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Biomedical subjects

J M Milstein

Publications and source records attributed to J M Milstein.

7 recordsLinked to original sources

The effect of age on the latency of radiation myelopathy.

The latent period to forelimb paresis following photon irradiation of the cervical spinal cord was evaluated in Sprague-Dawley rats ranging in age from 9 days to adulthood. The radiation was administered dorsally in single fractions, and in 15-day-old animals, to different lengths of the rostral cord and in doses ranging from 16 to 38 Gy. The duration of the latent period was found to be directly proportional to the age of the animal at the time of irradiation, and independent of radiation dose or the volume of the cervical cord which was irradiated. In the majority of paretic animals, the irradiated segment of the spinal cord demonstrated white matter necrosis. The results indicate that in the developing rat, the manifestations of radiation myelopathy are delayed by an interval determined in part by the age of the animal at the time of irradiation.

Age Factors

Increased systemic vascular resistance in neonates with pulmonary hypertension.

The time necessary for aortic diastolic pressure to decrease to 50 percent of an initially selected value after dissipation of the dicrotic notch (T 1/2) was determined in newborn infants with and without pulmonary hypertension. The mean T 1/2 was 671 +/- 167 msec in seven infants with clinical evidence of pulmonary hypertension and documented right to left ductus arteriosus shunting; 849 +/- 243 msec in nine infants with clinical evidence of pulmonary hypertension but no documented right to left ductus arteriosus shunting; and 457 +/- 66 msec in eight infants with hyaline membrane disease and no clinical evidence of pulmonary hypertension or a patent ductus arteriosus. The mean T 1/2 values in the former two groups were significantly different from that in the group with no pulmonary hypertension (P less than 0.01). An evaluation of factors affecting T 1/2 leads to the conclusion that the patients with pulmonary hypertension had increased systemic vascular resistance as well. This finding has important diagnostic, etiologic and therapeutic implications.

Ductus Arteriosus

Assessment of patent ductus arteriosus shunting using diastolic pressure analysis.

Ductal shunting significantly affected the time necessary for aortic diastolic pressure to fall to one-half an initially selected value (t1/2). Fourteen premature infants with clinical evidence of left-to-right ductal shunting had a mean t1/2 of 277 msec (range 133 to 383 msec) compared with a mean t1/2 of 455 msec (range 332 to 567 msec) in 14 neonates with no clinical evidence of ductal shunting (P less than 0.01). Seven older infants with ductal shunting confirmed at cardiac catheterization had a mean t1/2 of 360 msec (range 240 to 392 msec). Infant catheterization data and animal studies are suggestive of an inverse relationship between the magnitude of shunt and the t1/2. The t1/2 determined by diastolic pressure analysis is a useful method for serial evaluation of ductus arteriosus shunting.

Child, Preschool

Pulmonary vasodilator action of tolazoline.

The pulmonary vasodilator action of tolazoline in newborn lambs was shown to be mediated via histamine receptors. Maximal changes in pulmonary vascular resistance, deltaPVR, were calculated as percents of the base line value, %deltaPVR. The mean %deltaPVR after tolazoline, 1 mg/kg, was -25 +/- 4% for eight lambs. Four lambs then received the histamine H1 receptor antagonist, diphenhydramine, and the mean %deltaPVR due to tolazoline was -12 +/- 4%. Four lambs received the H2 receptor antagonist, metiamide, and the mean %delta PVR due to tolazoline was -18 +/- 5%. After both H1 and H2 antagonists, the mean %deltaPVR due to tolazoline was +6 +/- 8%. Therefore, both histamine H1 and H2 receptors were involved in the vasodilator response to tolazoline.

Animals

Computerized axial tomography of the brain in neonates and young infants.

Twenty critically ill infants with abnormal head growth and/or seizures underwent CAT of the brain. Signs of birth asphyxia or respiratory distress were present in all. Six out of ten infants with abnormal size of the head had abnormal CAT scans. Nine out of ten infants with seizures had abnormal scans. Abnormalities included hydrocephalus, intraventricular hemorrhage, cerebral edema, subarachnoid hemorrhage and porencephaly. Six infants required neurosurgical procedures. Development at two to 15 months of age in the 19 surviving infants was normal in nine, suspect in eight, and severely delayed in two patients. Until the prognosis of the various CNS disorders discussed is clearly defined, aggressive management appears indicated.

Asphyxia Neonatorum