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Operant conditioning of head waving in Aplysia.

Head waving is a naturally occurring behavior that Aplysia use to explore their environment. Aplysia can be operantly trained to modify their head-waving response, increasing the amount of head waving on one side of their body in order to terminate the presentation of an aversive strong light. Acquisition of the operant response is rapid, within 10 min. Two observations indicate that the operant conditioning is under the control of the contingencies of reinforcement: (i) contingent reinforcement significantly elevates operant responding, reversing the contingencies significantly reduces operant performance, and reinstating the contingencies significantly reinstates operant responding; and (ii) yoked controls do not acquire the operant response, yet these same animals readily learn when reinforcement is made contingent upon their responses. Finally, internally derived cues (e.g., proprioceptive or reafferent) appear to play a predominant role in acquiring the operant response. Since progress has been made in understanding the cellular basis of classical conditioning in Aplysia, this demonstration of operant conditioning in a response system that is well-suited for a cellular analysis provides a preparation in which it is possible both to analyze the cellular mechanisms of operant conditioning and to address the theoretical question of the relationship between classical and operant conditioning on a mechanistic level.

Animals↗

Operant conditioning and behavioral analyses using a minicomputer.

An operant conditioning and data analysis software system was developed for use on a PDP-12A minicomputer. The operant software functions in quasi time-sharing fashion to control and acquire data from any peripheral device that operates in the binary mode. In addition to independently running different experiments in near simultaneous fashion, the program also provides information on the current status of each experiment using a cathode ray-tube display. Response data from each experimental subject is stored on magnetic tape and analyzed, off-line, by the data analysis portion of the software system. A discussion of the operation of this system is given for one possible application: visual discrimination training.

Animals↗

Operant conditioning of spinal stretch reflexes in patients with spinal cord injuries.

Hyperactive spinal stretch reflexes (SSRs) often occur with spinal cord injuries (SCI). These altered SSRs may impair movement. Recent studies in monkeys and human subjects have indicated that the magnitude of SSRs can be modulated using operant conditioning. The purpose of this study was to determine whether hyperactive biceps brachii SSRs could be operantly conditioned downward. Seventeen chronic (> 1 year postlesion) spinal cord-injured patients participated. Subjects were trained to keep biceps background (prestretch) electromyographic (EMG) activity and elbow angle at predetermined levels prior to having the elbow rapidly extended by a torque motor to elicit the biceps SSR. All subjects participated in six baseline sessions over a 2-week period. Then, subjects were randomly assigned to either control or training groups for the next 24 sessions over an 8-week period. By the end of the study, training subjects had significantly reduced biceps SSRs (t test, P < 0.001), while control subjects SSRs were not significantly reduced (t test, P > 0.05). The reduced SSRs persisted for up to 4 months following cessation of training. The results of this study support the hypothesis that hyperactive SSRs can be operantly conditioned downward in SCI patients.

Adolescent↗

Operant conditioning of heart rate in free-moving dogs.

The magnitude of changes in heart rate that could be induced by the operant conditioning of beat-to-beat intervals was determined. Shock avoidance methods were employed during 71 sessions conducted over 17 weeks in 3 free-moving mongrel dogs. Experimental periods during which conditioning was done alternated with baseline periods. Heart rate differences between baseline and experimental periods were used as indices of conditioning. Alterations in heart rate were compared among four types of sessions: control, random shock, decrement conditioning and increment conditioning. Conditioned heart rate decrements averaged 3% while heart rate increments averaged 10%. Thus, operant conditioning carried out over prolonged periods of time resulted in relatively minor changes in heart rate.

Animals↗

A new paradigm for operant conditioning of Drosophila melanogaster.

A freely walking single fly (Drosophila melanogaster) can be conditioned to avoid one side of a small test chamber if the chamber is heated whenever the fly enters this side. In a subsequent memory test without heat it keeps avoiding the heat-associated side. The memory mutants dunce and rutabaga successfully avoid the heated side but show no avoidance in the memory test. Wildtype flies can be trained to successively avoid alternating sides in a reversal conditioning experiment. Every single fly shows strong avoidance and a positive memory score. The new conditioning apparatus has several advantages: (1) Statistically significant learning scores can be obtained for individual flies. (2) Learning scores are obtained fully automatically without interference of the experimenter. (3) The procedure is fast, robust and requires little handling. Therefore the apparatus is suitable for largescale mutant screening. (4) Animals are not attached to a hook and thus can easily be used for breeding.

Animals↗