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Biomedical subjects

G Mittleman

Publications and source records attributed to G Mittleman.

At least 37 records · Page 2Linked to original sources

Pituitary-adrenal and dopaminergic modulation of schedule-induced polydipsia: behavioral and neurochemical evidence.

Five experiments investigated in rats the effects of increasing or decreasing plasma corticosterone levels on schedule-induced polydipsia and dopamine efflux in the nucleus accumbens. The results indicate that the acquisition of schedule-induced polydipsia could be decreased by adrenalectomy, blockade of corticosterone synthesis, or administration of corticosterone. Performance of established schedule-induced polydipsia was also decreased by adrenalectomy. The effects of corticosterone administration on established schedule-induced polydipsia depended on the level of performance. High levels of drinking were enhanced by a high dose of corticosterone, whereas low rates of drinking were increased by a low dose. Similar injections of corticosterone also significantly increased dopamine efflux. The relative involvement of pituitary-adrenal activity and dopamine neurotransmission in the nucleus accumbens in the acquisition and performance of SIP is discussed and related to contemporary hypotheses of schedule-induced behavior.

Animals↗

Sensitization of amphetamine-stereotypy reduces plasma corticosterone: implications for stereotypy as a coping response.

The potential coping functions of amphetamine-induced stereotypy were investigated using a physiological index of stress or arousal, plasma corticosterone level. A series of five injections of d-amphetamine was used to enhance stereotyped behavior in control animals as well as in rats with bilateral dopamine-depleting lesions of the caudate-putamen. This regimen of amphetamine injections significantly increased stereotyped behavior and also reduced the normal elevation in corticosterone produced by treatment with d-amphetamine. This effect was apparent in both control and lesioned animals. These results support the hypothesis that amphetamine-induced stereotyped behavior functions to reduce stress or arousal and additionally suggest that this effect is largely independent of underlying dopaminergic mechanisms.

Adaptation, Psychological↗

Hippocampal modulation of nucleus accumbens: behavioral evidence from amphetamine-induced activity profiles.

The experiments examined amphetamine-induced locomotion and stereotyped behavior in hippocampal-ablated and control rats for 30 days following surgery. Locomotor counts, stereotypy ratings, and locomotor-time profiles showed that d-amphetamine sulfate produced a selective enhancement of locomotion (cage crosses) at the expense of stereotyped behavior in hippocampal rats relative to normal control rats. This enhancement emerged over the first 2 weeks postsurgery. To examine the role of the striatum in this amphetamine-induced effect, combined hippocampal damage and 6-hydroxydopamine-induced damage of the nucleus accumbens or caudate-putamen were used. These results suggested that amphetamine-enhanced locomotion of hippocampal rats is dependent upon the integrity of the nucleus accumbens and may reflect a change of nucleus accumbens activity relative to caudate-putamen activity. Together these findings suggest that the hippocampus may participate in the control of locomotion by projections that modulate the activity of the nucleus accumbens.

Animals↗

Cortical, hippocampal, and striatal mediation of schedule-induced behaviors.

The sequential occurrence of licking, locomotor activity, entries into the food magazine (panel pressing), and nonreenforced lever pressing engendered by a periodic schedule of food presentation were measured in each 60-s interreenforcement interval in normal and brain-damaged rats. The development of these responses was measured over 20 days in different groups of food-deprived rats that had received aspirations of the hippocampus, small lesions of the cortex overlying the hippocampus (hippocampal-operated control group), decortication, or 6-hydroxy-dopamine lesions of the caudate nucleus or nucleus accumbens. All lesions produced distinctive patterns of change in the measured behaviors, and dissociations as well as similarities in their effects were evident. These results are discussed with respect to dissociations in the motor and motivational effects of the various lesions and in terms of contemporary hypotheses of schedule-induced behavior.

Animals↗

Physiological correlates of schedule-induced activities in rats.

