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Biomedical subjects

M Freysz

Publications and source records attributed to M Freysz.

At least 19 recordsLinked to original sources

Efficacy of a beta-adrenergic receptor antagonist, propranolol, in preventing ischaemic ventricular fibrillation: dependence on heart rate and ischaemia duration.

OBJECTIVES: To investigate the prevention of ventricular fibrillation with a beta-adrenergic receptor (beta-AR) antagonist in anaesthetized, open-chest pigs in a model of ischaemia, intended to reproduce what happens either in anginal attack or in the first hour of infarction. METHODS: Ventricular fibrillation threshold (VFT) was determined with trains of diastolic stimuli of 100 ms duration delivered by a subepicardial electrode inserted in the area subjected to ischaemia. Ischaemia was obtained by the complete occlusion of the left anterior descending coronary artery, either near its origin during brief but increasing periods (30, 60, 90, 120, 150, 180, 240, 300 s), or half-way from its origin for a much longer time (more than 60 min). RESULTS: During transient proximal occlusion and isoprenaline infusion (0.25 microgram/kg/min), propranolol (50 micrograms/kg plus 2 micrograms/kg/min) attenuated both tachycardia and the fall in VFT to 0 mA. The shortening of MAP duration accompanying depolarization of the fibres was concurrently slowed down, and time to fibrillation prolonged (122 +/- 15 to 262 +/- 14 s, p < 0.001). In the absence of isoprenaline infusion, propranolol exerted similar effects, but to a lesser degree, in proportion to heart rate dependent on sympathetic activity. In contrast, it became unable to raise VFT before and during ischaemia, when heart rate was kept constant by pacing. After persistent midportion occlusion, significant differences in VFT were found only at the 5th min, depending on whether heart rate was accelerated by isoprenaline (0.8 +/- 0.2 mA), left normal (1.8 +/- 0.3 mA) or slowed down by propranolol (1.6 +/- 0.3 mA). Later on, especially after 15 and 25 min of ischaemia, VFT, which was below 1.0 mA, did not appear to be influenced by the activation or blockade of beta-ARs: spontaneous fibrillations were observed in the same number in this period with or without the administration of propranolol. Beyond 30 min after occlusion, the rise in VFT, subsequent to the first irreversible cell damage, also occurred in the same way. CONCLUSIONS: The prevention of ischaemic ventricular fibrillation by a beta-AR antagonist, judged from VFT, is easily checked experimentally when ischaemia is only transitory, especially if sympathetic activity is high. The maintenance of VFT at a relatively high level is essentially related to the depressant effect on the sinus rate. The same animal model does not give support to an effective protection in the first hour of infarction. However, the control of heart rate may also be beneficial in these circumstances by attenuating systemic haemodynamic disorders.

Adrenergic beta-Agonists

[Cardiac accidents of locoregional anesthesia: experimental study of risk factors with bupivacaine].

Cardiac disorders are observed when excessive plasma concentrations of local anaesthetics are reached, following for instance intravascular accidental injection for epidural anaesthesia or brachial plexus block. Bupivacaine particularly, which is one of the most used local anaesthetics, adversely affects intraventricular conduction and cardiac contractile strength from the 3.0-4.0 micrograms/ml blood levels. Depression of conduction is especially to be feared, for it can result in reentrant arrhythmias likely to degenerate into often fatal ventricular fibrillation. Such accidents may sometimes occur at far lower concentrations, subsequent to diffusion into systemic circulation from the injection site (0.4-1.2 micrograms/ml). These accidents were probably due to various factors which concomitantly intervene during the anaesthesia. We could identify a number of these factors by associating them to an intravenous infusion of bupivacaine (0.04 mg/kg/min after a loading dose of 1.00 mg/kg) in animals (dogs and pigs) under electrocardiographic monitoring, in which conduction time, monophasic action potential duration, effective refractory period and electrical fibrillation threshold were determined in the ventricular fibres. The electrophysiological changes due to bupivacaine may be enhanced by 1) dilution hyponatremia (115-110 mmol/l) induced by a short (5 min) intravenous 10 ml/kg/min infusion of hypotonic solution and/or hyperkalemia (7-8 mmol/l) induced by 0.05 mmol/kg/min infusion of potassium chloride; 2) the acceleration of cardiac contractions (180-210 beats/min) induced by ventricular pacing; 3) mild hypothermia (35-34 degrees C) induced by blood cooling in an extracorporeal circuit; 4) myocardial ischaemia induced by complete temporary occlusion of the left anterior descending coronary artery near its origin. The risk of cardiac accidents, possibly severe, is therefore enhanced by each of these factors capable of lowering the concentration required for their triggering and, of course, the combination of two or several of them. On the contrary, the knowledge of these factors should allow to prevent most of cardiac accidents of locoregional anaesthesia.

