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Effect of a single dose of levodopa on sexual response in men and women.

From animal research, there is ample evidence for a facilitating effect of dopamine on sexual behavior. In humans, little experimental research has been conducted on the inter-relation between dopamine and sexual response, even less so in women than in men. We investigated the effect of levodopa (100 mg) on sexual response in men and women following a double-blind, placebo-controlled crossover design. Genital and subjective sexual responses were measured as well as somatic motor system activity by means of Achilles tendon (T) reflex modulation. Genital and subjective sexual arousal were not affected by levodopa. However, the drug increased T reflex magnitude in response to sexual stimulation in men, but not in women. These results support the view that dopamine is involved in the energetic aspects of appetitive sexual behavior in men. The observed gender difference in the effect of levodopa is discussed in the perspective of possible dopamine-steroid interaction.

Adolescent↗

Sex differences in animal tests of anxiety.

To explore further the meaning of sexually dimorphic behavior in the open-field test, male and female hooded Lister rats were tested in three tests of anxiety. In the social interaction test, the social interaction scores of the female rats were lower and did not increase as readily following familiarization to the apparatus as those of the male rats. In the elevated plus-maze test, female rats showed a reduced aversion to the open arms compared to male rats; and in a modified Vogel conflict test, the punished licking rates of the female rats were lower than those of the male rats. It is concluded that the behavior of male and female rats differs in these tests, but that firm conclusions concerning sex differences in anxiety levels cannot be made because all three tests did not lead to predictions which were in the same direction. It is also suggested that cautious interpretation is necessary because these tests may measure different variables in male and female rats and they may not be valid tests of anxiety for female rats.

Animals↗

Focal attention in the frog: behavioral and physiological correlates.

The prey-catching response of frogs toward small moving objects can be facilitated by small movements of the same stimulus a few seconds earlier, even though initial movements seldom trigger the feeding response. This focal attention phenomenon may be related to the observation that one class of tectal unit continues to discharge for a few seconds following a brief stimulus motion. Together with anatomical data of other investigators, results of the present study suggest that self-exciting neural loops within the tectum mediate this type of selective attention.

Animals↗

Effects of cyproterone acetate on mating behavior, testicular morphology, testosterone level, and body temperature in male ferrets in comparison with normal and castrated males.

Effects of surgical castration of 60-day-old male ferrets are compared with the effects of a chemical castration with cyproterone acetate from postnatal day 60 until 360. Investigations were made on mating behavior, intermale aggression, testicular morphology, plasma testosterone level and body temperature. While controls show seasonal variations in all parameters, according to the annual cycle of sexual activity and inactivity, both, surgically and chemically castrated ferrets show throughout the year constant parameters similar to that of controls during the sexual inactive period. All investigated effects of a long-term treatment with cyproterone acetate are fully reversible within 2 years after termination of drug administration.

Animals↗

Neuropeptide Y administered chronically into the lateral ventricle profoundly inhibits both the gonadotropic and the somatotropic axis in intact adult female rats.

Neuropeptide Y (NPY) is known to be involved in the central regulation of appetite, sexual behavior, and reproductive functions. Whereas central administration of NPY strongly stimulates feeding in satiated animals, diet restriction produces overexpression of NPY in the arcuate and paraventricular nuclei that might reflect behavioral adaptations to shortage of food. Previous studies indicated that central administration of NPY resulted in controversial actions on LH secretion, either stimulatory or inhibitory. In order to analyze the chronic effect on pituitary function of centrally administered NPY, stainless steel cannulae were implanted in the right lateral ventricles of intact 45-day-old Sprague-Dawley female rats. Ten days later, Alzet osmotic minipumps filled with saline or different concentrations of NPY adjusted to deliver 3, 6, 12, or 18 micrograms/day were connected to the intracerebroventricular (icv) cannulae, implanted sc dorsally, and the effects of these treatments evaluated after 7 days. Chronic icv infusion of NPY produced the expected dose-related increase in food intake [25.3 +/- 0.8 g/day (basal) to 47.9 +/- 4.3 g/day (highest NPY dose)] and body wt gain (3.7 +/- 0.4-11.5 +/- 1.4 g/day). Basal insulinemia was highly correlated to the increase in food intake. This orexigenic action of NPY was accompanied by a drastic dose-related decrease in pituitary wt (14.0 +/- 0.5-8.3 +/- 0.3 mg), pituitary concentration of GnRH receptors, a known marker of the activity of the hypothalamo-pituitary gonadal axis (15.2 +/- 1.7-5.2 +/- 0.5 fmol/mg), and ovarian wt (84.0 +/- 4.2-49 +/- 6.7 mg). Ovulation was impaired in NPY-treated animals as seen by daily inspection of vaginal smears. A sharp dose-dependent decrease in plasma levels of insulin-like growth factor I was also observed [934 +/- 64 ng/ml (basal) to 385 +/- 26 ng/ml (highest NPY dose)], probably secondary to a decrease in GH secretion. Whereas these data confirm the central action of NPY to stimulate appetite in satiated animals, they provide the first demonstration that chronic icv administration of NPY unequivocally inhibits gonadotropin secretion and sexual function in intact female rats. These data also confirm that NPY can suppress GH secretion and other anabolic hormones. In conclusion, these results may indicate a physiological role of NPY as an integrator of different adaptive behaviors in periods of unfavorable metabolic conditions such as diet restriction, extending its action to inhibition of sexual functions and anabolic processes.