Oxygen consumption and heart rate as well as a range of behavior variables were tracked continuously as rats adapted to a schedule of food delivery. Over 15 days of observation a majority of the subjects developed characteristic patterns of schedule-induced polydipsia (SIP) in which bouts of drinking reliably followed food delivery. Variations in food tray entries, oxygen consumption, heart rate, and, in the final stage of the experiment, rates of general activity were also time locked to food delivery in both rats exhibiting SIP and nondrinkers. However, the patterns of variation in these measures differed consistently between these two groups. Oxygen consumption varied over a wider range and reached higher levels in drinkers than nondrinkers. Additionally, heart rate was lower in the drinkers, which, in the final stage of the experiment, also exhibited depressed rates of food tray entries and general activity relative to the nondrinkers. Each of these between-subject differences was paralleled by differences within the drinking group between trials on which drinking occurred and trials on which it did not occur. The implications of these results on the utility of unidimensional energetic constructs are discussed.

Animals↗

Training-dependent decay in performance produced by the neuroleptic cis(Z)-flupentixol on spatial navigation by rats in a swimming pool.

Rats were trained on place or cue spatial navigation tasks in a swimming pool and then given the neuroleptic, alpha-flupentixol. Initial experiments showed that regardless of testing schedule, including blocks of trials given concurrently or separated by 7 or 30 days, drugged rats showed a trial-by-trial decay in latency and accuracy of responding although they continued to swim. The rate of decay increased with increases in drug dosage. Further experiments showed that: 1) Performance decay was specifically related to conditioned components of the test environment. Animals required to swim in a different test, or to struggle, showed less decay than rats exposed to the test platform only or required to perform all aspects of the task. 2) Decay was not due to nonspecific effects of neuroleptic treatment because rats injected and replaced in their home cage, and then subsequently reinjected and tested performed like rats treated and tested for the first time. 3) A trial-dependent decay of performance was also obtained in hippocampectomized and decorticate rats, suggesting that at least part of the major action of the drug is on subcortical systems. The results are discussed with respect to hypotheses of neuroleptic action and with respect to their possible relevance to experience-dependent changes in animal analogues of Parkinson's disease. Finally, it is suggested that behavior may be organized in subsystems, which when active, become selectively sensitive to neuroleptics.

Animals↗

Attenuation of amphetamine-stereotypy by mesostriatal dopamine depletion enhances plasma corticosterone: implications for stereotypy as a coping response.

The relationship between amphetamine-induced stereotyped behavior and a neuroendocrine index of arousal, plasma corticosterone (CCS), was investigated. 6-Hydroxydopamine lesions of the caudate-putamen, which produced dopamine depletions of 60%, blocked stereotypy and prolonged the elevation in corticosterone associated with d-amphetamine treatment (5 mg/kg). Similar dopamine depleting lesions of the nucleus accumbens, which attenuated the locomotor, but not the stereotypic, response to AMPH did not have this effect on CCS. This pattern of results supports the hypothesis that stereotypy has a coping function which may serve to alter arousal and further suggests important differences between the nigrostriatal and mesolimbic dopamine projections in modulating the responsiveness of the neuroendocrine system. These results have implications for understanding the function of behavioral stereotypies common to a number of psychopathological conditions, including schizophrenia and childhood autism.

Adaptation, Psychological↗

Cortical lateralization of function in rats in a visual reaction time task.

Rats were trained to orient to a visual cue presented in either visual field. An asymmetry in reaction time showed that they used one eye to control responses to both visual fields. Cortical removal contralateral to this dominant eye produced a severe and permanent response deficit. Cortical removal ipsilateral to the dominant eye caused a mild and temporary change. Thus, in the rat, there is a functional lateralization that is similar to that seen in humans.

Animals↗

Effects of diazepam, FG 7142, and RO 15-1788 on schedule-induced polydipsia and the temporal control of behavior.

