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At least 19 recordsLinked to original sources

Brain serotonergic neurons: their role in a form of dominance-subordination behavior in rats.

The present study evaluated the possible role of brain serotonergic neurons in dominant-subordinate (D-S) behavior in Wistar male rats competing for water. Treatment of D rat with drugs that stimulate serotonergic neurons of receptors (tryptophan, 5-hydroxytryptophan, quipazine, femoxetine) resulted in D-S reversal. A similar effect was observed when the S animal was treated with drugs that blocked serotonin synthesis (p-chlorophenylalanine) or receptors (metergoline). The D-S relationship was unchanged when serotonergic drugs were given to the S subject (tryptophan or quipazine) or when D animal received p-chlorophenylalanine. None of the drugs tested influence the water intake and the general activity of rats. Rats with lesioned midbrain raphe nuclei were always dominant when paired with sham lesioned counterparts. Our results indicate that one form of dominance behavior can be inversely related to the activity of brain 5-HT system.

Animals

The effects of lesions of the locus coeruleus and treatment with drugs affecting brain noradrenergic neurotransmission on dominant-subordinate behavior in rats competing for water.

The effect of lesions of the locus coeruleus (LC) and drugs either blocking or stimulating noradrenergic (NE) receptors on dominance behavior in Wistar rats was studied. Rats with destroyed LC displayed submissive behavior when paired with sham-operated animals. Treatment of dominant animals with clonidine, prazosin and propranolol markedly reduced dominance whilst treatment of submissive rats with either yohimbine or salbutamol transformed the submissive (subordinate) animal to dominant type. The role of brain NE neurons in dominant behavior in water-competition paradigm is discussed.

Albuterol

[Effects of leader behavior on subordinate's upward influence tactics and relationship between subordinate and leader].

This study aimed at examining the upward influence tactics employed by subordinates toward their immediate superiors (the leader) in relation to the cohesiveness of a given group, leadership behavior on the part of the leader, and leadership behavior on the part of the group's top leader. The survey involved a sample of 120 nurses. Each nurse was asked to complete a questionnaire, which was prepared on the basis of an earlier preliminary study. The results of the group survey were as follows: (1) A nurse (the subordinate) generally gave play to the tactics of rationality and enthusiasm vis-a-vis a democratically inclined head nurse (the immediate superior); (2) coalition behavior was widely practiced in groups that were highly cohesive, while higher authority was employed vis-a-vis a democratically inclined top head nurse (the top leader); (3) the above-mentioned actions employing tactics of influence [(1) to (2)] had, in turn, an effect on the degree of response on the part of the head nurse (the leader) and on the ex post factor relationship between the two parties (nurse and head nurse).

Dominance-Subordination

Role of anxiety in subordinate male mice sexual behavior.

Dominant and subordinate male mice behave differently when exposed to a female, with subordinates showing impairment of their sexual performance in the presence of the male antagonist. In the present study, we investigate whether these rank-related behavioral differences can be modified by an anxiolytic treatment. In a first experiment, diazepam (0.25 mg/kg) improves the performance of subordinate mice toward the female, as shown by the increase of proxemic behavior, anogenital sniffing, and social grooming of the female. Social grooming of the female is the only behavior modified by a higher dose of the anxiolytic drug (0.5 mg/kg). A second experiment, in which dominant and isolated mice are subjected to the same experimental procedure, demonstrates that social behavior of these two classes of males is not affected by the pharmacological treatment. The results are discussed in terms of the advantages of using subordinate males in such a sexual context as a model for the study of anxiolytic drugs.

Animals

Hand-rearing baboons for laboratory investigations.

To conduct laboratory studies in unsedated animals that were similar anatomically and physiologically to man, five full term baboons (four Papio cynocephalus anubis, one Papio cynocephalus cynocephalus) were hand-reared. These infants were used as unsedated animal models in short-term lung clearance studies conducted from birth to 2 years of age. The hand-rearing techniques described here encouraged the formation of an infant-human rearer bond that permitted us to control the level of expressed aggressive behavior as the infant matured. These techniques resulted in baboons which displayed subordinate behavior, showed positive reception to human contact (without evidence of negative stereotypic behavioral anomalies) and remained cooperative subjects for our investigations of short-term pulmonary clearance. The baboons generally were above average in weight in comparison to conspecifically-reared baboons of similar age, sex and species. Representative lung retention curves presented on one baboon demonstrate the feasibility of lung clearance studies in these hand-reared animals. Due to its suitability for unsedated studies, this baboon model may be considered for other types of laboratory investigations.

Aging

Does intermale mounting function as a dominance demonstration in rhesus monkeys?

The relationship between dominance and intermale mounting was analyzed in two troops of captive rhesus monkeys (Macaca mulatta). The data did not support the assumption that mounting among males functions as a dominance demonstration as described in the literature because mounting commonly (63% of 65 dyads) occurred in a bidirectional fashion, and mounting not only was performed by dominant males but also was shown with regularity (36% of 521 cases) by subordinate males. Intermale mounting was often (37% of 521 cases) associated with amicable interactions--commonly preceding them--but it was only rarely (2%) associated with dominance-subordination behaviors. It was concluded that intermale mounting may serve as a socially cohesive behavior in rhesus monkeys by promoting nonagonistic contact.

Animals

Organization of brainstem behavioral systems.