Animals↗

The GABA(A) receptor alpha1 subtype in the ventral pallidum regulates alcohol-seeking behaviors.

We investigated the potential role of the alpha1-containing GABA(A) receptor in regulating the reinforcing properties of alcohol. To accomplish this, we developed 3-propoxy-beta-carboline hydrochloride (3-PBC), a mixed agonist-antagonist benzodiazepine site ligand with binding selectivity at the alpha1 receptor. We then tested the capacity of 3-PBC to block alcohol-maintained responding in the ventral pallidum (VP), a novel alcohol reward substrate, which primarily expresses the alpha1-receptor isoform. Our results demonstrated that bilateral microinfusion of 3-PBC (0.5-40 microg) in the anterior and medial VP produced marked reductions in alcohol-maintained responding in a genetically selected rodent model of alcohol drinking. The VP infusions showed both neuroanatomical and reinforcer specificity because no effects were seen in sites dorsal to the VP (e.g., nucleus accumbens, caudate putamen). The saccharin-maintained responding was reduced only with the highest dose (40 microg). Parenteral injections of 3-PBC (1-20 mg/kg) also showed a similar selectivity on alcohol-maintained responding. Complementary in vitro studies revealed that 3-PBC exhibited a low partial agonist efficacy profile at recombinant diazepam-sensitive receptors (e.g., alpha1beta3gamma2, alpha2beta3gamma, and alpha3beta3gamma2). The selective suppression of 3-PBC on alcohol-maintained responding after central and parenteral administrations, together with its low-efficacy agonist profile, suggest that the reduction in alcohol-maintained behaviors was not attributable to a general suppression on consummatory behaviors. These results demonstrate that the alpha1-containing GABA(A) receptors in both the anterior and medial VP are important in regulating the reinforcing properties of alcohol. These receptors represent novel targets in the design and development of pharmacotherapies for alcohol-dependent subjects.

Alcoholism↗

Odor from rats tasting a signal of illness.

Rats running in a runway emit discriminable odors when encountering reward (R) or nonreward (N) goal events, and subsequent rats use these odors as discriminative stimuli to alter their approach speeds. In the present studies, a third goal event, aversively conditioned denatonium saccharide (A), was introduced. In Experiment 1, rats evidently emitted an odor when encountering the A goal event, because in the presence of this A odor subsequent conspecifics slowed their approach to the goal, much like their behavior on N trials. In Experiment 2, when N odor signaled R goal events and A odor signaled A goal events, rats approached quickly to N but slowly to A, indicating that they could discriminate N and A odors at the given concentrations. These studies indicate that rats emit an odor when confronted with a signal of impending illness and that this odor seems readily discriminable from R and N odors.

Animal Communication↗

Ghrelin, the same peptide for different functions: player or bystander?

Ghrelin is a recently discovered brain-gut peptide with two main physiological actions: growth hormone secretagogue activity and food intake inducer. Although its production is prevalently gastric, ghrelin is widely expressed in several tissues, where it might therefore act as a paracrine or autocrine factor. It is becoming clear that ghrelin is much more than a simple growth hormone secretagogue. In addition to its formerly envisaged role, ghrelin has other activities including stimulation of pituitary hormones secretion, modulation of food intake and control of energy metabolism, regulation of gastric and pancreatic activity, and cardiovascular and hemodynamic activities. In addition, modulation of cartilage and bone homeostasis, sleep and behavioral influences, and modulation of the immune system, as well as effects on cell proliferation, are other relevant actions of ghrelin. Thus, the peptide appears to be an important component of an integrated multifaceted regulatory system. In this review, we summarize several aspects of ghrelin biology and attempt to inform the reader with information regarding unexpected functions of this gastric peptide.

