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J Kytta

Publications and source records attributed to J Kytta.

7 recordsLinked to original sources

Bupivacaine toxicity in young pigs is age-dependent and is affected by volatile anesthetics.

The influence of age and volatile anesthetic agents on plasma concentrations and toxic effects of bupivacaine were studied in 2-day-old, 2-week-old, and 2-month-old pigs. Bupivacaine was infused at a constant rate while the pigs' ECGs and EEGs were recorded. Six pigs in each age group were lightly anesthetized with 70% N2O/30% O2 during the bupivacaine infusion, and twelve 2-day-old pigs were anesthetized with 70% N2O/30% O2 plus either 0.5 X MAC halothane or isoflurane. Two-day-old pigs were more resistant than older pigs to the toxic effects of bupivacaine despite higher plasma concentrations at all sample times. All pigs given N2O alone or N2O plus halothane had ventricular dysrhythmias, but only one pig in the N2O plus isoflurane group had a ventricular dysrhythmia. Threshold doses of bupivacaine for dysrhythmias in the N2O alone and N2O plus halothane groups did not differ. Seizures occurred in all pigs in the N2O alone group, in none of the N2O plus halothane group, and in two of the N2O plus isoflurane group. The doses required to depress cardiac index and cause asystole were less in the groups receiving halothane and isoflurane. It was concluded that N2O plus halothane and N2O plus isoflurane increase the lethality of bupivacaine while preventing early warning signs of toxicity.

Aging↗

Interaction of lidocaine and hypothermia in Bier blocks in volunteers.

The present investigation was designed to study the interaction of temperature, lidocaine, and ischemia during intravenous regional anesthesia (IVRA) of the arm. Five volunteers were studied during exposure of one of their arms to four different experimental conditions: hypothermia and ischemia; hypothermia, ischemia, and lidocaine; normothermia and ischemia; normothermia, ischemia, and lidocaine. Each subject was tested on four different occasions with only one test condition imposed per occasion and with 3 or more days between experiments. Somatosensory evoked responses (SERs) and muscle responses to ulnar nerve stimulation were measured, and sensory testing was done to determine whether the neural effects of the particular treatments differed. Anesthesia developed sooner and was more extensive when local anesthetic was injected. A 5-10 degrees C decrease in tissue temperature did not accentuate the anesthetic effects of lidocaine as determined by time to loss of pinprick and touch sensation. With ischemia alone, anesthesia of the finger tips with preservation of sensation on the arm was observed in all subjects 20 min after tourniquet inflation. Anesthesia at all cutaneous test sites was achieved in 7 of 10 lidocaine experiments; no systematic order of sensory loss, such as progression from distal to proximal sites, was observed. Decrease in limb temperature slowed the development of lidocaine effects on evoked responses and recovery from the effect. Under conditions of ischemia, deterioration of sensation generally began earlier under cold rather than warm conditions. Primary differences between changes in the SERs and muscle responses under condition of ischemia versus ischemia and lidocaine were the rate and magnitude of change of potential latency and amplitude.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Stress/catecholamine-induced cardiac necrosis. Reduction by beta 1-selective blockade.

Catecholamine-induced cardiac necrosis is a well-described phenomenon. Patients with severe head injury are known to be in a marked hyperadrenergic state and can experience cardiac morbidity; this was confirmed in a pilot study. A further study was then undertaken to examine a possible relationship between plasma catecholamine concentration and cardiac morbidity in patients with severe head injury and to assess the effect of intervention with the beta 1-selective agent atenolol. The study involved 114 hemodynamically stable patients with acute head injury who were randomized, double blind, to either placebo or atenolol given intravenously (10 mg every six hours) for three days and then orally (100 mg once a day) for four days. Both groups were equally stressed in terms of raised arterial norepinephrine levels. In patients receiving placebo, but not in those given atenolol, there was a significant (P less than 0.01) positive correlation between arterial level of norepinephrine and plasma level of cardiac-specific isoenzyme CK-MB. Thirty percent of the placebo group, in contrast to 7.4% of the atenolol group (P less than 0.05), had pathologically elevated CK-MB levels (ie, greater than 3% of total CK, a value compatible with acute myocardial infarction). Atenolol appeared to significantly reduce the likelihood of supraventricular tachycardia and ST-segment and T-wave changes and prevented cardiac necrosis (as determined post mortem). The finding that beta 1-selective blockade significantly inhibits catecholamine-induced necrosis has possible broad clinical implications.

Adolescent↗

Reduction of stress/catecholamine-induced cardiac necrosis by beta 1-selective blockade.

114 haemodynamically stable patients with acute head injury were randomised, double-blind, to either placebo or atenolol given intravenously (10 mg every 6 h) for 3 days then orally (100 mg daily) for a further 4 days. Both groups were equally stressed as shown by raised arterial noradrenaline levels. In patients receiving placebo, but not in those receiving atenolol, there was a significant (p less than 0.01) positive correlation between arterial noradrenaline and levels of the myocardial isoenzyme of creatine kinase (CKMB). 30% of the placebo group compared with 7.4% of the atenolol group (p less than 0.05) showed CKMB levels greater than 3% of total creatine kinase (compatible with myocardial damage). CKMB levels greater than 6% of total creatine kinase (compatible with acute myocardial infarction) were present in 16.7% of patients receiving placebo but in no patients receiving atenolol (p = 0.053). Atenolol appeared to reduce significantly the likelihood of supraventricular tachycardia and ST-segment and T-wave changes and prevented cardiac necrosis seen at necropsy.

Adolescent↗

A rodent model for studying four well defined toxic endpoints during bupivacaine infusion.

An animal model with four well defined endpoints for studying the cardiotoxicity and neurotoxicity of bupivacaine is described. Five male Wistar rats (264-324 g) were anesthetized, tracheostomized and ventilated, and ECG and EEG leads were placed. Femoral arteries and veins were then cannulated. Twenty minutes before bupivacaine infusion, 0.1 mg/kg pancuronium was given intravenously, and anesthesia was adjusted to halothane 0.5%, 30% O2 and 70% N2O. Bupivacaine infusion was then begun at 2 mg/kg/minute. Bupivacaine doses producing the following endpoints were then determined: (1) first ventricular arrhythmia (ARR), (2) seizures (SZ), (3) isoelectric EEG (ISO EEG), and (4) asystole (ASYS). The doses of bupivacaine (in mg/kg +/- SD) precipitating AAR, SZ, ISO EEG and ASYS were 4.22 +/- 1.87, 7.08 +/- 1.55, 11.05 +/- 5.15 and 20.4 +/- 6.49 mg/kg, respectively. These endpoints were present and readily determined in all animals. The doses of bupivacaine producing ARR and SZ were not significantly different (p greater than 0.05). The doses producing SZ, ISO EEG and ASYS were significantly different from each other (p greater than 0.05, ANOVA and the Duncan test). These results indicate that it is possible to study, in the anesthetized and paralyzed rat that is intensely monitored, many of the variables associated with local anesthetic toxicity currently of clinical interest. The use of a constant local anesthetic infusion allows ready observation of the progression of toxic signs.

Animals↗