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Individual variation in the neural timing of infanticide and parental behavior in male house mice.

In male house mice (Mus domesticus and M. musculus), the act of coital ejaculation provides a fail-safe neural signal for timing the birth of their offspring. A unique aspect of this phenomenon is the extraordinary latency that can occur between the stimulus (ejaculation) and its adaptive neural response (male mice cease killing pups and behave parentally toward them). Thus the inhibition of infanticide is routinely time-delayed for many days after mating. In the absence of mating, cohabitation with a female will not inhibit infanticide in CF-1 stock males (M. domesticus), whereas the birth of pups in the male's home cage will inhibit infanticide. But with regard to the ejaculatory phenomenon, which also includes the spontaneous reemergence of infanticide 50-60 days after mating, this entire behavioral cycle toward pups can occur in the total absence of regular time cues from a light/dark cycle following ejaculation. However, exposure to photoperiodic (L:D 12:12) or constant light (LL) accelerated the transition time from infanticide to parenting after ejaculation, while in constant dark (DD), the transition time to parenting was significantly prolonged. The time interval between ejaculation and the inhibition of infanticide, which varied among individuals first mated at 6 months of age, was repeatable when the same males were remated at 9 months of age; however, when males were again mated at 18 months of age, the time interval between ejaculation and parenting was dramatically prolonged. In general, coital ejaculation triggers a neural timing system that cannot be explained by any presently known physiological mechanism. Our results do suggest, however, that the neural timing variation observed among individuals is influenced by sex steroid exposure during late fetal development.

Animals

Time and sex in the male mouse: temporal regulation of infanticide and parental behavior.

Infanticide is a violent but successful reproductive strategy found in many mammals, particularly rodents. In male house mice (Mus domesticus and M. musculus), the act of ejaculation provides a reliable neural signal for timing the birth of their offspring. However, a unique chronobiological aspect of this phenomenon is the extraordinary temporal latency that can occur between the stimulus (coital ejaculation) and its adaptive neural response (male mice cease killing pups and behave parentally toward them instead). Specifically, the inhibition of infanticide is often time delayed for many days after a male ejaculates, but virtually always occurs before or around the time his own sired offspring would be born 18-20 days later. Furthermore, infanticide spontaneously reemerges 50-60 days after mating. In CF-1 stock male mice this entire behavioral sequence is synchronized with the female's reproductive cycle, and occurs even in the total absence of social cues or changes in pituitary or gonadal hormones after mating. When entrained and mated at 22 h (light:dark 11:11) or 27 h (light:dark 13.5:13.5) T-cycles, photoperiodic cues appeared to synchronize this dramatic shift in behavior, because a sudden transition from pup killing to parenting was matched with the number of light/dark cycles experienced after ejaculation rather than the amount of real time experienced, suggesting a circadian timing link. Housing in constant light accelerated the postmating transition to parenting, whereas constant dark significantly delayed the transition to parenting, but still occurred by 3 weeks after mating. Most males tend to oscillate between infanticide and parental behavior for several days before locking in to constant parenting, regardless of lighting conditions. Variation in the time delay between ejaculation and the inhibition of infanticide was consistent within young individuals (< 10 months of age), but in older males (> 18 months of age) the time interval between ejaculation and parenting was significantly prolonged and attenuated. Another unique aspect of this phenomenon is that variation among individuals in their timing and response to light cues is correlated with phenotypic variation in sex steroid exposure during late fetal development. So far, no simple physiological explanation can account for the neural mechanism triggered by ejaculation that coordinates these time-delayed behavioral changes toward pups.

Animals

Fluprazine inhibits intermale attack and infanticide, but not predation, in male mice.

The effects of fluprazine (1, 2, and 5 mg/kg) on intermale attack, infanticide and predation (insect larvae) by male mice were assessed. Fluprazine dose-dependently inhibited attacks by males on conspecific intruders and genetically unrelated mouse pups. However, predatory attack on insect larvae was unaltered by any dose of the compound. Thus the neurohumoral substrates underlying intraspecific attack and pup killing may be similar to each other, but different from those modulating predatory attack and prey killing. These data support the hypothesis that male infanticide is a form of intraspecific aggression and not an expression of intraspecific predation (cannibalism). Drug-induced stimulation of paternal behavior in some previously infanticidal males suggests that serotonergic substrates may also be involved in the natural mechanisms which mediate the inhibition of infanticide and promote parental care.

Aggression

Selectivity in paternal and infanticidal responses by male mice: effects of relatedness, location, and previous sexual partners.

Male mice tend to be infanticidal to unrelated infants but parental to their own offspring. The present study examines three hypotheses that might explain this apparent discrimination. There was no evidence of selective infanticide toward infants encountered for the first time on the basis of kinship, location, or cues associated with previous sexual partners. However, males tended to direct more paternal responses toward their own unfamiliar infants than toward unrelated infants, infants encountered in the male's home cage than those in the cage of another male, and when cues associated with a previous sexual partner were present. Data suggested that the responses of females to male intruders might influence the responses of those males. It was concluded that the infanticidal responses of male mice are mediated by a particular state of the male but that males in a noninfanticidal state may vary their paternal responsiveness on the basis of direct and indirect cues concerning relatedness.

