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Biomedical subjects

D Hart

Publications and source records attributed to D Hart.

11 recordsLinked to original sources

Newborn minor physical anomalies and prediction of infant behavior.

The relationship between a newborn score of minor physical anomalies (MPAs) and behavior at ages 1 and 2 was examined. From an initial screening population of 933, 63 high anomaly and 78 low anomaly infants were followed until age 2 by examiners blind for the newborn anomaly score. High anomaly infants were more likely to be temperamentally difficult as rated by parent interview and direct observation. A subgroup of six infants who were considered irritable at both ages 1 and 2 were all from the high anomaly group. However, there was little agreement between behavioral ratings across situations and over time, and there were no significant predictors of behavior problems at age 2 based on any newborn or 1-year measure. These results indicate that the newborn anomaly score by itself is unlikely to prove clinically useful in predicting preschool behavior problems for an unselected population. The usefulness of this measure for other, "high-risk," populations remains to be explored.

Child Behavior

Electrophoretic mobilities of RNA tumor viruses. Studies by Doppler-shifted light scattering spectroscopy.

We have used laser beat frequency light scattering spectroscopy to measure, at several pH values, the electrophoretic mobilities of purified avian myeloblastosis (AMV), murine leukemia (MuLV), murine mammary tumor (MuMTV), and feline leukemia (FeLV) viruses. The mobilities of these viruses are similar at pH greater than or equal to7 (-2.7 to -3.2 X 10(-4) (cm/sec)/(V/cm). The isoelectric points of MuLV and AMV are apparently less than pH 3, whereas for FeLV the data could be interpreted to indicate an isoelectric point between 3 and 5. Using a Debye-Hückel model to describe the interaction between electrolytes and virus, we show that our values for the mobility of MuMTV, obtained in ionic strength 0.005, are consistent with the values of Sarkar et al. ((1973), Cancer Res. 33, 2283), obtained in ionic strength of 0.10. This model is then used to calculate surface charge densities. In terms of the density of charged groups, the RNA tumor virus envelope is not very different from the erythrocyte membrane.

Avian Leukosis Virus