Although benzodiazepine agonists and inverse agonists have opposite effects on drinking elicited by water deprivation, there is much less information about the effects of these drugs on nonhomeostatic drinking. In this experiment the effects of diazepam (0.3-5.0 mg/kg), a benzodiazepine receptor agonist, and FG 7142 (1.0-9.0 mg/kg), an inverse agonist, were determined on drinking elicited by a FT-60 schedule of food delivery (SIP). Both diazepam and FG 7142 dose-dependently reduced SIP, measured as either licking or volume consumed. In addition, diazepam reduced panel pressing for food, decreased locomotor activity, and changed the time course of each behavior. In contrast, FG 7142 reduced schedule-induced drinking without significantly altering other behaviors. The antagonist RO 15-1788, when given in combination with these drugs, only partially restored the reductions in licking produced by diazepam, but was much more effective in reversing the effects of FG 7142 at doses of the antagonist that failed by themselves to affect responding. The opposite pattern of effects was seen on the volume of water consumed. These effects are discussed in terms of the behavioral and pharmacological specificity of these drugs.

Animals↗

The relationship between schedule-induced polydipsia and pituitary-adrenal activity: pharmacological and behavioral manipulations.

The relationship between schedule-induced polydipsia (SIP) and pituitary-adrenal activity in rats was investigated using two different approaches that involved either capitalizing on pre-existing individual differences in the propensity to show SIP, or by inducing differences in plasma corticosterone by behavioral or pharmacological means. Thus, in Expt. 1, SIP was monitored after corticosterone levels were pharmacologically altered with drugs that act at the benzodiazepine receptor. In Expt. 2, the relationship between individual differences in water consumption during SIP and plasma corticosterone levels was determined. In addition, corticosterone levels were determined after the prevention of drinking during SIP. Results indicated an inverse relationship between plasma corticosterone levels and SIP. It was also found that corticosterone levels were significantly higher following SIP with water available than after SIP without water. The implications of these results for previous hypotheses of SIP are discussed.

Animals↗

Impairments in the acquisition, retention and selection of spatial navigation strategies after medial caudate-putamen lesions in rats.

Using the Morris swimming pool test of spatial navigation, medial caudate-putamen lesions in rats produce impairments in the acquisition and retention of both place and cue tasks, and impair the selection of normal navigation strategies. Also described are some novel features of spatial navigation behaviour displayed by control animals in cue and place tasks that provide insights into the performance of the caudate-putamen rats. Analyses of the swim patterns on postacquisition probe trials, in which the target platform was removed or relocated, showed that the strategy used by the caudate-putamen lesioned rats was dependent upon the task that they were required to solve. Control rats used a place strategy and distal visual cues to identify the location of the start points, the routes from the start points to the platform, and the location of the platform on both the cue and place tasks. The caudate-putamen lesioned rats used distal visual cues and a place strategy only to acquire the place task. They solved the cue task using a taxon strategy consisting of a combination of proximal and position response cues. The results suggest that when necessary, medial caudate-putamen lesioned rats, like normal rats, can use place strategies for spatial navigation, but if an alternate, perhaps simpler, taxon solution is available they seemingly ignore place information and navigate using the simpler strategy. The deficit, which has features of a neglect rather than a loss of ability per se, suggests that medial caudate-putamen neural systems are involved in the selection of alternative strategies in spatial navigation tasks.

Afferent Pathways↗

Unilateral substantia nigra lesions and schedule-induced polydipsia.

The present experiment investigated the effects of unilateral 6-hydroxydopamine lesions of the substantia nigra (SN) on schedule-induced polydipsia (SIP). Lesions were made in either the "dominant" or "non-dominant" hemisphere as defined by an amphetamine rotation test. It was found that unilateral lesions of either the "dominant" or "non-dominant" SN significantly reduced SIP and also significantly impaired somatosensory responsiveness as indicated by the "tactile extinction test." Somatosensory neglect was significantly greater following a lesion in the "dominant" hemisphere than "non-dominant" hemisphere.

Animals↗

The propensity for nonregulatory ingestive behavior is related to differences in dopamine systems: behavioral and biochemical evidence.