Animals

Infanticide: new medical considerations.

A relationship between disturbed hormonal and metabolic equilibrium during puerperium and ensuing mental and emotional imbalance has been postulated for a long time. In England and Wales this consideration has resulted in the crime of infanticide being reduced from murder to manslaughter. Recent data indicate that the therapeutic and even routine administration by physicians of powerful vasoactive agents during puerperium, and particularly that of ergot derivatives, is probably the most frequent factor leading to 'pure puerperal psychosis'. It is proposed, therefore, that this psychosis is in fact, in most instances, a form of ergotism and its signs and symptoms and consequences, including coincidental infanticide, themselves are actually manifestations of acute ergot poisoning. It is suggested that based on this information a thorough re-evaluation of the relevant legal concepts is necessary.

Ergotism

Maintenance and decline of the suppression of infanticide in mother rats.

Virgin female rats kill foster neonates, whereas newly parturient mothers do not. We demonstrated previously that this tendency to kill is suppressed shortly prepartum, presumably by physiological factors. In this study, we show that a) suppression of infanticide is maintained through the first two weeks of lactation; b) the mothers that do not kill foster neonates are not necessarily the same mothers that respond maternally toward older foster pups, and those that kill neonates are not necessarily the same ones that are nonmaternal to older pups, the two behaviors being somewhat independent; and c) some virgins can be induced to be noninfanticides by prolonged exposure to young, but only under special testing conditions not required by actual mothers, which are nonkillers of foster young. This suggests that the maintenance of the suppression of infanticide in mothers owes something to the special circumstances of lactation other than continued exposure to young.

Animals

Infanticide and social organization in the redtail monkey (Cercopithecus ascanius schmidti) in the Kibale Forest, Uganda.

The redtail monkeys of the Kibale Forest, W. Uganda, live in social groups of about 35 members with only one adult male. In one of the study groups the harem male was replaced by a new male from outside the group. This male-replacement was followed by the new male killing and eating two newborn infants in the group. Infants and young juveniles older than one month were not attacked. Following the infanticide the new male copulated with several adult females in the group. 8 months after this male joined the group, 5 other adult and subadult males associated with it. This multimale influx was accompanied by frequent and intense aggression among the males. Comparisons are made with the studies of langurs in India and Ceylon and it is suggested that infanticide following male-replacement in the harem affords reproductive advantages to the new male.

Animals

Sudden infant death and infanticide.

The hypothesis, advanced by Asch (Mt Sinai J Med NY 35:214-220, 1968), that a majority of sudden infant death syndrome (SIDS) cases are actually infanticides, is addressed by examination of age comparable infant homicide rates (United States, 1950-1974) and consideration of current theory regarding SIDS pathogenesis. The analysis provides no support for the hypothesis.

Age Factors

Self-ownership, abortion and infanticide.

Doctors have been placed in an anomalous position by abortion laws which sanction the termination of a fetus while in a woman's womb, yet call it murder when a physician attempts to end the life of a fetus which has somehow survived such a procedure. This predicament, the doctors' dilemma, can be resolved by adopting a strategy which posits the right to ownership of one's own body for human beings. Such an approach will generate a consistent policy prescription, one that sanctions the right of all pregnant women to abortions, yet grants the fetus, after it becomes viable as a potentially independent person, a right to its own body. The doctors' dilemma is surmounted, then, by requiring that abortions of viable fetuses be performed in a manner that will produce a live delivery. Hence, infanticide and termination of viable fetuses are proscribed.

Aborted Fetus

[Relations between mental deficinency and infanticide for "honoris causa"].

After giving hints about the world-wide spreading of infanticide and the factors affecting it, the Author examines causes and imputability. The psychological habitual and exceptional features of the infant-murder are considered in view of the so-called "honoris causa". It would result that a poor mental ability, a particular mood, the fear of disgrace generally are disregarded before the fundamental ethical inferiority. The Author does not agree upon an over benevolente valuation of the many cases where the moral immaturity is determinant, according to law rules which do not make the imputability depend on the ethical evaluation of ene's action; and for mental insufficiency, the decrease in one's responsability is maintained as justifiable not on the light of au honour motive but of mental ill-health.

Forensic Psychiatry

Female infanticide and human sex ratio evolution.

The possible effect on the evolution of the human sex ratio of a preference for male children is examined in a genetic model. It is shown that the killing of infant daughters can lead to either a female- or a male-biased sex ratio, the outcome depending on the decision rule used to determine the fate of a child. This reconciles long-standing contradictory results.

Biological Evolution