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Biomedical subjects

S Barron

Publications and source records attributed to S Barron.

At least 19 recordsLinked to original sources

Neonatal alcohol exposure alters suckling behavior in neonatal rat pups.

Prenatal alcohol exposure has been associated with a variety of suckling deficits in both humans and animals. In this study, the effect of neonatal alcohol exposure on suckling performance was examined in 15-day-old rat pups. Neonatal alcohol exposure has been used as a model to study the effects of alcohol exposure during a period equivalent to the human third trimester with respect to brain growth. Subjects were Long-Evans rats which had been artificially reared (AR) and fed through gastrostomy tubes from postnatal day (PN) 4-PN 12. The AR groups included two groups given ethanol doses of 6 g/kg/day or 4 g/kg/day and an isocaloric maltose-dextrin control group. A suckled control group raised by their natural mothers was also included to control for artificial rearing. Fifteen-day-old pups were individually placed with an anesthetized dam for a 1-h videotaped test session. Pups in the 6 g/kg alcohol group took longer to attach to the nipple and spent less time suckling than pups from all other treatment groups. Nipple-shifting behavior was disrupted in all artificially reared groups, but it was most severely affected in the 6 g/kg group. These findings suggest that neonatal alcohol exposure interferes with suckling performance and these altered behaviors may contribute to the postnatal growth deficits that have been reported following alcohol exposure in utero.

Animals

Effects of peanut butter on ruminating.

Barton and Barton (1985) reported that supplementary peanut butter reduced rates of ruminating of 4 children with mental retardation and hypothesized that the effect was due to its thick, sticky consistency. We further examined the effects of peanut butter with 5 subjects with mental retardation by independently manipulating the caloric density versus the consistency associated with peanut butter. Results showed an inverse relation between rates of ruminating and amount of peanut butter consumed. However, this effect appeared to be primarily due to an increase in calories. A weaker and less consistent effect was ascribed to the consistency of peanut butter.

Adult

Effects of cimetidine and ranitidine on basal gastric pH, free and total acid content in pigs.

The effects of intramuscular administration of multiple doses of cimetidine and ranitidine on basal gastric pH, free and total acid content from young adult pigs were studied. Cimetidine (4.5 mg kg-1, four times a day, intramuscularly, for three days) significantly (P less than 0.05) raised the basal gastric pH above 3.5 with a simultaneous reduction in free acid content at two, three and 26 hours after the administration of the eighth dose. Ranitidine (0.75 mg kg-1, four times a day, intramuscularly, for three days) significantly (P less than 0.05) raised the basal gastric pH above 3.5 with a concomitant reduction in free acid content at three and 38 hours after the administration of the eight dose. Neither cimetidine nor ranitidine had any significant effects on total acid content. These results confirm that the pig is a basal acid secretor and that the pharmacodynamics and pharmacokinetics of cimetidine and ranitidine in pigs might be different from those in humans.

Animals

The effects of long-term lead intoxication on the nervous system of the chicken.

In order to study the possible etiologic role of lead in human motor neuron disease we produced chronic lead intoxication in the chicken by daily administration of lead acetate. Control animals received sodium acetate. During life, periodic measurements were made of motor function, motor nerve conduction velocity and response amplitude. After sacrifice, histologic analysis was performed on spinal cord, peripheral nerve and muscle. A syndrome was produced characterized by a fall in motor response amplitude, spinal motor neuron degeneration, motor axonal loss and atrophy of muscle, similar to that seen in human motor neuron diseases.

Animals

Effects of prenatal alcohol exposure on the sexually dimorphic nucleus of the preoptic area of the hypothalamus in male and female rats.

Prenatal alcohol exposure can produce a variety of behavioral and physiological alterations, including changes in sexually dimorphic behaviors. It has been proposed that alcohol alters these behaviors by altering prenatal androgen and/or other steroid levels. This study was designed to examine the effects of prenatal alcohol exposure on a sexually dimorphic neuroanatomical structure, namely, the sexually dimorphic nucleus of the preoptic area of the hypothalamus (SDN-POA). This nucleus is larger in males than females and is sensitive to perinatal sex steroid exposure. The SDN-POA was examined in 70-80-day-old male and female rats whose mothers received on days 6-20 of pregnancy either a liquid diet containing 35% ethanol-derived calories (EDC) or a 0% EDC isocaloric pair-fed liquid diet. An ad libitum lab chow control group was also included (LC). Both volume and average cell size of the SDN-POA were markedly smaller in alcohol-exposed males relative to 0% EDC and LC controls. In contrast, prenatal alcohol exposure did not appear to affect SDN-POA volume or cell size in females. Prenatal alcohol exposure did not significantly alter the volume of a nearby nucleus, the nucleus of the anterior commissure, in either sex. These findings support the hypothesis that prenatal alcohol exposure alters sexual differentiation in males, perhaps by altering some aspect of the prenatal androgen environment. The absence of any effect in 35% EDC females suggests that males and females may be differentially sensitive to alcohol's effects on this nucleus.

Animals

Prenatal alcohol exposure: recent work on behavioral dysfunctions in pre-weanling rats.

