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At least 487 records · Page 27Linked to original sources

Peripheral anosmia attenuates female-enhanced aggression in male rats.

It is well established that male rats with prior access to sexually active females show enhanced offensive aggression toward unfamiliar male intruders. The present study assessed the importance of the sense of smell for this facilitatory effect. It was found in 2 independent experiments that anosmia, induced peripherally by surgically removing the olfactory epithelium and cutting the olfactory nerves, reduced baseline levels of offensive aggression and significantly attenuated the female-enhanced aggression effect. It was also found that sexual performance of anosmic rats was context-dependent, in that it was more impaired in the homecage environment than in standard observation cages. In contrast to sham-operated males, the experimental animals showed no preference for estrous over anestrous females in a mate choice test. Anosmic males did not appear more fearful than controls, as assessed in a hyponeophagia test, but they showed less exploratory behavior (rearing and head-dipping) in the hole-board test, and less rearing activity in automated activity boxes.

Aggression↗

Responses to novelty stress in female F344 rats: effects of age and d-fenfluramine treatment.

To elucidate some of the mechanisms underlying the neuroendocrine and neurochemical changes associated with age in female rats, we administered the serotonin (5-HT) releaser and reuptake inhibitor, d-fenfluramine (d-FEN; 0.0 or 0.6 mg/kg/day, PO) for 30-38 days to young (4 month) and old (21 month) F-344 female rats. Animals were placed into a novel open field (OF) for 20 min before sacrifice. Control animals were sacrificed immediately upon removal from their home cage (HC). Old rats exhibited significantly (p < 0.05) less exploratory behavior and a smaller CORT response to OF than young animals. d-FEN treatment had no effect on plasma ACTH and CORT levels or exploratory behavior. The old HC rats had significantly (p < 0.05) higher plasma levels of prolactin (PRL) than the young HC rats. A stress induced increase in PRL secretion was observed in the old rats only, which was attenuated by d-FEN treatment. In the OF groups, both the young and old rats showed elevated medial frontal cortex (MFC) dopamine turnover (DOPAC/DA ratio), but only the young rats exhibited an elevation in norepinephrine (NE) turnover (MHPG/NE ratio). d-FEN treatment blocked the stress-induced increase in NE turnover in the young rats and the increase in DA turnover in the old rats. These data suggest that 5-HT activity could be involved in the age-related changes in the MFC catecholamine and PRL responses to stress in female rats.

Adrenocorticotropic Hormone↗

Evoked response and behavior in cats.

Electroencephalographic averaged evoked responses to flashing lights of four different intensities were recorded in ten cats and correlated with behavior. Animals showing a high degree of exploratory behavior, aggressiveness, and activity and little withdrawal showed relatively large increases in amplitude of the averaged evoked response with increases of stimulus intensity. Those showing opposite behavioral traits had small increases or decreases of average evoked response amplitude with increases of stimulus intensity. These findings are compatible with those reported for human subjects. Inference is made about a neurophysiological mechanism for stimulus intensity modulation.

Aggression↗

Differential effects of environmental enrichment on behavior and learning of male and female Ts65Dn mice, a model for Down syndrome.

We have assessed the effects of enriched environment (EE) upon behavioral and cognitive performances of partially trisomic Ts65Dn (TS) mice and their control (CO) littermates. Enriched environment was applied to pups for 7 weeks after weaning. Circadian spontaneous activity (actimetry), exploratory behavior (hole board), activity in the open field and spatial memory (Morris Water Maze, repeated acquisition and cued paradigms) were analyzed in 86 female and 75 male mice, starting 15 days after completing enrichment. For each gender, mice were distributed in non-enriched and enriched control and trisomic groups. Enriched environment reduced in trisomic females and enhanced in trisomic males' circadian activity. Exploratory behavior was increased by enrichment in all groups, regardless of gender or presence of trisomy. In the Morris Water Maze, a significant improvement of the spatial memory was observed in enriched-control females, but not in enriched-control male mice, as assessed by distances traveled. Performances in the four groups of control animals were also consistently and significantly better than those of matching trisomic mice. In the acquisition trials, enrichment improved performance in trisomic female animals, but deteriorated in trisomic male mice. In all groups, changes in escape latencies and distances induced by enrichment were accounted for by changes in the total time spent in the periphery of the pool, indicating changes in learning strategy. Working memory was the function more affected by enrichment. It is concluded that enriched environment induces behavioral and learning changes in trisomic mice, although gender plays a significant modulatory role.

