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Biomedical subjects

M Babinski

Publications and source records attributed to M Babinski.

17 recordsLinked to original sources

Continuous flow apneic ventilation.

A study was designed to evaluate the adequacy of gas exchange during continuous flow apneic ventilation (CFAV) in dogs. Seventeen dogs (average weight 22.9 kg) were divided into three experimental groups. Group I (n = 7) was anesthetized, paralyzed and ventilated with air using intermittent positive pressure ventilation (IPPV) through a tracheal tube. The tube was removed and each main stem bronchus was cannulated with a 2.5 mm i.d., 4 mm o.d. polyethylene catheter using a fiberoptic bronchoscope. The tracheal tube was replaced to hold the catheters in place. Heated, humidified air was continuously delivered equally to each catheter. Total flows ranged from 8 to 28 l/min (0.4-1.4 l X kg-1 X min-1). Airway pressure (Paw) in the trachea did not exceed 2 mmHg (0.27 kPa). Adequate gas exchange in terms of arterial oxygen and arterial carbon dioxide tension (Pao2 and Paco2) was found after 30 min at flows greater than 16 l X min-1. Group II (n = 7) was managed similarly to the first group, insufflating endobronchial air using the optimal flow of 1.0 l X kg-1 X min-1 obtained from Group I. CFAV continued for 5 h in all animals. Blood gas samples and measurements of systemic blood pressure, heart rate (HR), pulmonary artery blood pressure, pulmonary artery wedge pressure, cardiac output (Qt), and temperature were taken every 30 min. Group III (n = 3) was anesthetized similarly to the other groups. Pulmonary gas distribution was evaluated in relation to catheter placement using Xe133. Results showed significant differences between Pao2 values during CFAV and IPPV; however, all animals were adequately oxygenated.(ABSTRACT TRUNCATED AT 250 WORDS)

Airway Resistance↗

Long-term transtracheal high frequency ventilation in dogs.

Long-term effects of high frequency percutaneous transtracheal ventilation (HFTV) have not been studied. The purpose of this study is to evaluate the cardiopulmonary effects of 24 h transtracheal ventilation in dogs at a respiratory rate of 100/min. Four dogs were anesthetized with intermittent pentobarbital and paralyzed with pancuronium. Ventilation in the supine position was through a 14-gauge Angiocath introduced into the trachea through the cricothyroid membrane. A respiratory rate of 100/min was used at an FIO2 of 0.4 using a fluidic logic controlled ventilator. The inspiratory-expiratory ratio was 1:2 and tidal volume 70 ml. The driving pressure of the air-oxygen mixture was 50 psi. After 24 h, residual muscle relaxant was reversed and the animal allowed to recover. There was no significant change in the following parameters over 24 h compared to starting values: PaO2, PaCO2, pH, aortic, central venous, pulmonary artery and pulmonary artery wedge pressures, heart rate, cardiac index (CI), stroke index (SI), left ventricular stroke work (LVSW), systemic vascular resistance (SVR), pulmonary vascular resistance (PVR), C(a-V)O2, oxygen consumption (VO2), pulmonary shunt (Qs/Qt). A PEEP effect of 2.9 - 5.0 torr was maintained. All dogs recovered uneventfully. Three days after the experiment, blood gases of 2 dogs were normal. One dog was killed after 3 days; macroscopic and microscopic examinations of the upper and lower airway and pulmonary parenchyma were normal. Dogs can be ventilated for as long as 24 h using HFTV transtracheally at rates of 100/min without adverse cardiopulmonary effects.

Animals↗

Limits of high frequency percutaneous transtracheal jet ventilation using a fluidic logic controlled ventilator.

A study was undertaken on dogs to find the limit of carbon dioxide exchange with high frequency jet ventilation using a fluidic logic controlled oxygen jet ventilator. Fifteen dogs were ventilated through a transtracheal catheter at respiratory rates up to 600 per minute. The following were recorded: aortic, pulmonary artery, pulmonary arterial wedge, and central venous blood pressures; intratracheal pressure, electrocardiogram; inspiratory and expiratory time of the jet; arterial and central venous blood gases; intermittent cardiac output. Normal gas exchange was found up to a respiratory rate of 400 per minute with low tidal volume and low intratracheal pressures. There were no adverse circulatory effects up to a rate of 400 per minute. At rates of 500 and 600 per minute, cardiac contractility was unaffected, but a decreased heart rate and increased peripheral resistance produced a fall in cardiac output. There was no interference with the resumption of spontaneous ventilation during weaning. In a control series of five dogs, apnoeic oxygenation was used. The PaCO2 was allowed to reach 15.96 kPa (120 torr). High frequency jet ventilation was then started at a rate of 600 per minute and decreased in increments to 100 per minute. Arterial blood gases were continuously recorded through an intra-arterial catheter connected to a mass spectrometer. The PaCO2 gradually declined to normal levels as the rate decreased.

