cases of ventricular dysrhythmia occurring from surgical stimulation during nitrous oxide-oxygen-thiopental anesthesia. These dysrhythmias were most likely mediated via direct neural stimulation of cardiac sympathetic nerves. Concomitant with adrenergic stimulation, a rise in the arterial plasma norepinephrine level was documented, along with an increase in the rate-pressure product. Immediate recognition and treatment of ventricular dysrhythmia is mandatory to preclude further serious cardiovascular complications or death.
The effect of dental injection of local anesthetic on arterial plasma epinephrine concentrations and cardiovascular functions was assessed in patients having a maxillary third molar extracted. After three and five minutes, arterial plasma epinephrine concentrations were more than two times higher than baseline values in patients who were given an injection of a standard Carpule (1.8 ml) of 2% lidocaine with 1/100,000 epinephrine (18 micrograms). The heart rate and pressure-rate product increased slightly above baseline control values, and the mean arterial pressure declined slightly (P less than .05) after five minutes. Patients who received an injection of lidocaine alone had no significant change of plasma epinephrine or of the cardiovascular parameters measured. Although the hemodynamic responses to lidocaine plus epinephrine in these healthy young adults were small, the significant increase of systemic plasma epinephrine concentrations suggests that high-risk patients who receive this type of anesthesia should be monitored carefully.
To investigate the relationship between forearm venous levels of catecholamines and systemic levels, simultaneous arterial and forearm vein blood samples were obtained from 14 subjects undergoing elective dental procedures and assayed with a sensitive and specific radioenzymatic assay. Baseline venous levels of norepinephrine were greater than arterial levels (305 +/- 30 pg/ml versus 221 +/- 18; +/- SEM, p less than .005). Conversely, arterial epinephrine levels were higher than venous (132 +/- 17 pg/ml versus 80 +/- 10; p less than .005). There was a significant relationship between arterial and venous levels of both norepinephrine (r = .77, p less than .01) and epinephrine (r = .67, p less than .01). The arterial-venous epinephrine difference increased from the baseline value of 44 +/- 14 pg/ml to 108 +/- 16 (p less than .005) by 3 min after subcutaneous injection of epinephrine (18 microgram), but the arterial-venous difference returned to 65 +/- 24 by 5 min after injection (p = NS versus baseline). These findings indicate that under the conditions of this study, forearm tissues produced more norepinephrine than they removed, but removed more epinephrine than they produced. Baseline venous and arterial levels were related; when epinephrine production was augmented, there was a short time lag for the venous epinephrine increase.
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