Accidents

[Predictive factors of short-term mortality in patients with severe head injury].

OBJECTIVES: To define hazard factors of early mortality in severe brain injured patients. PATIENTS AND METHODS: An open prospective study was conducted in 125 brain injured patients with initial Glasgow coma score below 8. Different vital parameters were recorded daily during the first 10 days of resuscitation. Computed tomography (CT) scan classification of the Traumatic Coma Data Bank, the Glasgow coma score, the SAPS score and the influence of neurosurgery were assessed. RESULTS: In exclusive parameters analysis, a Glasgow coma score below 6, the presence of a midline shift of more than 5 mm on the initial brain CT scan, high or mixed density lesion of more than 25 cc, as well as mean blood pressure below 90 mm Hg were respectively correlated with early death. Low mean blood pressure led to low brain perfusion pressure in patients with intracranial hypertension. CONCLUSION: We defined 3 independent predictive factors of early mortality: the Glasgow coma scale, CT scan classification and mean blood pressure below 90 mm Hg. The main goal of the resuscitation in severe brain insult patients must be to obtain a sufficient brain perfusion pressure. This often requires the use of vasoactive drugs.

Adult

[Use of Glasgow coma scale by anesthesia and intensive care internists in brain injured patients].

OBJECTIVE: To evaluate the quality and reliability of the Glasgow coma scale (GCS) score when determined, in head trauma patients, by trainees in anaesthesiology. STUDY DESIGN: Prospective survey. USERS: One hundred trainees in their first to fourth year of training in anaesthesiology. METHODOLOGY: A questionnaire completed by the trainees concerning: demographic data; place, time and qualification of the physician determining the first GCS score; time and qualification of the physician determining the subsequent GCS score; assessment of the GCS score in case of asymmetrical motor response, tracheal intubation, bilateral eyelid oedema, or circulatory or ventilatory failure. RESULTS: Sixty questionnaires were available for analysis. Lack of compliance with the rules for the GCS score evaluation resulted in many errors by most of the trainees. Only a few of them determined an accurate GCS score in cases of asymmetric motor response or impossibility to determine verbal or ocular response. Finally, GCS scores were determined later only very rarely. CONCLUSION: In order to provide optimal care and allow an accurate assessment of therapeutic efficiency, special attention should be given to the teaching of the GCS scoring method in head trauma patients.

Anesthesiology

Magnesium--a profibrillatory or antifibrillatory drug depending on plasma concentration, heart rate and myocardial perfusion.

BACKGROUND: The opinions on the efficacy of magnesium as an antiarrhythmic drug vary considerably. The action of magnesium on vulnerability to fibrillation was therefore investigated in anaesthetized, open-chest pigs under different conditions as regards plasma concentration, heart rate and myocardial perfusion. METHODS: Vulnerability to fibrillation was assessed by electrical fibrillation threshold (EFT), measured with 100-ms duration diastolic impulses. These stimuli were delivered to the heart normally perfused, at a usual (90 and 120 beats/min) or accelerated (180 beats/min) rate. Vulnerability to fibrillation was also assessed at the high rate (180 beats/min) in the heart made ischaemic by complete occlusion of the left anterior descending coronary artery near its origin. EFT was then measured at the end of occlusion periods which were of increasing duration (30, 60, 90, 120 s). Monophasic action potential (MAP) duration, intraventricular conduction time, left ventricular dP/dt max (LVdP/dt max) and mean blood pressure were concurrently measured. RESULTS: In the absence of ischaemia, 5 mumol.kg-1.min-1 magnesium i.v. infusion, which raised plasma concentration to 1.78 +/- 0.14 mmol/L, lowered EFT, measured at the rate of 116 beats/min, from 14.0 +/- 1.1 to 6.8 +/- 1.0 mA (P < 0.001), without significant variation of the other parameters. Administered as previously or in a markedly higher dose (400 mumol.kg-1 loading dose and 10 mumol.kg-1.min-1 infusion) which raised plasma concentration up to 4.84 +/- 0.52 mmol/L, magnesium significantly influenced neither EFT nor MAP duration, reduced by the high rate (180 beats/min) to 6.2-6.7 mA and 212-220 ms respectively. Under the same conditions, at the same 180 beats/min rate, ischaemia brings about a fall of EFT, from 6.9 down to nearly 0 mA, with occurrence of fibrillation, in approximately 120 s. Magnesium failed to slow this fall and to delay the onset of fibrillation. In contrast, within the minutes following the end of occlusion, magnesium increased EFT to a great extent (from 7.1 +/- 0.4 to 13.5 +/- 0.7 mA, P < 0.001), with a significant prolongation of MAP duration (212 +/- 6 to 234 +/- 8 ms, P < 0.01). CONCLUSION: Magnesium may develop profibrillatory or antifibrillatory effects depending on plasma concentration, heart rate and myocardial perfusion.

