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Biomedical subjects

I M Ledingham

Publications and source records attributed to I M Ledingham.

At least 145 records · Page 8Linked to original sources

The effect of hypercapnia on myocardial blood flow and metabolism.

1. In closed-chest dogs anaesthetized with trichlorethylene, the inhalation of carbon dioxide sufficient to increase the arterial P(CO2) from 40 to about 100 mm Hg, increased myocardial blood flow (measured using a (133)Xe clearance technique) and right atrial pressure. There were no consistent changes in mean arterial blood pressure, heart rate or cardiac output.2. The effect of hypercapnia on myocardial blood flow was not influenced by the previous administration of atropine and propranolol or of bretylium. It can be concluded, therefore, that the elevated arterial P(CO2) has a direct vasodilator effect on the myocardial microcirculation.3. During hypercapnia the coronary sinus P(O2) was increased and the coronary arteriovenous oxygen content difference, and calculated myocardial oxygen consumption, reduced. It is suggested that this latter effect may be the result of myocardial depression produced by the decrease in arterial blood pH.4. There was no evidence of myocardial glucose uptake either before or during hypercapnia. The myocardial extraction of lactate and pyruvate at rest varied between 0 and 55%. During acute hypercapnia the extraction of lactate usually fell.5. When the arterial P(CO2) was maintained at 100 mm Hg for a period of 1 hr the effects on myocardial blood flow and on oxygen consumption were not sustained.6. Stepwise increments and decrements in arterial P(CO2) of 10-20 mm Hg produced corresponding increases and decreases in myocardial blood flow and demonstrated that changes in arterial P(CO2) of 20-30 mm Hg can markedly affect blood flow in the myocardium.

Animals↗

Effects of hyperbaric oxygen on intracranial pressure and cerebral blood flow in experimental cerebral oedema.

Increased intracranial pressure was induced in anaesthetized dogs by application of liquid nitrogen to the dura mater. Intracranial pressure and cerebral blood flow were measured, together with arterial blood pressure and arterial and cerebral venous blood gases.Carbon dioxide was administered intermittently to test the responsiveness of the cerebral circulation, and hyperbaric oxygen was delivered at intervals in a walk-in hyperbaric chamber, pressurized to two atmospheres absolute.Hyperbaric oxygen caused a 30% reduction of intracranial pressure and a 19% reduction of cerebral blood flow in the absence of changes in arterial PCO(2) or blood pressure, but only as long as administration of carbon dioxide caused an increase in both intracranial pressure and cerebral blood flow. When carbon dioxide failed to influence intracranial pressure or cerebral blood flow then hyperbaric oxygen had no effect. This unresponsive state was reached at high levels of intracranial pressure.

Animals↗

Hazards in hyperbaric medicine.

During the period April 1965 to April 1968 observations were made on 285 patients and 357 staff exposed to air and oxygen at pressures of 1 to 3 atmospheres absolute in a hyperbaric unit. Decompression sickness was not noted and an annual radiological skeletal survey failed to show aseptic bone necrosis; the incidence of otitic barotrauma was 4.7%. Oxygen toxicity was not observed in any patient. It is suggested that pressures in this range are relatively safe in a specialized medical hyperbaric environment.

Adolescent↗

Fatal brain damage associated with cardiomyopathy of pregnancy, with notes on Caesarean section in a hyperbaric chamber.

Three weeks after admission to a maternity hospital for observation following minor antepartum haemorrhage, a primiparous patient aged 22 suffered a sudden left hemiplegia and became comatose. Congestive cardiac failure ensued and because of the subsequent severe hypoxaemia she was transferred to the hyperbaric oxygen unit at the Western Infirmary, Glasgow, where it was found possible to improve her condition by means of oxygen at increased pressure. A caesarean section was w successfully performed in the hyperbaric chamber, and a normal live female infant was delivered. Though the patient's general condition improved she never regained consciousness and died almost three months later. Necropsy confirmed the clinical diagnosis of cardiomyopathy of pregnancy with severe ischaemic changes in the brain.

Adult↗