PubMed Health⌕ Search

Biomedical subjects

Y Siemens

Publications and source records attributed to Y Siemens.

5 recordsLinked to original sources

Testosterone removal in rats results in a decrease in social aggression and a loss of social dominance.

Alpha male rats from mixed sex colony groups were tested for aggressiveness toward nonaggressive male intruders. Afterward, they were castrated and implanted with testosterone filled Silastic tubes, castrated and implanted with empty tubes, or sham castrated and implanted with empty tubes. There were significant declines in the aggressiveness (lateral attacks, bites, and piloerection but not on-top) of castrated rats without testosterone replacement but not in castrated rats with testosterone replacement. At a second operation, castrated animals had their testosterone capsules removed or had their empty capsules replaced with testosterone filled capsules. When tested for aggression toward nonaggressive intruders, those alpha males which had testosterone removed declined in aggressiveness while those which had it implanted returned to a level of aggressiveness close to that emitted by sham castrated control animals. Subordinate males became dominant when alpha males were castrated and not given testosterone replacement. In a final series of observations, sham castrated males were found to be more aggressive than castrated males when pitted against one another. It is argued that testosterone plays a primary role in intermale social aggression and that the decline in aggressiveness following castration is typically accompanied by a loss of social dominance.

Aggression↗

Spontaneous mouse killing rats: gentling and food deprivation result in killing behavior almost identical to that of rats with medial hypothalamic lesions.

Rats that were found to kill a mouse spontaneously were divided into two groups. One group was left untreated and allowed free access to food while the other was gentled for 15 min/day and given only 15 g of food/day. Nonkilling rats were induced to kill mice by lesions of the medial hypothalamus. Seven to ten days after being divided into groups or subjected to brain lesions, each rat's behavior toward a series of stimuli was observed. The stimuli were a live mouse, a second live mouse, a freshly killed mouse, and a cotton wad. Food-deprived/gentled spontaneous killers and rats induced to kill by medial hypothalamic lesions each tended to attack with higher intensities and lower latencies than control spontaneous killers. The food-deprived/gentled spontaneous killers and lesion-induced killers (but not the control spontaneous killers) also attacked a dead prey moved vertically and then held onto the prey with sufficient intensity that their feet would leave the floor of the cage before they would release their grip on the prey. It is argued that the behavior of food-deprived spontaneous killers may constitute a more valid model of spontaneous mouse killing than that of sated spontaneous killers. The close correspondence between behavior toward a prey by lesion-induced killers and food-deprived spontaneous killers suggests that the lesion-induced killers fit this model of mouse killing remarkably well.

Aggression↗

Mouse killing in rats induced by lesions of the medial hypothalamus or medial accumbens: short-term preoperative exposure to a mouse does not suppress the killing.

Rats were either exposed or not exposed to a mouse in their living cage for a 48-hr period. At the end of this time a bilateral lesion was made in the medial accumbens region or in the medial hypothalamus. When tested 2 days postoperatively, the killing frequency among rats that had been exposed to mice preoperatively was not significantly lower than that of rats that were not preoperatively exposed. The ineffectiveness of preoperative experience in suppressing the mouse killing induced by medial accumbens and medial hypothalamic lesions is similar to that found previously with dorsal-median raphe lesions and olfactory bulb lesions and is in contrast to the ease with which preoperative experience prevents mouse killing induced by septal lesions and serotonergic lesions induced by 5,7-dihydroxytryptamine.

Aggression↗

A comparison of the effect of preoperative gentling on the mouse killing and reactivity induced by lesions of the lateral septum, the medial accumbens nucleus, and the medial hypothalamus.

Adult male rats were either gentled or not gentled 10 min each day for 5 days and then subjected to lesions of the lateral septum, the medial accumbens, the medial hypothalamus, or were given sham lesions. Mouse killing was tested in the living cage on Days 2, 7, and 14 postoperatively while reactivity to the experimenter was tested on Days 3, 8, and 15. The frequency of killing in the gentled groups was always significantly higher than that of the gentled sham-lesion controls, but the frequency of killing by the nongentled groups was seldom significantly higher than that of the nongentled sham-lesioned controls. Gentling caused a slight enhancement of killing in the lesioned animals and a slight attenuation of killing in the sham lesioned animals. Preoperative gentling attenuated reactivity to the experimenter in animals with lesions of the lateral septum but not in those with lesions of the medial accumbens nucleus or the medial hypothalamus. The observation that preoperative gentling tends to increase mouse killing confirms previous observations. The finding that preoperative gentling attenuates reactivity following septal but not medial accumbens or medial hypothalamic lesions suggests that these structures subserve different functions in the inhibitory modulation of defensive behavior.

Animals↗

Mouse killing in rats: a comparison of spontaneous killers and rats with lesions of the medial hypothalamus or the medial accumbens nucleus.

Mouse killing was observed and videotaped at forty-eight hr following surgery in rats with lesions of the medial hypothalamus or the medial accumbens. The initial attacks and killing bites of the lesioned rats were directed at the anterior dorsal surface, predominantly to the regions of the neck, shoulders, and thorax and did not differ from those of spontaneous mouse killing rats. The latency to attack was significantly shorter for the lesioned animals but the time required to kill following the attack tended to be longer. Lesioned animals spent significantly more time biting the prey following the kill and left significantly more bite marks on the prey than did the spontaneous killers. When the dead prey was moved about the cage following the kill, the lesioned animals showed a significantly greater tendency to attack it than did the spontaneous killers. Following the test of mouse killing, each rat was successively exposed to a freshly killed mouse, a cotton wad, and a wood block. The lesioned animals attacked the dead mouse and the cotton wad as though they were live mice whereas the spontaneous killers did not. These results suggest that while the killing is similar for lesioned and spontaneous killers, the lesioned animals show a heightened response to the killing experience. This is manifested in an exaggeration of attack behaviors toward prey and prey-like stimulus objects following an initial killing experience.

Aggression↗