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Modifications of reward expectation-related neuronal activity during learning in primate striatum.

This study investigated neuronal activity in the anterior striatum while monkeys repeatedly learned to associate new instruction stimuli with known behavioral reactions and reinforcers. In a delayed go-nogo task with several trial types, an initial picture instructed the animal to execute or withhold a reaching movement and to expect a liquid reward or not. During learning, new instruction pictures were presented, and animals guessed and performed one of the trial types according to a trial-and-error strategy. Learning of a large number of pictures resulted in a learning set in which learning took place in a few trials and correct performance exceeded 80% in the first 60-90 trials. About 200 task-related striatal neurons studied in both familiar and learning conditions showed three forms of changes during learning. Activations related to the preparation and execution of behavioral reactions and the expectation of reward were maintained in many neurons but occurred in inappropriate trial types when behavioral errors were made. The activations became appropriate for individual trial types when the animals' behavior adapted to the new task contingencies. In particular, reward expectation-related activations occurred initially in both rewarded and unrewarded movement trials and became subsequently restricted to rewarded trials. These changes occurred in parallel with the visible adaptation of reward expectations by the animals. The second learning change consisted in decreases of task-related activations that were either restricted to the initial trials of new learning problems or persisted during the subsequent consolidation phase. They probably reflected reductions in the expectation and preparation of upcoming task events, including reward. The third learning change consisted in transient or sustained increases of activations. These might reflect the increased attention accompanying learning and serve to induce synaptic changes underlying the behavioral adaptations. Both decreases and increases often induced changes in the trial selective occurrence of activations. In conclusion, neurons in anterior striatum showed changes related to adaptations or reductions of expectations in new task situations and displayed activations that might serve to induce structural changes during learning.

Animals↗

Proactive and retroactive effects of hippocampal stimulation on active avoidance learning, hippocampal EEG and brain acetylcholinesterase activity in cats.

The subject of this investigation were the effects of electrical stimulation of the hippocampus on the acquisition of active avoidance response (AAR) in a shuttle-box. The stimulation (200 microamperes, 50/s, negative rectangular pulses of 1.0 ms duration) was applied once for 10 s before or after each training session. It was found that the application of hippocampal stimulation before each session facilitated the acquisition of AAR; discontinuation of the stimulation after training did not cause a decrease of AAR performance. Application of the stimulation after each session inhibited learning in four out of six cats. However, the level of AAR performance increased rapidly in these cats after inversion of the trials-stimulation sequence. It was also found that the intensity of the somatic and vegetative symptoms evoked by stimulation (stupor, salivation, twitching of facial muscles, pupil dilatation, crying) increased gradually in successive experimental sessions, suggesting the development of the 'kindling effect in cats stimulated before each session. In cats stimulated after each session the intensity of these symptoms was greatly diminished as compared to sessions where the stimulation was not preceded by the avoidance training, or they did appear at all. However, normal sensitivity to stimulation returned after several applications of hippocampal stimulation before each experimental session. Electroencephalographic studies showed that hippocampal stimulation with the use of the same parameters as those used during training evoked hippocampal afterdischarges lasting 5-60 s. No changes of aceltycholinesterase activity in different brain regions were found in consequence of such stimulation.

Acetylcholinesterase↗

'Being there': learning through active participation.

Students engagement in learning is predicated not only on interest but on the perception of relevance to their needs. A hermeneutic interpretation of narrative student evaluation data from an introduction to nursing lecture course that was taught by means of a practice-based phenomenological approach revealed a pattern of student learning in which students moved from detachment to active participation in their learning. The stories shared by nurses in the practice setting were instrumental in introducing students to the world of nursing and facilitating a sense of belonging. Once engaged in the experience, students looked for opportunities to become active participants in their learning. A practice-based phenomenological approach to a theory course maximizes opportunities for student participation. Active reflection and integration allow students to make their own connections between theory and practice.

Curriculum↗

Seasonal changes in the learning and activity patterns of goldfish.

Goldfish exhibit cyclic changes with an annual rhythm in their learning and activity patterns. Maximum learning ability and active behavior occurred during the months of January, February, and March. Poor learning was obtained in the summer months, after the onset of the spawning season. The results indicate that the annual periodic changes of the hormonal levels which govern spawning may also influence learning and activity patterns.

Animals↗

[Rat brain nuclease activity during learning with emotionally different reinforcement].