Animals↗

Fluoxetine-induced anxiety and nervousness.

The aim of this study was to model fluoxetine-induced increase in anxiety appearing in the initial phase of the treatment with this antidepressant drug. The effects of acute administration of fluoxetine given alone and co-administered with a subthreshold dose of pentetrazole (PTZ), a proconvulsant agent with well recognized anxiogenic properties, were examined in the open field test of neophobia in rats. It was found that a single injection of fluoxetine at the dose of 5 and 10 mg/kg did not change motor and exploratory behavior of rats. Furthermore, fluoxetine (10.0 mg/kg) co-administered with a subthreshold dose of PTZ (10.0 mg/kg) had a strong and selective inhibitory influence on rat exploratory behavior. Pharmacokinetic study did not show any changes in brain concentration of PTZ in fluoxetine-pretreated animals. The central mechanism of the reported effects might involve stimulation of 5-HT2C receptors by fluoxetine in animals with PTZ-induced decrease in the threshold for emotional arousal. The present data describe a new animal model to study the central action of antidepressants reflecting dysphoric-like effects observed in the initial phase of the treatment.

Animals↗

Behavioral and motivational effects of immune-system activation.

Immune-system activity induces changes in animal behavior such as decreased food intake, decreased exploratory behavior, increased sleep, and impaired cognitive functioning. These changes are mediated by proinflammatory cytokines, and the administration of cytokines produces the same profile of behavior change as do infection and inflammation. Results demonstrating differential effects of immune-system activation depending on environmental contingencies and physiological states support the hypothesis that the behavioral effects of immune activity may be mediated by motivation. In this article, the author outlines the behavioral changes induced by immune-system activation and discusses evidence for a motivational analysis of immune-induced behavior change and the potential involvement of motivation in human sickness behavior.

Animals↗

Social influences on the acquisition of tool-using behaviors in tufted capuchin monkeys (Cebus apella).

To identify behaviors related to acquisition of tool-use in tufted capuchins (Cebus apella), we presented two tool-using tasks to two groups, extending findings by Westergaard and Fragaszy (1987) and Visalberghi (in press). Five Ss learned to use the tools in each task. The primary predictor of success was level of interest in the task. Observation of others at the apparatus did not facilitate exploratory behaviors or contact with the tools in the observers. Most animals performed exploratory behaviors more often when they were at the apparatus alone than when with another, whether or not the other was using a tool. Observers were quick to learn the relationship between another's activities and the appearance of food. We conclude that capuchins do not readily learn about instrumental relations by observation of others or imitate other's acts. Imitation probably plays no role in the spread of novel instrumental behaviors among monkeys.

Animals↗

Preweanling behavioral development in spontaneously hypertensive, borderline hypertensive, and Wistar-Kyoto normotensive rats.

Preweanling physical and behavioral development was studied in spontaneously hypertensive (SHR), borderline hypertensive (BHR), and Wistar-Kyoto normotensive (WKY) rat pups. Measures of physical development included body weight, onset of various morphological landmarks, and speed of surface righting. Behavioral tests assessed locomotor development, exploratory behavior, and cliff avoidance in pups of the 3 groups. On all measures employed, SHR pups exhibited a delay in physical maturation compared to age-matched BHR and WKY pups. Results from the locomotor development test revealed that young WKY pups (ages 1-7 days) spent more time locomoting than SHR pups, with BHR times being intermediate. In contrast, older SHR pups (ages 17-30 days) displayed greater activity in an exploratory maze than WKY pups, with BHR values again intermediate. Finally, SHR pups were more behaviorally reactive in the cliff avoidance task compared to BHR and WKY pups. These group differences may be useful in understanding the development of genetic hypertension and may serve as early behavioral markers of a predisposition to cardiovascular disease.