Acylation↗

Uncertainty about nest position influences systematic search strategies in desert ants.

Foraging desert ants return to their starting point, the nest, by means of path integration. If the path-integration vector has been run off but the nest has not yet been reached, the ants engage in systematic search behavior. This behavior results in a system of search loops of ever increasing size and finally leads to a search density profile peaking at the location where the path integration system has been reset to zero. In this study we investigate whether this systematic search behavior is adapted to the uncertainty resulting from the preceding foraging run. We show first that the longer the distances of the foraging excursions, the larger the errors occurring during path integration, and second that the ants adapt their systematic search strategy to their increasing uncertainty by extending their search pattern. Hence, the density of the systematic search pattern is correlated with the ants' confidence in their path integrator. This confidence decreases with increasing foraging distances.

Animals↗

Vasopressin and amphetamine, but not desglycinamide vasopressin, impair positively reinforced visual attention performance in rats.

Rats were trained to respond to the lever above which a light stimulus was briefly (0.5 s) presented at unpredictable times. Once the task had been learned to criterion, subjects were injected, intra-peritoneally, with arginine8-vasopressin, desglycinamide arginine8-vasopressin (AVP or DGAVP: 0, 5, 10 or 20 micrograms/kg) or D-amphetamine (AMP: 0, 0.75, 1.5 or 3 mg/kg) prior to test. Attention performance was assessed using several different indices, including percent corrects, sensitivity and responsivity measures derived from signal detection theory, the recently described probability of (response) repetition and switching, and latency to respond. AVP had a disruptive effect on percent corrects at the highest dose and increased response latencies, but DGAVP, which lacks pressor activity, had no behavioral effects. AMP markedly impaired most aspects of performance, and was the only substance to alter response strategies by inducing bias and repetitive responding. It is concluded that (1) contrary to some recent reports, visual attention is disrupted, not improved, by peripherally injected AVP, (2) these effects reflect pressor potency, (3) the disruption induced by AMP reflects response alterations, while the peptide probably affects more cognitive mechanisms, and (4) certain recently described indices are more sensitive than others in detecting response bias.

Animals↗

Social wasp (Hymenoptera: Vespidae) foraging behavior.

Social wasps (Hymenoptera: Vespidae) forage for water, pulp, carbohydrates, and animal protein. When hunting, social wasps are opportunistic generalists and use a variety of mechanisms to locate and choose prey. Individual foragers are influenced by past foraging experience and by the presence of other foragers on resources. A forager's ability to learn odors and landmarks, which direct its return to foraging sites, and to associate cues such as odor or leaf damage with resource availability provide the behavioral foundation for facultative specialization by individual foragers. Social wasps, by virtue of their behavior and numbers, have a large impact on other organisms by consuming them directly. Indirect effects such as disruption of prey and resource depletion may also be important. Community-level impacts are particularly apparent when wasps feed upon clumped prey vulnerable to depredation by returning foragers, or when species with large, long-lived colonies are introduced into island communities. A clearer understanding of these relationships may provide insight into impacts of generalist predators on the evolution of their prey.

Animals↗

[The behaviour of Lymnaea (Galba) truncatula Müler non- or infested ny Fasciola hepatica L. in the presence of predators (author's transl)].

Experimental study of behavior of Lymnaea truncatula in the presence of terrestrial or aquatic predators. The presence of predators disturbes the daily rhythm connected with amphibious conditions of non-infested snails. In half-immersed habitats, Zonitoides nitidus, terrestrial predator, produces a progressive immersion of surviving snails; but the latter run away to dry zones in drying habitats or with aquatic predators. The infested snails (phasis E 1) present the same reactions of behaviour in presence of predators, but the reactions are more limited.

Animals↗

Frontal brain asymmetry and reward responsiveness: a source-localization study.

The influence of approach and avoidance tendencies on affect, reasoning, and behavior has attracted substantial interest from researchers across various areas of psychology. Currently, frontal electroencephalographic (EEG) asymmetry in favor of left prefrontal regions is assumed to reflect the propensity to respond with approach-related tendencies. To test this hypothesis, we recorded resting EEG in 18 subjects, who separately performed a verbal memory task under three incentive conditions (neutral, reward, and punishment). Using a source-localization technique, we found that higher task-independent alpha2 (10.5-12 Hz) activity within left dorsolateral prefrontal and medial orbitofrontal regions was associated with stronger bias to respond to reward-related cues. Left prefrontal resting activity accounted for 54.8% of the variance in reward bias. These findings not only confirm that frontal EEG asymmetry modulates the propensity to engage in appetitively motivated behavior, but also provide anatomical details about the underlying brain systems.

