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Biomedical subjects

Y Nako

Publications and source records attributed to Y Nako.

5 recordsLinked to original sources

Ultrasonographic assessment of intragastric volume in neonates: factors affecting the relationship between intragastric volume and antral cross-sectional area.

Measuring antral cross-sectional area by ultrasonography can be an ideal way to evaluate intragastric milk volume in infants. Technical details, however, remain to be established before its clinical application. We investigated the effects of posture and ultrasonographic plane on the correlation between milk volume and antral cross-sectional area. After gastric aspiration through a nasogastric tube, healthy newborns were fed 0, 10, 20, and 40 ml of milk cumulatively, and antral cross-sectional area was measured in either upright, sitting, or right lateral position. To determine the best sonographic plane, subjects were put in the right lateral position and antral cross-sectional area was measured in the plane of the aorta and either the superior mesenteric artery, the superior mesenteric vein, the midline of the abdominal surface, 1 cm right of midline, or 2 cm right of midline. The results showed that antral cross-sectional area reflects intragastric milk volume most accurately, with minimal gas interference when measured in the right lateral position. The area correlates well with milk volume in the plane of the aorta and either the superior mesenteric artery, the superior mesenteric vein, or the midline. Next, we studied the effect of intragastric gas on the antral cross-sectional area in subjects who were given 40 ml of milk followed by an injection of air. More than 20 ml of intragastric gas increases antral cross-sectional area significantly. Ultrasonographic evaluation of intragastric volume requires attention to the above factors.

Abdomen

Electrogastrography in neonates.

We recorded the electrical signals from bipolar electrodes placed on the abdomen of 7 adults and 10 newborn infants. Data were analyzed by visual inspection and by a wave analysis computer program with a fast Fourier transform. Waves of 3 cycles/min were recorded in adults, and similar 3 cycles/min waves were recorded in infants as well. The percentage of time of 3 cycles/min waves was lower in neonates (13.8% +/- 10.8%) than in adults (57.9% +/- 27.8%) (p < 0.01). Only an electrocardiogram superimposing the flat baseline was recorded in the remaining recording time. Spectral analysis confirmed the validity of the visual analysis, showing clear peaks at 0.05 Hz only when 3 cycles/min waves were visually present and motion artifact was absent. The electrode positions where percentage of time of 3 cycles/min waves was greatest were different for newborns and adults. There was no significant difference in the mean amplitude of the waves between groups. These facts indicate that the electrogastrogram of neonates is different from that of adults in terms of best electrode positions and percentage of time of 3 cycles/min waves.

Adult