Animals↗

[The dynamics of the integral parameters of orienting-exploratory and searching behaviors in rats].

Multiple five-day testing of rats in the open field and elevated plus-maze revealed a regressive dynamics of the integral characteristics of the exploratory behavior. The integral quantitative indices of searching activity in Henderson's test of extrapolation deliverance (modified by N. A. Bondarenko) and in active shock avoidance in N. R. Grigor'ev's problem box, on the contrary, displayed a progressive dynamics, like quantitative characteristics of cognitive activity. We established the differences between the determinants and control mechanisms of exploratory behavior and searching activity. This allowed us to differentiate these forms of behavior as different functional states.

Animals↗

Anti-stress action of a corticotropin-releasing factor antagonist on behavioral reactivity to stressors of varying type and intensity.

Central administration of a Corticotropin-Releasing Factor (CRF) antagonist is well documented to attenuate a variety of behavioral responses to several distinct stressors; however, it is not yet clear whether the activation of CRF neurons is dependent on the type or intensity of the experimental stressor, or rather on the particular behavioral response to stress under study. To test the generality of the stress-protective effect of the CRF antagonist, alpha-helical CRF9-41, (1, 5 or 25 micrograms intracerebroventricularly), the present experiments employed a sensitive index of anxiogenic-like behavior by measuring suppression in exploration on the elevated plus-maze following exposure to social, swim, or restraint stressors. A 1 but not 5 or 25 micrograms dose of the CRF antagonist administered just prior to social, swim, or restraint stress reversed the stress-induced inhibition of exploratory behavior. Chlordiazepoxide and the steroid anesthetic, alphaxalone, also attenuated the anxiogenic-like effect of restraint stress and elevated the baseline exploratory behavior of nonstressed control groups. Although the stressors produced a graded secretion of adrenocorticotropin (ACTH) with the ranking restraint > swim > social, the relative amplitude of behavioral reactivity to social, swim, and restraint stress was comparable. The relative efficacy of the CRF antagonist to reverse the stressor effects was also comparable. These results suggest that antagonism of activated brain CRF systems attenuates the behavioral response to stress regardless of the type or intensity of the stressor as measured by ACTH secretion.

Adrenocorticotropic Hormone↗

Effects of lithium on behavioral reactivity: relation to increases in brain cholinergic activity.

Suppression of behavior accompanying increased ACh synthesis in the brain might account, at least in part, for the preferred use of lithium in antimanic therapy. Three experiments using rats as subjects were designed to test hypotheses about relationships among lithium, ACh synthesis and behavior. Experiment 1 established that hyporeactivity and greater exploratory behavior occurred in animals under LiCl treatment conditions shown to stimulate cholinergic activity in brain. Experiment 2 provided evidence of significant differences between controls and animals on the LiCl diet. Groups tested after 1 or 2 days of LiCl showed the decrease in reactivity to successive presentations of a loud auditory stimulus which characterizes the normal process of habituation. Groups tested after 5 or 10 days of liCl showed no evidence of habituation, their reactivity throughout the period of stimulation being at a level attained by the other groups when habituation reached its final asymptote. Experiment 3 established that effects of LiCl treatment were not manifested in all aspects of behavior: there was no evidence of impairment of motor activity or coordination; no analgesia; no impairment in sensory input nor in acquisition of new behaviors. The effect of the LiCl treatment was not complete inhibition but instead suppression of reactivity to environmental stimulation under conditions shown previously to increase cholinergic activity in brain.

Acetylcholine↗

Molar characteristics of exploratory and investigatory behavior in the rat (Rattus norvegicus).