Alpha Rhythm↗

Stimulus control of predatory behavior in the brown tree snake (Boiga irregularis). IV. Effect of mammalian blood.

Brown tree snakes (Boiga irregularis) from Guam were exposed to mammalian (Rattus norvegicus) blood on cotton-tipped applicators. Water and other control substances were similarly presented. All trials lasted 60 s, and the dependent variable was the number of tongue flicks emitted by the snake during the trial. In five experiments, B. irregularis responded with greater numbers of tongue flicks to blood than to control substances. This is the first study to reveal an ophidian response to internal chemicals of potential prey organisms.

Amniotic Fluid↗

Characteristics of perceptual grouping in rats.

Parametric analysis was made of the characteristics by which proximity and alignment serve as cues for perceptual grouping in rats. Rats were initially conditioned to discriminate a series of horizontal lines from vertical lines. Following training, rats were presented with test stimuli that consisted of bistable arrays of disjunct dots. A grouping cue (greater proximity, greater alignment, or both) was randomly assigned to either the horizontal or vertical orientation. The effectiveness of the cues was based on behavioral responses to the cued orientation. Results indicated that proximity served as a cue for perceptual grouping. The effectiveness of the proximity cue was less for rats than found previously in humans and, unlike humans, diminished with increased stimulus scale. Rats did not respond to alignment cues when used in isolation, although alignment facilitated grouping when used in conjunction with proximity cues. Diminished effectiveness of grouping cues likely reduces object recognition abilities, particularly for complex visual stimuli.

Animals↗

Anxiolytic effects of steroid hormones during the estrous cycle. Interactions with ethanol.

Behavioral differences in anxiety have been observed between both males and females and across the ovarian cycle in females. However, the data are not entirely consistent and the mechanisms of this potential interaction are largely unexplored. It appears that the GABA/BZ receptor complex is a site of action for steroids as well as for many anxiolytic drugs. Both natural steroids, such as progesterone and its metabolites, and synthetic steroids, such as alphaxalone, reduce anxiety-like behavior in rats. Alphaxolone also reverses the behavioral effects of potent anxiogenic agents in the conflict test of anxiety. Studies reported here found that ethanol administered to rats in different phases of the estrous cycle was more effective as an anxiolytic when hormone levels were high. The anticonflict response to chlordiazepoxide also was examined in ovariectomized and steroid-replaced female rats. Insight into the mechanisms and sites of action for these steroids can be gained from such an approach.

Alcohol Drinking↗

Effect of nimodipine on drinking behavior measured in the runway: comparison and interaction with (+/-)-amphetamine.

The aim of the present study was to evaluate the ability of the calcium channel blocker (CCE), nimodipine (NIM), to interact with (+/-)-amphetamine (AMPH) in modifying ingestive behavior. Rats performed in a water-reinforced runway paradigm with multiple trials. Water was available in sufficient quantity to produce satiety under control conditions as measured by a decline in response rate over the session. NIM and AMPH, given alone, did not produce significant effects on performance but produced behavioral changes when administered in combination. In particular, the combination of the highest doses (13 mg/kg i.p. NIM plus 0.56 mg/kg i.p. AMPH) initially depressed both running and drinking, whereas in later trials it increased running rate, without producing a parallel increase in water intake. These results suggest that NIM enhances AMPH-produced inhibition of drinking, whereas it first depresses and then enhances the AMPH-mediated runway performance, suggesting the rate dependency of this latter effect.

Amphetamine↗

Time, rate, and conditioning.

The authors draw together and develop previous timing models for a broad range of conditioning phenomena to reveal their common conceptual foundations: First, conditioning depends on the learning of the temporal intervals between events and the reciprocals of these intervals, the rates of event occurrence. Second, remembered intervals and rates translate into observed behavior through decision processes whose structure is adapted to noise in the decision variables. The noise and the uncertainties consequent on it have both subjective and objective origins. A third feature of these models is their timescale invariance, which the authors argue is a very important property evident in the available experimental data. This conceptual framework is similar to the psychophysical conceptual framework in which contemporary models of sensory processing are rooted. The authors contrast it with the associative conceptual framework.

Animals↗