Animals↗

The effect of lidocaine on succinylcholine-induced rise in intraocular pressure.

The effect of lidocaine on the increase of intraocular pressure induced by succinylcholine was studied in patients 6 to 85 years of age. Three groups of patients were studied. One group of eight patients received lidocaine 1 mg.kg-1 before succinylcholine and a control group of ten patients did not have lidocaine. Anaesthesia was induced with thiopentone 5 mg.kg-1 and maintained with nitrous oxide 50 per cent with oxygen and halothane 1.0-1.5 per cent. The tracheae of all patients were intubated. Lidocaine in doses of 1.0 to 2.0 mg.kg-1 did not prevent transient rise in intraocular pressure following administration of succinylcholine and tracheal intubation.

Adolescent↗

Hypotension and bradycardia following intraocular acetylcholine injection. Report of a case.

A possible systemic reaction to acetylcholine chloride injected into the anterior chamber of the eye occurred in a 65-year-old patient who had a cataract extraction while under general anesthesia. Following cataract extraction, 20 mg of acetylcholine chloride was injected into the anterior chamber of the eye. Immediately following injection, hypotension and bradycardia (48 beats per minute) occurred.

Acetylcholine↗

Percutaneous transtracheal ventilation.

The technique of percutaneous transtracheal ventilation (intermittent jets of oxygen under high pressure, 50 pounds per square inch [psi]) has been used for resuscitation during anesthesia and prior to tracheostomy, and has been established as an important adjunct to life-support techniques. The technical aspects are described together with experimental evidence that intermittent jet ventilation is necessary to eliminate carbon dioxide. The complications occurring with a series of 80 patients are reported along with experimental work in ventilation of dogs with compressed air sources, including truck tires. Emergency physicians should be familiar with this technique and equipment for its use should be readily available in the emergency department. The potential role of transtracheal ventilation in the mobile intensive care unit at accident sites has been explored and appears promising. Conventional airway support techniques should be applied prior to resorting to transtracheal ventilation.

Adolescent↗

Anesthetic management of posterior fossa surgery in the sitting position.

From the surgical aspect, the sitting position gives good surgical access to the operative site, improves venous drainage, gives a better view of facial area for monitoring evoked responses from cranial nerve stimulation and allows for better ventilation. Conversely, the sitting position can present complications such as air emboli, postural hypotension and serious cardiac arrhythmias due to surgical stimulation of cranial nerves and brainstem. This paper presents our clinical experience in 180 neurosurgical procedures on the posterior fossa in the sitting position. The standardized anesthetic technique consisted of narcotic, muscle relaxant, nitrous oxide and controlled ventilation. All patients were monitored with ECG, direct arterial and venous pressure, discontinuous blood gases, and expiratory CO2 and urinary output. Air embolism was detected via Doppler ultrasonic detector and evacuated through a right atrial catheter. Air was detected, visualized and aspirated in 45 cases for an incidence of 25%, with most episodes occurring early in the procedure. In 11 cases (6%) air was detected on closure. There were no deaths in this series. Fifty-eight patients (32%) had a 10-20 mmHg drop in blood pressure on reaching the sitting position, 19 became temporarily hypertensive (10.5%), and the remainder were normotensive. In 46 patients (25%), bradycardia developed during retraction-manipulation-stimulation of structures on or adjacent to brainstem as well as to cranial nerves. Surgical stress also accounted for the 13 patients (7%) having frequent premature ventricular extrasystoles. One case of profound hypotension and another case of virtual cardiac standstill were noted during the use of the bipolar electrocautery at or near the fifth nerve exit from brainstem. Additional hemodynamic data, the physiopathology, diagnosis and treatment of air embolism is discussed.

Adolescent↗