Despite clear functional significance, understanding of exploratory behavior is hampered by the lack of a careful descriptive account. This article reports extensive descriptions of rats' behavior in a stable environment and after environmental change. For 7 nights, 12 male Long-Evans rats (Rattus norvegicus) were given access to a large arena. Subjects budgeted session time differently across days, spending less time in the home cage and more time interacting with objects. Locomotion and general activities were typically unchanged over days. Several measures of object interaction showed systematic changes across sessions for the nonmanipulable object but not for the manipulable object. Finally, exploratory and spatial locomotor patterns were modified in response to the addition or removal of objects. These results indicate that exploratory and investigatory behaviors are lawful and orderly expressions of spontaneous behavioral organization.

Animals↗

Osteoporosis health beliefs and self-care behaviors: an exploratory investigation.

OBJECTIVES: (1) To determine whether women could be segmented into meaningful subgroups with similar profiles of osteoporosis health beliefs; (2) to explore associations among osteoporosis belief profiles and calcium/vitamin D and soy supplement use. The associations between group membership and three other self-care behaviors (cigarette smoking, weight-bearing exercise, and limiting alcohol intake) that may influence bone health also were explored. DESIGN: Cross-sectional study. SETTING: Minnesota. PARTICIPANTS: 990 community-dwelling women aged 45 and older living in Minnesota. INTERVENTIONS: Mailed survey. MAIN OUTCOME MEASURES: Measures of osteoporosis health beliefs and proportions of respondents using calcium/vitamin D supplements, soy-containing products, smoking cigarettes, exercising fewer than three times weekly, and drinking alcohol more than three times weekly. RESULTS: Cluster analysis revealed three distinct subgroups of respondents. Members of the first believed they were susceptible to osteoporosis and perceived many benefits and few barriers to using calcium or soy supplements. Women comprising the second group believed they were susceptible to osteoporosis and that its consequences were serious, but also perceived significant barriers and few benefits associated with calcium or soy supplements. Members of the third group perceived a lack of susceptibility to osteoporosis, strong general health beliefs, and had few opinions regarding calcium or soy supplement use. Members of group 1 were most likely to use calcium/vitamin D supplements. Women comprising groups 1 and 3 were more likely than those in group 2 to use soy supplements. CONCLUSION: Women can be segmented into groups based upon osteoporosis belief profiles. These profiles are associated significantly with calcium and soy supplement use, as well as other self-care behaviors that may have an effect on bone health. Pharmacists could use this information to tailor interventions in this population.

Aged↗

Does user satisfaction relate to adoption behavior?: an exploratory analysis using CPRS implementation.

User satisfaction is commonly assessed in evaluations of information systems as a proxy for user adoption. However few studies actually report directly assessing the relationship between the two constructs. In this study the relationship between four user satisfaction measures and five adoption behaviors were explored in the context of the implementation of the Veteran's Health Administration Computerized Patient Record System 1.0. Findings suggest that the relationship is modest and depends on the measurement system used. Specifically, direct reports of affect and judgements of specific task efficacy related to behavior more often than usability and a general user satisfaction instrument.

Attitude to Computers↗

Characterizing functional hippocampal pathways in a brain-based device as it solves a spatial memory task.

Analyzing neural dynamics underlying complex behavior is a major challenge in systems neurobiology. To meet this challenge through computational neuroscience, we have constructed a brain-based device (Darwin X) that interacts with a real environment, and whose behavior is guided by a simulated nervous system incorporating detailed aspects of the anatomy and physiology of the hippocampus and its surrounding regions. Darwin X integrates cues from its environment to solve a spatial memory task. Place-specific units, similar to place cells in the rodent, emerged by integrating visual and self-movement cues during exploration without prior assumptions in the model about environmental inputs. Because synthetic neural modeling using brain-based devices allows recording from all elements of the simulated nervous system during behavior, we were able to identify different functional hippocampal pathways. We did this by tracing back from reference neuronal units in the CA1 region of the simulated hippocampus to all of the synaptically connected units that were coactive during a particular exploratory behavior. Our analysis identified a number of different functional pathways within the simulated hippocampus that incorporate either the perforant path or the trisynaptic loop. Place fields, which were activated by the trisynaptic circuit, tended to be more selective and informative. However, place units that were activated by the perforant path were prevalent in the model and were crucial for generating appropriate exploratory behavior. Thus, in the model, different functional pathways influence place field activity and, hence, behavior during navigation.

