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T A Merritt

Publications and source records attributed to T A Merritt.

128 records · Page 8Linked to original sources

Cytologic evaluation of pulmonary effluent in neonates with respiratory distress syndrome and bronchopulmonary dysplasia.

Tracheobronchial effluent from 108 infants with respiratory distress syndrome (RDS) was classified cytologically in relationship to the duration of endotracheal intubation and mechanical ventilation with supplemental oxygen. Three cytologic classes emerged: class I (1 to 4 days), associated with exfoliation of cohesive and organized sheets of tracheobronchial cells, class II (4 to 10 days), during which regeneration of tracheobronchial cells was prominent and reactive cells were present, and class III (after 10 days), during which squamous metaplasia, chronic inflammation and regeneration were characteristic. An influx of polymorphonuclear neutrophilic leukocytes and macrophages was typical of classes II and III. In 70% of the cases, the identification of class III changes enabled the diagnosis of bronchopulmonary dysplasia (BPD) to be made earlier than by radiography alone. This classification of tracheobronchial cytology should be of benefit in the identification and treatment of infants with bronchopulmonary dysplasia. It may also offer a more direct means for evaluating new therapy to prevent or modify this disorder.

Bronchopulmonary Dysplasia↗

Effects on cerebral blood flow velocities of slow and rapid infusion of indomethacin.

In a randomized study, indomethacin was administered either by an intravenous rapid infusion or by a 30-minute intravenous infusion to preterm infants. Ten infants were randomly assigned to the rapid infusion group and nine to the other group. Time-averaged mean systolic, mean flow velocity, and mean diastolic blood flow velocities were measured in the internal carotid artery with a pulsed Doppler. Blood flow velocities, arterial blood gases, intraarterial blood pressures, and transcutaneous PO2 and PCO2 were measured at 5 and 1 minutes before indomethacin and then at 5, 10, 20, 30, 35, 40, 50, 60, and 90 minutes after indomethacin administration. Intravenous indomethacin either by rapid or slow infusion caused a significant decrease in the blood flow velocities. The blood flow velocities were significantly lower 5 minutes after rapid infusion and by 30 minutes in the slow-infusion group. In both groups, the blood flow velocities remained depressed up to 90 minutes. The blood pressures increased concomitantly to the blood flow velocities in the rapid-administration group only. Because indomethacin given for 30 minutes does not avoid the decrease in the blood flow velocities, further studies are necessary to ascertain the safest method of administration.

Blood Flow Velocity↗