Animals

Calcium antagonists and prevention of ventricular fibrillation induced by transient or persistent ischemia.

Experimental studies have shown the limitation by calcium antagonists of the propensity to fibrillation secondary to the occlusion of a large coronary artery. However, this capacity, studied in the acute phase of infarction, is less obvious and still under debate. Ischemia was therefore produced in anesthetized, open-chest pigs by complete occlusion of the left anterior descending coronary artery according to two modes, either near its origin during brief but increasing periods (30, 60, 120, 180 s, etc) or half-way from this origin for a much longer time (60 min). The time course of vulnerability to fibrillation was monitored by ventricular fibrillation threshold (VFT), measured by trains of diastolic stimuli of 100 ms. Verapamil was administered in a 50 micrograms/kg dose followed by 2 micrograms/kg/min infusion. 1) In the case of brief proximal occlusions under pacing at a constant high rate (180 beats/min), verapamil slowed the decline of VFT from 6-8 mA to nearly 0 mA. VFT was 4.4 +/- 0.4 mA after 60 s ischemia, whereas it had already fallen to 1.8 +/- 0.3 mA (p < 0.001) in the absence of the drug. Accordingly, the onset of spontaneous fibrillation which depends on the decrease in VFT to about 0 mA was prolonged from 2-3 to 6-9 min. Bradycardia, concurrently produced by verapamil, is a factor which enhances these alterations. 2) In the case of a persistent midportion occlusion of the artery under sinus rate, fibrillations were similarly delayed by verapamil from 14-25 to 23-49 min after occlusion, but they were more numerous. VFT was lowered to critical values later, but also for a longer time. The period propitious to fibrillation was prolonged because the return of VFT to higher values reflecting hypoexcitability subsequent to the first cell injury was substantially delayed. Consequently, calcium antagonists should often prevent ventricular fibrillation when transient ischemia disappears before VFT falls to the vicinity of 0 mA. In contrast, a real benefit could not be expected from these drugs when ischemia is persistent since they then only delay fibrillations, the number of which is increased.

Analysis of Variance

Cardiac implications of amlodipine-dantrolene combinations.

PURPOSE: Cardiac disorders, cardiac arrest and ventricular fibrillation in the most severe cases, have been observed after the administration of dantrolene to patients treated by verapamil for coronary artery disease. This study was designed to examine the interaction of dantrolene with amlodipine, a dihydropyridine. METHODS: In 12 anaesthetized, open-chest pigs, the effects of the interaction have been studied on heart rate, atrioventricular conduction, monophasic action potential duration, intraventricular conduction time, left ventricular dP/dt max and mean blood pressure. The study was performed with normal coronary circulation and ischaemia of a large area of the left ventricule, obtained by complete occlusion of the left anterior descending coronary artery near its origin, under pacing at a constant high rate, 180 beats.min-1. The drugs were injected iv, amlodipine 0.4 mg.kg-1 first and dantrolene 3.0 mg.kg-1 20 min later in six animals and the order was reversed in the other animals. RESULTS: Sinus rate and atrioventricular conduction were not affected by amlodipine, but were slowed by dantrolene added (145 +/- 9 to 131 +/- 7 beats.min-1, P < 0.01 and 150 +/- 15 to 180 +/- 20 msec, P < 0.01). In contrast, amlodipine or amlodipine plus dantrolene did not change MAP duration or conduction time in the normal heart. Similarly, they did not alter the maximal variations due to ischaemia, but delayed them, while prolonging the time to onset of fibrillation (111 +/- 8 to 343 +/- 33 sec. P < 0.001 with amlodipine alone, 289 +/- 11 to 323 +/- 16 sec, P < 0.05 with dantrolene). Left ventricular dP/dt max was lowered from 1670 +/- 86 to 1532 +/- 50 mmHg.sec-1 (P < 0.001) and mean blood pressure from 79 +/- 4 to 70 +/- 3 mmHg (P < 0.01) by amlodipine, but dantrolene did not enhance and even counteracted these effects. Finally, potassium plasma concentration did not increase above 5.1 +/- 0.2 mmol.L-1 under the dual influence of amlodipine and dantrolene. CONCLUSION: In usual clinical doses, dantrolene may be safely administered concurrently with amlodipine.