Acid and alkaline activity of nucleases of the rats trained with emotional positive or negative reinforcement was estimated in the neocortex, hippocampus, midbrain, and in caudal portions of the brain-stem, using native and denaturated DNA as a substrate. The results showed the total increase in nuclease activity during learning. Nevertheless the dynamics of enzyme activation was different depending on the emotional state of rats during learning. The most active enzyme was found in the caudal portion of the brain-stem.

Animals↗

[The participation of the cholinergic systems of the dorsal and ventral striatum in the active avoidance learning of rats in a T maze].

Influence of cholinergic activation of dorsal (caudo-putamen) and ventral (accumbens) striatum on active avoidance learning was studied in chronic experiments in Sprague-Dawley male rats. The results obtained on the same behavioural model testify to specific roles of dorsal and ventral cholinergic systems in the control of motor behaviour. Single carbacholine microinjection into the right Accumbens increased the level of correct responses on the first and subsequent learning days. Similar microinjection into the left accumbens on the first training day improved the level of correct responses on the second and the third learning days. Microinjections into the dorsal striatum did not change active avoidance learning in T maze. Changes in locomotor activity of the animals of different experimental groups were principally of the same nature, i.e., the level of locomotor activity in the open field decreased from trial to trial in all the groups. Carbacholine microinjection did not change spontaneous locomotion in rats. However, there were variations in modifications of locomotor activity induced by microinjections into accumbens depending on localization of the cannula. Injection into the lateral accumbens induced the most pronounced changes. This fact testifies to the functional heterogeneity of this small nucleus.

Animals↗

Forebrain serotonin and avoidance learning: behavioural and biochemical studies on the acute effect of p-chloroamphetamine on one-way active avoidance learning in the male rat.

The acute effects of p-chloroamphetamine (PCA) on one-way active avoidance learning and on central monoamine concentrations were examined in the male rat. The 5-HT specificity of the acute behavioural effect of PCA was examined in several experiments. PCA (0.08-5 mg/kg IP) injected 30-60 min before testing produced a dose-related impairment of both avoidance acquisition and retention. Pretreatment with the selective serotonin (5-HT) uptake inhibitors fluoxetine and zimelidine, but not the noradrenaline (NA) uptake inhibitor desipramine, resulted in a blockade of the avoidance deficit. Degeneration of brain 5-HT neurons by a high neurotoxic dose of PCA (2 x 10 mg/kg IP) 7 days prior to the administration of PCA also blocked the avoidance deficit. There was also a complete blockade of the PCA-induced avoidance deficit by pretreatment with metergoline, a central 5-HT receptor blocking agent. A 2.,5 mg/kg dose of PCA examined 60 min after injection produced regional changes in the 5-HT-levels preferentially in the forebrain region with significant reductions in the cerebral cortex, hippocampus and striatum while marginal effects were observed in the hypothalamus, midbrain and spinal cord. PCA failed to reduce dopamine and noradrenaline concentrations in the time- and dose-range of the avoidance deficit. Thus, the avoidance learning impairment appears to be specifically related to the acute release of endogenous 5-HT from presynaptic nerve endings possibly in the forebrain resulting in stimulation of postsynaptic 5-HT receptors. These findings indicate that 5-HT neurons in the forebrain play a role in active avoidance learning possibly by an involvement in memorial and/or retrieval processes.

Amphetamines↗

Effects of vanadium on activity and learning in rats.

The effects of vanadate administration on activity and learning were assessed in rats. Four groups of adult male rats were given by gavage 0, 4.1, 8.2, and 16.4 mg/kg/day of sodium metavanadate for eight consecutive weeks. Three weeks after the cessation of the treatment, general motor activity of all animals was measured in an open-field. Rats were also tested for two-way shock avoidance learning in an automatic reflex conditioner. At the end of the testing period, rats were killed and vanadium concentration was determined in a number of tissues. Vanadium exposure caused an observable but not significant effect on body weight gain, while a persistent presence of vanadium was observed in all tissues measured. The results of the behavioral testing show that oral vanadate administration resulted in significant reductions in both general activity and learning.

Animals↗

Activity and learning in neonatally hormone treated rats.

The degree of activity and the performance in active avoidance learning were determined in adulthood, from neonatal hormone treated and intact rats. The treated groups were androgenized females and castrated males and females. Normal males and females composed the intact groups. Activity was measured in two tests situations, i.e., open field and shuttle box. Similar results were obtained in both tests, and a positive correlation coefficient was found between them. Intact females showed more activity than males; castration and testosterone injection in females decreased their activity. On the contrary, castration in males increased it. The effects of the treatments on the performance in the active avoidance task were similar to those described for activity, with the only exception that castration in males did not produce a significant effect in this test. Nevertheless, no correlation was found between activity and avoidance learning scores. The validity of the classification of different types of behavior as sexual or non-sexual is discussed.

