Search PubMedSearch

Biomedical subjects

K E Hood

Publications and source records attributed to K E Hood.

5 recordsLinked to original sources

Increased GABAA-dependent chloride uptake in mice selectively bred for low aggressive behavior.

Selective breeding for aggressive behavior alters GABA-dependent chloride uptake and behavioral response to benzodiazepine treatment. Pharmacological and biochemical studies examined subjects from three lines of adult male ICR mice selectively bred for either high levels or low levels of aggressive behavior, as well as unselected controls. Selective breeding produced two lines of behaviorally distinct males. During 5-min dyadic confrontations with an outbred stimulus animal, untreated low-aggressive mice spent more time in walking, rearing, and social interaction than untreated high-aggressive mice. The three lines also showed different responsiveness to the aggression increasing and decreasing effects as well as the sedative effects of benzodiazepine treatment. High doses of chlordiazepoxide (17, 30 mg/kg) reduced motor behaviors (walk, rear and groom) in the low-aggressive line without altering these behaviors in the high aggressive line. In the high-aggressive line, the same doses of chlordiazepoxide (17, 30 mg/kg) produced a behavioral shift; aggressive behaviors were reduced while social behaviors increased to levels similar to the untreated low-aggressive line. In contrast, only the unselected line pursued and threatened more after a low dose of chlordiazepoxide (3 mg/kg). The three lines also showed alterations at the GABAA-benzodiazepine receptor complex. Specific uptake of [3H]Ro-15-1788 was increased in cerebral cortex, hypothalamus and hippocampus in the low-aggressive line, and was reduced in these areas in high-aggressive line when compared with unselected controls. Similarly, GABA-dependent chloride uptake in cortical synaptoneurosomes was augmented in low-aggressive mice and decreased in high-aggressive mice when compared to unselected controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Aggression

Development, microevolution, and social behavior.

The central questions of social development--from the roots of mother-infant attachment to the plasticity of aggressive behavior--pivot on the relations between genetic and ontogenetic sources of variance. It is proposed that (a) developmental, experiential, and microevolutionary processes typically collaborate, rather than compete, in achieving social adaptation; (b) social behavior patterns are mostly closed to modification in the course of development and across generations, but avenues of vulnerability exist in ontogeny and microevolution for dynamic, rapid, and reversible changes in key features; (c) a general avenue for change is delay or acceleration in the developmental onset of one or more features of the behavior pattern, which in turn modifies the functions and properties of the adaptive configuration; and (d) the features of social behavior that are open to rapid change in ontogeny should be open as well to rapid changes in microevolution, although different underlying processes may be involved. Empirical findings from the investigation of aggressive interactions are used to illustrate this proposal on the dual genesis and coincident adaptation of social behaviors.

Animals

A developmental-genetic analysis of aggressive behavior in mice (Mus musculus): III. Behavioral mediation by heightened reactivity or immobility?

This research was designed to investigate development and behavioral mediation in lines of ICR mice that have been selectively bred for aggressive behavior. General behavioral reactivity and behavioral immobility have been implicated as potential mediators by prior analyses of preattack interactions. To evaluate the separate roles of these dispositions, the emergence of attacks in genetically selected lines was tracked for 11 years by three levels of analysis: over successive generations, over development, and over dyadic interactions. Convergent outcomes were observed in all three levels with respect to two findings: (a) Robust line differences were obtained in attack behaviors, and (b) strong associations were found between line differences in attacks and line differences in behavioral immobility. Conversely, all three levels of analysis indicated a weak and inconsistent association between line differences in attacks and measures of social and nonsocial reactivity.

Aggression

Women and their husbands: mood and arousal fluctuations across the menstrual cycle and days of the week.

This study examined the relationship between biological (menstrual cycle) and social-contextual (day of the week) factors and psychological and physical events among nine women and their spouses. Employing P-technique factor analysis to identify consistent patterns in single-subject data over 90 days of reporting, two factors emerged: Negative Mood and Arousal. When these factors were compared over five phases of each woman's menstrual cycle, the only significant finding was that men's Arousal scores were significantly greater during their wives' menses phase compared to their follicular phase. Negative Moods decreased on weekends for both males and females, and females also showed a decline in Arousal on the weekend. The finding that our social factor (day of the week) accounted for more variability in subjects' reports than did our biological factor (the menstrual cycle) emphasizes the importance of considering biological events in the context of social structures and belief systems.

Adult