Amlodipine

Cardiac beta-adrenoreceptor activation and ventricular fibrillation under normal and ischemic conditions.

OBJECTIVES: To investigate the role of ventricular and atrial beta-adrenoceptor activation by isoprenaline in the genesis of rhythm disorders and risk of fibrillation in the healthy or ischaemic heart. METHODS: The study was performed in anaesthetized, open-chest pigs. Electrical fibrillation threshold (EFT) of the ventricles was measured with trains of diastolic stimuli of 100 ms duration synchronized with respect to the R-waves and delivered to the myocardium by a subepicardial electrode introduced into the area which could be subjected to ischaemia. Monophasic action potential (MAP) and effective refractory period (ERP) were recorded in the same area. Ischaemia was obtained by complete occlusion of the left anterior descending coronary artery near its origin during increasing periods (30, 60, 90, 120, 150, 180, 240 s). RESULTS: At a rate varying according to the action exerted by isoprenaline on the sinus rate, EFT decreased by about 30% in the healthy heart during the infusion of 0.5 micrograms/kg/min isoprenaline under the influence of the acceleration of cardiac beats. In the ischaemic heart, sinus tachycardia accelerated the fall in EFT and the reduction in MAP duration and resulted sooner in spontaneous ventricular fibrillation. During ventricular pacing at a constant rate of 200 beats/min, isoprenaline raised EFT by nearly 80% in the absence of ischaemia, but this rise was abolished by ischaemia, at least of no-flow type. CONCLUSION: Tachycardia produced by activation of atrial adrenoceptors decreases EFT in the healthy heart and aggravates its fall in the ischaemic heart. Ventricular adrenoceptor activation counteracts the EFT fall related to tachycardia in the healthy heart, but not in the ischaemic heart. Therefore, the protection against ischaemic fibrillation due to beta-blockers would be essentially attributable to their action on the sinus nodes.

Action Potentials

[Hemodynamic changes induced by apnea test in patients with brain death].

OBJECTIVE: In France, an apnoea test is compulsory to confirm brain death. This test results in a major hypercarbia and respiratory acidosis. This study aimed to assess haemodynamic changes elicited by the apnoea test. STUDY DESIGN: Prospective clinical study. PATIENTS: Fifteen patients with brain death METHODS: Before the apnoea test, the lungs were ventilated with pure oxygen for 20 minutes. Thereafter, the test was conducted with continuous oxygen flow through the endotracheal tube, and SpO2 monitoring. Blood gases and haemodynamic parameters, including systemic arterial pressure, pulmonary artery pressure, pulmonary artery occlusion pressure, cardiac index and right ventricular function parameters were assessed before, during and 20 minutes after the apnoea test. Mean values at the various times were compared. RESULTS: Hypercarbia and acidosis induced a major pulmonary hypertension and an increase in cardiac output, associated with a decrease in systemic vascular resistances. Despite pulmonary hypertension and acidosis, right ventricular function was maintained. All haemodynamic modifications were reversed by reventilation. CONCLUSION: Apnoea test induces a reversible pulmonary hypertension that is seemingly not deleterious for right ventricular function. Apnoea test probably does not alter viability of the donor's organs.

Acidosis, Respiratory

[Does flumazenil correct disorders of intracardiac conduction induced by accidental intravenous injection of bupivacaine?].

The authors report the case of a patient who experienced intracardiac conduction disturbances from accidental intravenous injection of bupivacaine, which were reversed by an intravenous injection of flumazenil. Flumazenil could act either in displacing bupivacaine from its binding site, or by an interaction involving the GABAergic system, unless a specific interaction between flumazenil and bupivacaine does exist. In case of experimental confirmation of this feature, flumazenil could be proposed as a new therapeutic tool for bupivacaine-induced cardiotoxicity.

Anesthetics, Local

[Value of calcium channel blockers in the prevention of ventricular fibrillation of ischemic etiology: experimental arguments].