Animals↗

Comparison of the effects of acute and subchronic administration of atipamezole on reaction to novelty and active avoidance learning in rats.

The effects of an alpha2-adrenoceptor antagonist, atipamezole, on exploratory behaviour in a novel environment, spontaneous motor activity and active avoidance learning were studied after acute injection and continuous infusion (0.1 mg/kg h) for 24 h and 6-9 days in rats. The effects of atipamezole on biogenic amines and their main metabolites in brain were studied after an acute injection (0.3 mg/kg s.c.) and continuous infusion (0.1 mg/kg h) for 24 h and 10 days. The level of central alpha2-adrenoceptor antagonism and the drug concentration in blood and in the brain were measured after continuous infusion for 24 h and 10 days. In behavioural tests, atipamezole had no effect on spontaneous motor activity at any of the doses studied. However, after both acute administration and continuous 24-h infusion, atipamezole decreased exploratory behaviour in a staircase test, but no longer after 6 days of continuous infusion. Acute administration of atipamezole impaired performance in active avoidance learning tests causing a learned helplessness-like behaviour. When the training was started after 7 days of continuous infusion, atipamezole significantly improved active avoidance learning. There was a significant increase in the metabolite of noradrenaline (NA), 3-methoxy-4-hydroxyphenylethyleneglycol sulphate (MHPG-SO4), after 24 h but not any longer after 10 days of continuous atipamezole infusion, although the extent of central alpha2-adrenoceptor antagonism was unchanged and the atipamezole concentration present in brain was even elevated at 10 days compared to levels after 24-h infusion. In conclusion, these results reveal that acute and subchronic atipamezole treatments have different and even opposite effects on behaviour in novel, stressful situations. After acute treatment, atipamezole potentiates reaction to novelty and stress, causing a decrease in exploratory activity and impairment in shock avoidance learning. After subchronic treatment, there was no longer any effect on exploratory behaviour and, in fact, there was an improvement in the learning of a mildly stressful active avoidance test. The changes in behaviour occurred in parallel with attenuation in the MHPG-SO4-increasing effect, thus the suppressed behaviour in the present test conditions after acute atipamezole injection is associated with a major increase in central NA release. The results support the role of alpha2-adrenoceptors and noradrenergic system in reactions both to novelty and stress and have possible implications in cognitive functions as well as in depression.

Adrenergic alpha-Agonists↗

Effort and stress influence the effect of lesion of the habenula complex in one-way active avoidance learning.

Previous studies which have examined the effects of lesions of the habenula on active avoidance learning have not provided unambiguous support for response deficits. Moreover, interpretation of early studies is confounded by large lesions which damaged adjacent structures. We report the effects of smaller circumscribed lesions of the habenula complex on a simple one-way active avoidance paradigm in three separate experiments in which the required operant was a step or jump onto an elevated platform. In the first study involving avoidance of shock of low intensity (0.5 mA) with an average long intertrial interval of 8 minutes, lesioned animals were not significantly different from sham operated controls. However, in following experiments in which stress levels were increased by raising the shock intensity and reducing the intertrial-interval, or in which the operant was made considerably more demanding by raising the height the animals had to jump to make an avoidance response, there were large lesion induced deficits in avoidance responding. The absence of significant differences between lesioned and sham operated controls in escape latencies suggested no lesion induced impairment of the response to the shock. It is suggested that the data not only support an effect of habenular lesions on active avoidance learning but also are consistent with a previous suggestion that the functional effects of lesion of the habenula on behaviour are effected through changes in dopaminergic function.

Animals↗

Effects of nicotine on active avoidance learning in rats: sex differences.

Nicotine, a cognition enhancer and a drug of abuse, exerts its central actions through neuronal nicotinic acetylcholine receptors which show sexual dimorphism. This study tested the effects of nicotine on active avoidance learning in male and female rats. Three month-old Sprague-Dawley rats received varying doses of nicotine (0.2, 0.4 and 0.6 mg/kg) or saline s.c. before active avoidance learning trials (15 trials/day) for a period of 5 days. Behavioural testing was continued after the termination of nicotine treatment once a week for four weeks. Nicotine improved acquisition of active avoidance learning in a dose-dependent manner. In male rats nicotine was active at all doses tested whereas, in females, learning performance deteriorated at a dose of 0.6 mg/kg. In conclusion, nicotine pre-treatment affects active avoidance in a sexually dimorphic and dose-dependent manner.