This article reviews recent data collected in our laboratory examining the behavioral effects of prenatal alcohol exposure in pre-weanling rats. The behavioral alterations which are discussed include suckling dysfunctions, overactivity, and early learning deficits. Similar behavioral dysfunctions have also been reported in children exposed to alcohol during prenatal development. These similarities are discussed as well as possible insights that might be gained from animal models of fetal alcohol effects.

Animals

Spontaneous fetal behavior after maternal exposure to ethanol.

Acute and chronic intubations of ethanol to pregnant rats produced changes in spontaneous fetal behavior four hours later. Fetuses from mothers in intermediate alcohol groups (4 and 6 g/kg) were substantially less active than controls (0 g/kg), but fetuses from low (2 g/kg) and high (8 g/kg) alcohol groups showed little indication of behavioral suppression. Circulating levels of alcohol in maternal blood, fetal homogenate and amniotic fluid at the time fetuses were observed confirmed that fetuses were exposed to alcohol in utero, but the measured concentrations of alcohol were not predictive of fetal activity. We suggest that some of the developmental consequences of Fetal Alcohol Syndrome may be the consequence of fetal inactivity induced by alcohol in utero.

Amniotic Fluid

The effect of prenatal alcohol exposure on umbilical cord length in fetal rats.

Umbilical cord length is reported to be a good indicator of fetal movement. This study was designed to examine the effects of chronic alcohol exposure on umbilical cord length in fetal rats. Exposure to alcohol during prenatal development was associated with shortened umbilical cord length, relative to controls. This finding was not a function of body weight differences alone and provides evidence that fetal movements may be decreased as a consequence of maternal alcohol consumption. The possible role of suppressed fetal movements in some of alcohol's teratogenic actions is also discussed.

Animals

Aerodynamic studies of cleft-palate speech.

The aerodynamic oral-nasal factors related to the speech of two groups of cleft-palate children were evaluated. One group presented hypernasality and the other group presented normal nasal resonance. The aerodynamic parameters evaluated were oral pressure, nasal flow, and flow-pressure ratio (nasal flow/oral pressure). Oral temperature readings were also obtained. These parameters were evaluated under three conditions (1) blowing, (2) vocalizing the vowel /i/, and (3) reading eight sentences representing two different rhythm patterns, two types of consonant loadings, and two conditions of syllable stress. The findings revealed significant differences between the hypernasal and normal resonance groups in flow-pressure ratio, oral pressure, and nasal flow while subjects were reading sentences. However, only a small proportion of the variability in these aerodynamic measurements could be accounted for based on the classification of hypernasality or normal nasal resonance. Oral-nasal aerodynamic studies done during speaking activity are more useful clinically than blowing activity or saying vowel sounds. No aerodynamic differences were noted between the two groups for the different rhythm and stress patterns and phonemic loadings within the sentences used.

Adolescent

Extracorporeal membrane oxygenation for massive pulmonary thromboembolism.

This study was undertaken to determine whether extracorporeal membrane oxygenation (ECMO) could modify the effects of massive lethal thromboembolism and prevent death. Twenty anesthetized dogs were prepared for venoarterial perfusion with a demand pump and membrane lung and were perfused slowly for 1 1/2 hours to lessen homologous blood shock; 1 ml per kilogram of 24-hour-old tantalum-impregnated thrombus was injected intravenously. The dogs had profound systemic hypotension with an elevated mean pulmonary artery pressure (62.9 +/-4.5 mm Hg) immediately after embolization. Control animals generally died within 15 minutes. Four of the 10 ECMO-supported animals lived for six days, at which time they were restudied and killed. Not only can ECMO maintain an animal that would otherwise die quickly of massive pulmonary thromboembolism, but such support, even though temporary, can greatly improve the chances of survival.

Animals

Actin-myosin interaction: inhibition of the myosin adenosine triphosphatase by actin.

In the absence of magnesium ion, the addition of actin to myosin in a 1 :4 ratio has a strong inhibitory effect on the adenosine triphosphatase activity, in contrast to the well-known activating effect of actin in the presence of magnesium ion. This finding suggests that both effects result from a conformational change in the active site of the myosin adenosine triphosphatase.

Adenosine Triphosphatases

The effects of prenatal alcohol exposure on odor associative learning in rats.

Alcohol was administered to pregnant females via a liquid diet that contained either 35% ethanol-derived calories (35% EDC) or 0% EDC on gestation days 6-20. An ad lib lab chow group (LC) was also included. In Experiment 1, odor-aversion learning was examined in 10-day-old offspring. While both the 0% EDC and LC groups displayed odor aversions, the 35% EDC offspring did not. In Experiment 2, learning was assessed in an appetitive paradigm in three-day-old offspring. Once again, the 35% EDC offspring showed no evidence of learning. Experiment 3 examined odor-aversion learning in adults. Both alcohol-exposed offspring and controls learned the odor association equally well. These findings suggest that odor associative learning is a sensitive indicator for alcohol-related learning deficits in rat pups although these deficits may dissipate as the offspring matures. Since odor associations play a critical role in neonatal behaviors, these deficits may help explain other behavioral anomalies noted following prenatal alcohol exposure.

Age Factors