Previous research has shown that animals predisposed to eat and drink in response to electrical stimulation of the lateral hypothalamus (ESLH) are similarly predisposed to drink excessively when tested for schedule-induced polydipsia. The eating and drinking elicited by both experimental paradigms appears to be unrelated to homeostatic need and has been called nonregulatory ingestive behavior. In this study, the relation between properties of dopaminergic neural systems and the predisposition to exhibit nonregulatory ingestive behavior was investigated. It was found that rats that eat and drink during ESLH show greater behavioral sensitization to a series of amphetamine injections that those that do not exhibit ingestive behavior during ESLH. In addition, footshock stress produced a greater increase in forebrain dopamine utilization in rats that engaged in nonregulatory ingestive behavior. This evidence is consistent with the hypothesis that there are individual differences in the responsiveness of forebrain dopamine systems that are related to the behavioral predisposition to exhibit nonregulatory ingestive behavior.

Animals↗

Visits to starts, routes, and places by rats (Rattus norvegicus) in swimming pool navigation tasks.

Rats were trained to escape to visible or to hidden platforms in a swimming pool and then given probe trials, which requires that they search for a platform that had been removed or repositioned. To solve the tasks, they simultaneously used a number of behavioral strategies including position responses, cue responses, and place responses. On the probe trials, they not only displayed behaviors that were reinforced during training, including searches in the quadrant where the platform had been located and swims across the point where the platform had been, but they also displayed novel behaviors, including swims to previously used start points on the pool wall and swims that retraced previously used routes to the platform. Rats trained on the place task (hidden platform) made more swims across the platform's previous location, whereas rats trained on the cue task (visible platform) made more returns to previously used start points. When the number of start points or number of platform locations used during training was varied, swimming patterns on the probe trials also changed. Increases in the number of start points produced more returns to start points, whereas increases in the number of platform locations produced more searches for platforms. The results reveal that rats make coextensive use of all relevant strategies to solving spatial navigation tasks. Also, their search patterns on probe trials reflect previously reinforced behaviors as well as novel unconditioned search behaviors. The implications of the results for studies of the neural basis of spatial navigation and/or animal models of human memory are discussed.

Animals↗

Individual differences in non-regulatory ingestive behavior and catecholamine systems.

Animals that eat and/or drink in response to electrical stimulation of the lateral hypothalamus (ESLH-pos) are more responsive to both schedule-induced polydipsia (SIP) tests and a series of amphetamine (AMPH) injections than animals that do not exhibit these behaviors (ESLH-neg). Moreover, prior exposure to the behaviorally activating SIP experience, or to AMPH, permanently transformed the ESLH-neg animals into animals that reliably ate or drank during ESLH. Prior treatment with AMPH also increases the water consumed during subsequent SIP tests. Thus, initial of induced differences in sensitivity to activating experiences can determine behavioral propensities.

Animals↗

Enduring enhancement in frontal cortex dopamine utilization in an animal model of amphetamine psychosis.

It is reported that in rats the repeated intermittent administration of amphetamine produces a long-lasting enhancement in medial frontal cortex dopamine utilization. This change in mesocortical dopamine activity may be involved in the behavioral sensitization produced by psychomotor stimulant drugs, and some of the cognitive abnormalities (e.g. amphetamine psychosis) associated with stimulant drug abuse in humans.

Amphetamine↗

Asymmetry in the effects of unilateral 6-OHDA lesions on eating and drinking evoked by hypothalamic stimulation.

The present experiment investigated the effects of unilateral 6-hydroxydopamine lesions of the caudate nucleus and nucleus accumbens on eating and drinking evoked by electrical stimulation of the lateral hypothalamus (ESLH). Lesions were made on either the 'dominant' or 'non-dominant' hemisphere as defined by an amphetamine-rotation test. We report here that lesions of the 'dominant hemisphere' were significantly more effective in disrupting ESLH-evoked behavior as well as producing longer-lasting deficits in somatosensory responsiveness as measured by the 'tactile extinction test'.

Animals↗