Animals↗

Clinical discussion sessions and small groups.

Because most adults learn more efficiently and what they learn is retained longer when they are able to engage in active learning, discussion groups are at the center of medical education. Group discussion is an active learning process. Active learning supports participant interchange through structured and supportive educational procedures. Small group discussions provide opportunities for identification of new areas of knowledge acquisition by students. They also can be used to formally integrate previous knowledge though active integrating discussion. The clinical instructor who uses small group discussions effectively will find that his role as information provider is diminished, but that his role as facilitator is greatly enhanced. The paper focuses on purposes for discussion groups, the role of the clinical instructor, and offers specific suggestions for techniques to enhance small group discussions.

Adult↗

Pulmonary and renal pressure-flow relationships: what should be taught?

This article is from a symposium presented at the annual meeting of the Human Anatomy and Physiology Society (HAPS) on June 11, 2000. The presentation was funded under the auspices of a National Science Foundation Course, Curriculum, and Laboratory Improvement Program entitled "Development of Active Learning Materials for Physiology and Functional Anatomy: A Cooperative HAPS-APS Initiative." This symposium was part of the first module to be developed on "gradients and conductances: what flows where and why?" This presentation was designed to model the usefulness of the general model of gradients and conductances in the physiology and pathophysiology of the respiratory and renal systems. Thirteen different examples of pressure-flow-resistance and concentration-flux relationships are introduced; several ideas for active-learning activities and simple figures appropriate for undergraduate physiology classes are included. The symposium assumes that undergraduate students have already learned about diffusion, osmosis, and the basic principles of cardiovascular physiology. The presentation was designed to follow a symposium entitled: "Cardiovascular pressure-flow relationships: what should be taught?"

Cardiovascular Physiological Phenomena↗

The effect of different hypertension models on active avoidance learning.

This study tested the effects of different hypertension models on active avoidance learning in rats. Three-month-old male Wistar rats were divided randomly into six groups as follows: control (C), sham operated (sham), two kidney-one clip (2K-1C), one kidney-one clip (1K-1C), deoxycorticosterone-salt (DOCA), and N-omega-nitro-L-arginine-methyl ester (L-NAME) groups. Mean arterial blood pressures were significantly higher in four hypertensive groups compared with control and sham groups. The active avoidance training results indicated that hypertension state is associated with learning impairment. Thiobarbituric acid-reactive substances (TBARS) were determined as an indicator of lipid peroxidation in brain and hippocampus. Additionally, brain and hippocampus nitrite levels were studied.

Animals↗

A pet study of human skill learning: changes in brain activity related to learning an orientation discrimination task.

Using 15O-water 3D positron emission tomography we investigated the effect of training in orientation discrimination upon cerebral activity in healthy human adults. When subjects are trained in this discrimination task, they learn the visuo-motor stimulus-response association required by the task and they increase their perceptual abilities in orientation discrimination. The present study was designed to investigate the rCBF modifications related to both these learning processes induced by training in orientation discrimination. PET data were acquired on two separate days (before and after training). Comparing the activation pattern related to orientation discrimination before and after the training period we observed activity decreases located in the left cerebellar cortex, in the right precentral gyrus and bilaterally in the fusiform gyri. The only region showing an activity increase was located in the body of the right caudate nucleus. These findings confirm the role of the neostriatum in skill learning and highlight the importance of mechanisms resulting in cortical and cerebellar neuronal activity decreases in this type of learning.

Adult↗

Micro- and macrostructure of learning in active avoidance: a quantitative approach.

The dynamics of learning in the Active Avoidance test was analyzed at the trials level as well as at the level of daily sessions, each comprising numerous trials. The two scales (large scale for the sessions and small scale for the trials) were demonstrated to be mutually independent. The intermediate derived scales (blocks of trials) were found consistent among themselves and with small scale but independent of the large one. Moreover, the two extreme scales were kinetically discriminable. These results point to the existence of two independent mechanisms for large and small scale learning together with the need to postulate a consolidation process during the rest period.

Animals↗

Behavioral characteristics of the SAM-P/8 strain in Sidman active avoidance task.

The behavior of the senescence-accelerated mouse (SAM-P/8) at the age of 1, 2, 4 and 10-11 months in Sidman active avoidance learning was analyzed, and compared to findings in the controls (SAM-R/1). At the age of 1 and 2 months, learning was comparable in these two strains. At the age of 4 and 10-11 months, SAM-P/8 but not SAM-R/1 learned active avoidance. We propose that SAM-P/8 can serve as a valid model of deficits in learning and memory.

Aging↗