Animals↗

Quantitative characterization and classification of leech behavior.

This paper describes an automatic system for the analysis and classification of leech behavior. Three colored beads were attached to the dorsal side of a free moving or pinned leech, and color CCD camera images were taken of the animal. The leech was restrained to moving in a small tank or petri dish, where the water level can be varied. An automatic system based on color processing tracked the colored beads over time, allowing real-time monitoring of the leech motion for several hours. At the end of each experimental session, six time series (2 for each bead) describing the leech body motion were obtained. A statistical analysis based on the speed and frequency content of bead motion indicated the existence of several stereotypical patterns of motion, corresponding to different leech behaviors. The identified patterns corresponded to swimming, pseudo-swimming, crawling, exploratory behavior, stationary states, abrupt movements, and combinations of these behaviors. The automatic characterization of leech behavior demonstrated here represents an important step toward understanding leech behavior and its properties. This method can be used to characterize the behavior of other invertebrates and also for some small vertebrates.

Animals↗

[The role of corticotropin-releasing hormone in alteration of adaptive behavior of the active and passive rats after inescapable stress].

Effects of corticotropin-releasing hormone (CRH) on the formation of post-stress psychopathology were studied using of two genetic strains KHA (Koltushi high Avoidance) and KLA (Koltushi low Avoidance) selected on high or low acquisition of active avoidance, respectively. These strains are characterized by higher (KHA) and lower (KLA) behavioral activity in open field and adopted, respectively, active and passive strategies in stressful conditions. A widely used experimental paradigm of learned helplessness where behavioral depression was produced by inescapable uncontrollable footshock has been applied in our study. KHA rats demonstrated psychopathology already 1st day following exsposure to the stress faktor, and the depression progressed by the 5th and 10th post-stress days. Intranasal application of CRH facilitated the development of depression in active rats. In KLA rats, which originally displayed low exploratory activity associated with high anxiety, the inescapable stress at first enhanced the exploratory behavior but 10 days later these rats displayed a progressive decline of exploration and locomotion. Initially, the application of CRH also enhanced the exploratory behavior in these rats, but to 10th post-stress day promoted development of depressive state. The results suggest that CRH in different ways affects the formation of depressive state in rats with different strategies of adaptive behavior.

Adaptation, Psychological↗

TMT, a predator odor, elevates mesoprefrontal dopamine metabolic activity and disrupts short-term working memory in the rat.

Working memory has been proposed to require the proper functioning of the medial prefrontal cortex and its dopaminergic innervation. The dopaminergic input to the medial prefrontal cortex has been demonstrated to be sensitive to physical and psychological stress. In this report, we demonstrate that a brief exposure to 2, 5-dihydro-2,4,5-trimethylthiazoline (TMT), an odor derived from a predator of the rat, the fox, resulted in elevated dopamine metabolism in the medial prefrontal cortex and elevated serum corticosterone. We tested the effects of this olfactory stress on working memory using a spontaneous, delayed, non-matching-to-sample task using object recognition methods. Rats were exposed to one set of objects and, after a delay of 1, 15 or 60 min, later demonstrated a robust working memory of the familiar object compared to a novel object. When rats were exposed to TMT during the 15-min delay, working memory was disrupted without altering exploratory behavior. We conclude from these studies that (1) TMT selectively activates mesoprefrontal dopamine neurons, (2) TMT exposure can disrupt working memory and (3) this disruption in working memory is not due to an overall suppression of exploratory behavior but may involve altered mesoprefrontal dopaminergic activity.

Animals↗