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Biomedical subjects

R C Bent

Publications and source records attributed to R C Bent.

4 recordsLinked to original sources

Surfactant therapy and high-frequency jet ventilation in the management of a piglet model of the meconium aspiration syndrome.

In vitro data have shown a concentration-dependent inhibition of surfactant by meconium, while anecdotal reports demonstrate improved oxygenation after surfactant replacement in babies with meconium aspiration syndrome, particularly in conjunction with high-frequency jet ventilation. We randomized 70 newborn piglets to either conventional or high-frequency jet ventilation, followed by insufflation of 3 mL/kg of a 33% meconium solution. Each group was further randomized to one of five surfactant therapies: 1) control, 2) 4 mL/kg Survanta, 3) 8 mL/kg Survanta, 4) 5 mL/kg Exosurf, or 5) 10 mL/kg Exosurf. We followed arterial blood gases and ventilator requirements over 6 h of ventilation. Aspirates of airway fluids were obtained for surface tension measurements, as well as total protein and phospholipid concentrations. Using a previously established scoring system, a pathologist blinded to treatment evaluated four sections of lung per animal for histologic changes of meconium aspiration syndrome. There were no differences noted between groups in any physiologic parameter measured (mean airway pressure, arterial partial pressure of oxygen/alveolar partial pressure of oxygen ratio, etc.) during the 6 h of ventilation. Airway fluid aspirate total protein concentrations increased significantly after meconium instillation (4- to 5-fold, p < 0.007) and remained elevated in spite of surfactant therapy. There was an initial decline in airway phospholipid concentrations after meconium instillation followed by a rise to levels equal to or greater than premeconium levels. Surface tension measurements increased in all groups after meconium insufflation (p < 0.012) and did not decline thereafter, despite standard and twice-standard surfactant doses of both types.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Meconium staining and the meconium aspiration syndrome. Unresolved issues.

Meconium staining of the amniotic fluid and the meconium aspiration syndrome will likely remain common occurrences faced by health care providers. Unfortunately, our understanding of these entities is incomplete. There are a number of issues which need to be adequately evaluated regarding the pathophysiology of MAS, the delivery room management of the meconium-stained infant, and the neonatal intensive care unit management of MAS. Currently, there is much dogma in various hospitals throughout this country regarding these issues, dogma which has yet to be substantiated by quality scientific investigations.

Humans↗

Removing meconium from infant tracheae. What works best?

OBJECTIVE: At least nine mechanical devices are available for suctioning the tracheae of meconium-stained newborns. To our knowledge, the efficacy of these devices, as well as various suction pressures and patterns, has not been previously compared. We performed this investigation to assess these variables. DESIGN: Fourteen suction techniques (combinations of device, suction pressure, and suction intermittency) were evaluated sequentially in the trachea of each of 14 in vitro newborn piglets (1 to 4 days old); the order was randomized using a Latin square design. We chose three devices to compare: a meconium aspirator (Neotech Products Inc, Chatsworth, Calif), a hand pump (Res-Q-Vac, Repromed Systems Inc, New York, NY), and a 10F suction catheter (Superior Healthcare Group Inc, Cumberland, RI). Both the meconium aspirator and the hand pump were used with a 3.0-mm endotracheal tube. INTERVENTION: We instilled 0.8 mL of a homogeneous mixture of human meconium and saline (44 g of meconium per 100 mL of saline) in the trachea before applying each suction technique. The meconium aspirator and the suction catheter were each evaluated at three different vacuum pressures, -40, -80, and -150 mm Hg, using both continuous and interrupted suction. The hand pump was evaluated with one and two activations (one activation generates -100 cm H2O, according to the manufacturer). MEASUREMENTS AND RESULTS: The percentage of instilled meconium recovered was consistently greatest (P less than .001) with the meconium aspirator (mean, 88.9% at -150 mm Hg, 84.9% at -80 mm Hg, and 73.5% at -40 mm Hg), intermediate with the catheter (mean, 81.0% at -150 mm Hg, 73.2% at -80 mm Hg, and 67.5% at -40 mm Hg), and least for the hand pump (mean, 67.9% with one activation and 72.6% with two activations). Recovery was better with continuous suction (P = .02) and increasing pressure (P less than .001). CONCLUSIONS: Among the techniques compared, the meconium aspirator at -150 mm Hg, using continuous suction, performed best in this model. It is unknown, however, to what extent the tracheal mucosa may be affected by this degree of negative pressure.

Animals↗

Malignant hyperthermia in infancy.

We have described two infants, aged 2 months and 5 months, who had malignant hyperthermia, an entity not generally believed to occur during infancy. Both children were under general anesthesia when MH occurred, and both responded well to administration of dantrolene and sodium bicarbonate.

Colonic Diseases↗