A review of recent literature suggests that the brainstem may play a more fundamental role in the elaboration of adaptive behaviors than has often been assumed. This view is indicated by current reports documenting the substantial behavioral repertoire of decerebrate animals and by the recent findings that electrical stimulation of localized areas in all major levels of the brainstem can induce complex and coordinated behaviors, including eating, grooming and attack. Indeed, behaviors elicited from sites in the caudal brainstem evidence unexpected goal specificity and stimulus control over response topography. Additional neuroanatomical and behavioral data are reviewed which further implicate caudal brainstem networks in process of reward and aversion. From these and other findings it is argued that integrating mechanisms for the expression of many aspects of species-characteristic behaviors are intrinsic to the brainstem. In line with this view, rostral hypothalamic-limbic mechanisms, while perhaps contributing refinement to the integration of behaviors, may best be viewed as phylogenetically newer control mechanisms making the expression of species-characteristic behaviors subordinate to additional class of exteroceptive and interoceptive stimuli.

Aggression

[The effects of planning leadership behavior on the subordinates' person perception].

According to the two factor theory of leadership, leaders were instructed to behave both gently and strictly. However, how can be achieved such behavior? Here, a solution to this problem is suggested by an analysis of subordinates' person perception. Yamada (1987) analyzed the data of PM leadership surveys, and found three factors; Maintenance [M.] (corresponds to "Consideration" in the Ohio Study) Planning (Initiating Structure), and Pressure (Production Emphasis). It was found that High Planning supported the independence of M. from Pressure. The purpose of this experimental study was to test the effect of Planning behavior on cognitive structure. Sixty-four female subjects performed a maze task using computer simulation. In the high Planning condition, the leader displayed direction signs, whereas no sign was displayed in the low Planning condition. Each condition was further subdivided into two Pressure conditions (High or low) by the amount of linguistic behavior. The result of the survey data was supported. M. cognition decreased by increasing Pressure cognition in the low Planning condition, but no correlation was found between M. and Pressure in the High Planning condition.

Adult

Body tactile stimulation intensifies appeasement behavior in a cichlid fish.

Social touch, provided by body tactile stimulation (TS), is known to trigger appeasement behavior and social stability in mammals. Recent studies have shown that TS also plays a role in regulating social interactions in fish by reducing aggression between individuals. While this effect may stem from decreased aggression in dominants, the potential contribution of increased appeasement behavior in subordinates has been overlooked. Here, we investigated whether TS facilitates the onset of appeasement behavior in the cichlid fish Geophagus iporangensis, a species that exhibits clear dominance-subordination relationships. Isolated individuals were assigned to one of two treatments, either with TS (provided by plastic sticks lined with silicone bristles) or without it for 21 days. Then, each fish was paired with a socially experienced dominant individual to enable rapid hierarchy resolution. Initial appeasement scores did not differ between treatments. However, individuals who experienced TS exhibited significantly higher appeasement scores during the final 5 min of the contest than the control group. Additionally, fish under TS showed an increase in the appeasement score after 10 min of agonistic interaction, while it did not change in the treatment without TS. Overall, this study provides the first evidence that TS can mitigate aggressive interactions by intensifying subordinates' appeasement behavior, thereby affecting social dynamics similarly to mammals.

aggression

Naltrexone blocks amphetamine-induced hyperactivity, but not disruption of social and agonistic behavior in mice and squirrel monkeys.

Significant anatomical overlap of opioid and dopamine receptors as well as reciprocity of control over synthesis, metabolism, and release of opioid peptides and dopamine in brain suggests functional interactions between the two systems. In the first of two studies, the behavioral effects of amphetamine and naltrexone alone, and in combination were studied in established groups of socially interacting squirrel monkeys. Naltrexone (0.1-10.0 mg/kg, IM) increased locomotion and marking behavior in subordinate monkeys. The frequency of social initiatives directed at treated subordinate monkeys by untreated members of the group was also increased. The behavior of dominant monkeys was relatively unaffected, except at the highest dose when autonomic distress was also evident. The frequency of walking bouts by both dominant and subordinate monkeys was increased by amphetamine (0.1-0.6 mg/kg, IM), and the social behavior of dominant monkeys was disrupted by drug treatment. Naltrexone (0.1 mg/kg, IM) significantly antagonized amphetamine's effects on motor behavior, and enhanced or did not affect amphetamine's effects on social behavior. In a second study, the interaction of amphetamine (0.63-10.0 mg/kg, IP) and naltrexone (0.1-10.0 mg/kg, IP) on the behavior of resident male mice during confrontations with a male intruder was studied. Naltrexone selectively reduced the frequency of attack at the highest dose tested. Amphetamine increased locomotor activity and decreased attack and threat behavior in resident mice. A low dose of naltrexone (1.0 mg/kg, IP) blocked amphetamine's effects on locomotion and enhanced the disruption of aggressive behavior. The amphetamine-naltrexone interaction on locomotor activity in mice and monkeys is consistent with opioid receptor modulation of dopamine mediated functions.(ABSTRACT TRUNCATED AT 250 WORDS)

Aggression

Anabolic-androgenic steroids: effects on social behavior and baseline heart rate.

Examined the effects of anabolic-androgenic steroids (AS) on behavior, baseline heart rate (HR), and stress-induced HR responses. Twenty-four cynomolgus monkeys were assigned to four mixed social groups of both AS and sham control animals. For 2 months, AS-treated monkeys received biweekly injections of testosterone, and, on an identical schedule, the control animals were injected with a sham solution. Behavioral data revealed that AS disrupted the social milieu such that all dominant animals exhibited increases in dominant behavior and subordinates manifested increased submission. These changes returned to pretest levels 8 weeks following termination of the drug intervention. Affiliative behaviors decreased on the part of all animals as a function of AS and, with the exception of play behavior, failed to return to pretest levels after the 8-week period of recovery. AS created an increase in baseline HR, particularly among the dominant animals. Interestingly, the subordinate AS animals experienced a decrease in baseline HR response. AS had no apparent influence on stress-induced HR reactivity.

Agonistic Behavior