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M A Metzger

Publications and source records attributed to M A Metzger.

3 recordsLinked to original sources

Frequent reward eliminates differences in activity between hyperkinetic rats and controls.

The spontaneously hypertensive rat (SHR) is a strain that is a potential animal model of attention-deficit hyperactivity disorder (ADHD)/childhood hyperkinesis/disturbance of activity and attention, as SHR exhibit both hyperactivity and attention problems. Altered reinforcement (reward) processes have been suggested as the mechanism for the development of hyperactivity in SHR and ADHD. The purpose of the present study was to analyze basic reinforcement and response processes in the hyperactive SHR and in the progenitor Wistar-Kyoto (WKY) control strain. The results show that differences between the strains emerge in response rates maintained by infrequent reinforcers rather than in asymptotic rates of responding maintained by higher rates of reinforcement. The SHR strain required fewer reinforcers per minute to maintain high rates of responding, but when reinforcer rates were high enough to maintain asymptotic response rates in both strains, the rates were similar. Thus, the increased response rates for hyperactive rats at low reinforcement rates may reflect not only barpresses for water, but possibly also barpresses for other stimuli the animal produces by pressing the lever switch. Extrapolating to hyperactive children (ADHD), the results suggest that ADHD behavior might be made more similar to non-ADHD if reinforcers were scheduled more frequently.

Animals↗

The spontaneously hypertensive rat (SHR) as an animal model of childhood hyperactivity (ADHD): changed reactivity to reinforcers and to psychomotor stimulants.

Childhood hyperactivity (attention-deficit hyperactivity disorder, ADHD) is a behavior disorder affecting 2-6% of grade-school children. The main symptoms are attention problems and hyperkinesis. The disorder is commonly treated with psychomotor stimulants, usually methylphenidate hydrochloride (ritalin) or d-amphetamine. Neither the cause of the disorder nor the basis of the effectiveness of the drug treatment is well understood. Differences in reinforcement processes have been implicated as part of the underlying problem. The main purpose of the present research was to investigate reinforcement processes and motor characteristics with and without stimulant medication in SHR, as an animal model of ADHD, and WKY controls, its normoactive progenitor strain. SHR behavior turned out to be more sensitive to immediate reinforcement and proportionately less sensitive to delayed reinforcement when compared to the behavior of WKY, as demonstrated by systematic changes in rates of responding throughout fixed-interval schedules of reinforcement of bar-presses by water. The psychomotor stimulants weakened the control by immediate reinforcers and strengthened the control by delayed reinforcers, with the effect of the drugs being more pronounced in WKY than in SHR. The results are consistent with clinical observations that ADHD children are less willing than others to accept "delayed gratification" and that methylphenidate increases the control of delayed reward over their behavior.

Analysis of Variance↗