The prevention of ventricular fibrillation raises a special problem when related to myocardial ischaemia, since class I antiarrhythmic drugs are then ineffective and may even behave as profibrillatory agents: the usual antifibrillatory properties of these drugs which are inhibitors of sodium channel, activated at high potentials, disappear with the disappearance of the role of sodium channel caused by ischaemic depolarization. Calcium channel then replacing sodium channel, calcium channel inhibitors should tend to prevent ischaemic ventricular fibrillation. Therefore, vulnerability to ventricular fibrillation was assessed in open-chest pigs by the threshold for fibrillation electrically induced with impulses of 100 ms duration at the rate of 180 beats/min. Ischaemia was produced by total occlusion of the left anterior descending coronary artery near its origin. Electrical fibrillation threshold was measured at the end of ischaemic period of increasing duration (30, 60, 120, 180, 240, 360 s) under control conditions and after i.v. administration of verapamil (50 micrograms/kg loading dose and 2 micrograms/kg/min infusion). Unaffected by verapamil when coronary circulation was normal, fibrillation threshold was raised by the drug when lowered by ischaemia, increasingly with the prolongation of ischaemia responsible for depolarization of the fibres, up to 500%. The rise of fibrillation threshold resulted in a delay in the triggering of fibrillation which occurs when the fibrillation threshold (6-8 mA) falls down to the pacing threshold (0.3-0.4 mA). These experiments tend to confirm the positive results recently obtained in man with verapamil in the prevention of postinfarction sudden death, provided that myocardial contractility is not too much adversely affected. But, in these experiments, left ventricular dP/dt max was not reduced by more than 15%, even just after the loading dose and returned to its control values within a few minutes.

Animals

Possible prevention by amlodipine of ventricular fibrillation related to brief ischemia episodes.

Calcium antagonists may reduce propensity to ventricular fibrillation, by altering the balance between coronary blood flow and metabolic demand, and thus may substantially prolong time to occurrence of fibrillations. This delay in the onset of fibrillation should be sufficient to prevent sudden death in the case of transitory episodes of myocardial ischemia. Therefore, this study was based on the determination of time to onset of fibrillation in an animal model of transitory ischemia. This model was achieved by the complete, but transitory occlusion of the left anterior descending coronary artery near its origin under ventricular pacing at a constant high rate (180 beats/min), in anesthetized, open-chest pigs. Amlodipine was preferred to another calcium antagonist for this study because it is among the least negatively inotropic of these drugs. It was intravenously infused at 0.02 mg.kg-1.min-1. Time to fibrillation was prolonged from 87 +/- 10 to 146 +/- 16 s (p < 0.05) with the 0.30 mg/kg dose and to 201 +/- 22 s (p < 0.05) with the 0.60 mg/kg dose, without serious impairment of blood pressure or left ventricular dP/dtmax in the absence of ischemia. Concurrently, amlodipine significantly limited the shortening of monophasic action potential duration (200 +/- 4 vs. 172 +/- 6 ms), the lengthening of conduction time (43 +/- 2 vs. 53 +/- 2 ms), and the alterations of ST segments and T waves induced by 60 s ischemic depolarization. Consequently, amlodipine might reduce the incidence of sudden death by lengthening time to onset of fibrillation beyond the duration of the ischemia, when transitory.

Amlodipine

Bupivacaine hastens the ischemia-induced decrease of the electrical ventricular fibrillation threshold.

Myocardial ischemia sensitizes the cardiotoxic effects of bupivacaine, especially the propensity to ventricular fibrillation. To investigate this sensitization and to elucidate its mechanism, the influence of bupivacaine alone, or associated with ischemia, was studied on electrical fibrillation threshold in anesthetized, open chest pigs. Determination of fibrillation threshold was performed with impulses of 100 ms duration at the rate of 180 bpm, in the absence of ischemia and at the end of increasing periods of ischemia (30, 60, 120, 180 s) obtained by complete occlusion of the left anterior descending coronary artery close to its origin. The effect of bupivacaine (1.00 mg/kg initial dose plus 0.04 mg.kg-1.min-1 over 25 min) was compared to the control in the same animals. This effect corresponded to 1.4-1.8 micrograms/mL plasma concentrations likely to be observed in humans after regional anesthesia. Bupivacaine significantly increased the fibrillation threshold before coronary occlusion from approximately 7.0 to 9.5 mA. In contrast, during ischemia the fibrillation threshold was shifted to the left and down, with a hastening of spontaneous fibrillation. Recording of monophasic action potentials in the ischemic area revealed that conduction time was prolonged by more than 100% under the combined influence of ischemia and bupivacaine, whereas the major enhancement of excitability due to ischemia was not attenuated by bupivacine. Therefore, bupivacaine should be used with caution in the condition of ischemia, especially if heart rate is rapid. In the present experiments, tachycardia is another factor in the enhancement of bupivacaine effects on conduction.

Action Potentials