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Biomedical subjects

J A Devenport

Publications and source records attributed to J A Devenport.

9 recordsLinked to original sources

Time-dependent decisions in dogs (Canis familiaris).

We investigated whether the foraging decisions of dogs (Canis familiaris) were time dependent and consistent with a temporal weighting rule (TWR) for maximizing the reliability of information. Dogs were given information about patches whose qualities varied over time. To simulate natural conditions, we interposed interruptions at selected points in foraging. Patch choices were time dependent and closely matched the predictions of TWR. Dogs relied on very recent information when available, but with increasing delays they used patch averages. TWR may be a general solution to problems faced by foragers in variable environments.

Animals↗

Adrenocortical hormones and brain growth: reversibility and differential sensitivity during development.

The brain growth that follows adrenalectomy can be arrested by corticosterone replacement. Administered daily in combination with deoxycorticosterone, the brain and body conditions of intact rats are closely matched. Using this combination dose (corticosterone, 7.0 mg/kg; deoxycorticosterone, 1.0 mg/kg), hormonal replacement was systematically administered and withheld in a balanced design in order to assess the relative sensitivity of brain tissue to corticosteroids across time, and to determine if brain growth suppressed during one phase could recover upon hormone withdrawal during a second phase. Female forebrains were less sensitive to the hormones during an early phase which spanned ages 27 to 46 days. In contrast, 70 to 80% of potential growth was suppressed by replacement during a later period (ages 46 to 65 days). Brain size differences included weight and forebrain length, width, and depth. Hind brains were more sensitive to hormone replacement during phase 1. However, this suppressed growth was completely regained after hormone withdrawal during phase 2. On the other hand, growth that had occurred in the absence of adrenal steroids was not reversed, only arrested, by subsequent administration. We conclude that the rat brain became increasingly sensitive to the suppressive influence of adrenal steroids as females matured from juveniles to adults. Coupled with this sensitivity was the ability--apparently complete--to recover from steroid-induced brain growth suppression.

Animals↗

Brain growth: interactions of maturation with adrenal steroids.

By performing autopsies at two different ages--when fully mature or 80 days later--it was possible to determine whether adrenalectomy-induced brain growth is enduring or transient, due to a temporary acceleration of maturation. Male rats were adrenalectomized or sham-operated at age 25 days. The effects on brain were assessed at either age 65 days or 145 days. Adrenalectomy produced the previously reported hypertrophy as reflected in hindbrain weight, forebrain weight, and linear dimensions. Most importantly, the adrenalectomy-induced brain growth not only continued across the two phases, the rate of divergence between the groups increased with age. The results clearly reject the idea that adrenalectomy merely hastens maturation of the brain. Rather, the effects of adrenalectomy are enduring, progressive, and more dramatic with age.

Adrenal Cortex Hormones↗

Effects of ethanol on enforced spatial variability in the 8-arm radial maze.

Previous work has indicated that ethanol is a potent stereotypy-inducing agent. At least this is the case for spontaneously emitted instrumental behavior. The present experiments were undertaken to determine if spatial variability could be generated by drugged rats when it was enforced by reward contingencies. With a reward nonreplacement rule in force, four arms of an 8-arm radial maze were baited on every trial. Rats injected with 0, 0.75, 1.5, or 2.0 g/kg ethanol were required to run to the same set of arms from trial-to-trial and session-to-session. Efficient performance depended upon their running to the correct set of arms as well as meeting a "win-shift" demand which proscribed returning to previously visited arms during a given trial. Although all groups were eventually able to run to the correct set of arms, alcohol, especially at higher doses, promoted repetition. The inability to refrain from reentering arms prevented many alcohol-injected animals from obtaining the four rewards in the allotted time. In Phase 2 of Experiment 1, the baited arms were rotated 45 degrees. Now the formerly empty arms contained pellets and rewards were withdrawn from the previously correct arms. Adjustment to this shift was rapid for 0 and 0.75 g/kg groups, but an increasingly severe perseveration was observed across the higher ethanol groups. Experiment 2 reproduced the results of Experiment 1 under different circumstances. While trained as before to run to a specific set of four arms in Phase 1, Phase 2 presented the rats with rewards in all eight arms of the maze. With higher doses of alcohol an increasing persistence in running to the original four arms was observed. Saline-injected animals, on the other hand, rapidly doubled the number of pellets taken. Taken together, and in view of earlier findings, the results suggest that alcohol interacts with previous training as well as recent choices with the result that spatial dispersion is restricted in spite of explicitly opposing reward contingencies.

Animals↗

Reward-induced stereotypy: modulation by the hippocampus.

In animals with hippocampal damage, the signaled administration of reward is sufficient to induce the sort of behavioral sterotypy and locomotion that heretofore has been observed only after drug administration. Haloperidol returns these behaviors to normal. The interaction of the hippocampus with reward helps to explain many well-known characteristics of animals with lesions in the hippocampus and may have relevance for catecholamine-based clinical disorders.

Animals↗

Periodic availability: factors affecting alcohol selection in rats.

The joint influence of alcohol availability conditions and alcohol concentration on the acquisition and maintenance of alcohol selection was examined in non-alcohol preferring Sprague-Dawley rats. Relative alcohol selection increased gradually in rats given periodic access to 10% alcohol but was immediately apparent in rats given periodic access to 5% alcohol. Rats given continuous access to alcohol (either forced or choice) did not show similar increases in alcohol selection until switched to the periodic schedule. The increases were not sustained in any group when alcohol became continuously available. Comparable increases in alcohol selection were evident in rats given periodic access to alcohol on various fixed schedules or on a random schedule. Several factors appear to influence the degree of alcohol selection under conditions of periodic availability: alcohol concentration, nature of prior experience with alcohol, the frequency of access to alcohol, the regularity of the periodic access to alcohol, and differences in individual responsivity to the schedule variable.

Alcohol Drinking↗