SummaryLaboratory housing conditions have significant physiological and psychological effects on rodents, raising both scientific and humane concerns. Published studies of rats, mice and other rodents were reviewed to document behavioural and psychological problems attributable to predominant laboratory housing conditions. Studies indicate that rats and mice value opportunities to take cover, build nests, explore, gain social contact, and exercise some control over their social milieu, and that the inability to satisfy these needs is physically and psychologically detrimental, leading to impaired brain development and behavioural anomalies (e.g. stereotypies). To the extent that space is a means to gain access to such resources, spatial confinement likely exacerbates these deficits. Adding environmental 'enrichments' to small cages reduces but does not eliminate these problems, and I argue that substantial changes in housing and husbandry conditions would be needed to further reduce them.
The ability of Mexican free-tailed bat mothers and pups to recognize vocalizations of their presumptive kin (pup isolation calls and mother echolocation calls, respectively) was tested using playbacks of recorded calls. Captive individuals were presented with calls of two bats, one presumptive kin and the other a stranger, from opposite sides of a circular wire arena. Response was determined by amount of time spent on each side of the arena, time spent in contact with a cloth bat model in front of each speaker, and number of separate contacts with each model. For the latter two measures, mothers showed a significant preference for the calls of their presumptive pups. Pups were attracted to adult echolocation calls, but did not show preference for calls of different mothers. The ages of pups appears to have had no effect on the responsiveness of either pups or mothers to the playbacks. This study demonstrates vocal kin recognition by mothers, and suggests an important role for acoustic cues in mother-pup reunions in this species. The findings do not preclude the possibility that vocal recognition of mothers by pups also occurs.
This paper presents arguments for, and evidence in support of, the important role of pleasure in animals' lives, and outlines its considerable significance to humankind's relationship to other animals. In the realms of animal sentience, almost all scholarly discussion revolves around its negative aspects: pain, stress, distress, and suffering. By contrast, the positive aspects of sentience-rewards and pleasures-have been rarely broached by scientists. Yet, evolutionary principles predict that animals, like humans, are motivated to seek rewards, and not merely to avoid pain and suffering. Natural selection favours behaviours that enhance survival and procreation. In the conscious, sentient animal, the drives to secure food, shelter, social contact, and mates are motivated by desire (appetitive behaviour) and reinforced by pleasure (consummative behaviour). This is reflected in animals' behaviour in the realms of play, food, sex, and touch. Despite the heuristic value of interpreting animal behaviour through the proximate (experiential) lens, scholarly study of animals remains entrenched almost exclusively in the ultimate (evolutionary) sphere. Not just science but also ethics suffer for this, for when we see animals as only the products of a competitive struggle for survival, we risk overlooking the positive qualities of their lives. Pleasure has moral import for such practices as factory farming and laboratory research, for it amplifies the moral burden of depriving animals the opportunity to lead fulfilling, enjoyable lives.
Mother Mexican free-tailed bats, Tadarida brasiliensis mexicana, produce 'directive' calls while searching for pups inside cave maternity roosts. These calls consist of highly repetitive pulses of sound uttered in rapid sequence. Calls are sufficiently intense that they are perceptible above the substantial background noise within roosts at distances of at least 1m. Calls are stereotyped within individuals, and statistically discriminable between individuals. These characteristics are expected for vocalizations that function for mother-pup reunions, and are shared with directive calls described previously in other bats. Mother T. b. mexicana directive calls are statistically no less discriminable than are the isolation calls of pups. Playback experiments, using recordings made inside the cave colony, show that pups perceive directive calls and are strongly attracted to them.
We used playback presentations to free‐flying bats of 3 species to assess the influence of echolocation call design and foraging strategy on the role of echolocation calls in communication. Near feeding sites over water, Myotis lucifugus and M. yumanensis responded positively only to echolocation calls of conspecifics. Near roosts, these bats did not respond before young of the year became volant, and after this responded to presentations of echolocation calls of similar and dissimilar design. At feeding sites Lasiurus borealis responded only to echolocation calls of conspecifics and particularly to “feeding buzzes”. While Myotis, particularly subadults, appear to use the echolocation calls of conspecifics to locate feeding sites, L. borealis appears to use the calls of a foraging neighbour attacking prey to identify opportunities for ‘stealing’ food.
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