Early learning and the social bond.
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Biomedical subjects
Publications and source records attributed to F L Martel.
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Functionally distinct regions of the brain to which maternal and paternal genomes contribute differentially (through genomic imprinting) have developed differentially over phylogenetic time. While certain regions of the primate forebrain (neocortex, striatum) have expanded relative to the rest of the brain, other forebrain regions have contracted in size (hypothalamus, septum). Areas of relative expansion are those to which the maternal genome makes a substantial developmental contribution. This may be significant with respect to the importance of primate forebrain expansion in the development of complex behavioural strategies and the way in which these are deployed, especially by the matriline. In many primate societies the maintenance of social cohesion and group continuity over successive generations is dependent on the matriline, with high ranking females producing high ranking daughters that stay within the group. Regions of relative contraction are those to which the paternal genome makes a differential contribution and these are target areas for gonadal hormones, which is congruent with the diminished role for gonadal hormones in the emancipation of primate reproductive behaviour.
Rhesus monkeys of 9 weeks, 48 weeks, 100 weeks, 150 weeks of age (young subjects), or mature parous females that were not lactating were given acute single doses of the opioid antagonist naloxone (0.5 mg/kg) and vehicle on different days and observed in their familial social groups. Naloxone increased the occurrence of affiliative behaviours. Young subjects spent more time in contact with their mothers but showed no changes in social grooming. Maternal contact was actively sought through contact vocalizations, decreasing proximity, and, for the youngest infants, increased attempts to suckle. Mature females made more solicitations for grooming and received more grooming from their companions. These results are interpreted in terms of naloxone blocking the positive effect arising from social contact and thus causing subjects to seek further affiliative comfort.
Grafts of embryonic nigral tissue were made into the striatum of marmosets (Callithrix jacchus) which had previously received a unilateral 6-hydroxydopamine (6-OHDA) lesion of the nigrostriatal bundle. The grafts comprised injections of cell suspensions prepared from embryonic (74 day) marmoset ventral mesencephalic tissue targeted at multiple striatal sites in the caudate nucleus, the putamen, and the nucleus accumbens on the same side as the initial lesion. A series of behavioral tests was used to assess the monkeys prior to surgery, following the 6-OHDA lesion, and at regular intervals for 6 months after transplantation surgery. Lesioned and grafted (n = 6) or lesion alone (n = 4) monkeys were matched as far as possible with respect to their scores prior to transplantation so that explicit graft-derived recovery could be distinguished from any spontaneous recovery that might occur. Sham-lesioned or unoperated monkeys served as further controls (n = 5). The grafts were functionally effective as measured by a reduction, and in some cases a reversal, of spontaneous, amphetamine- and apomorphine-induced rotation. The reversal of amphetamine-induced rotation correlated with the number of dopaminergic neurons in the grafts visualized by tyrosine hydroxylase immunohistochemistry. Successful use of the hands was restored by the grafts on tasks in which the monkeys reached into tubes to retrieve food. However, functional recovery was not seen on some other behavioral tests. In particular, grafts did not influence ipsilateral biases induced by the lesion, including the position of the head with respect to the rest of the body, hand preference while reaching for food at a conveyor belt, and neglect of contralateral stimuli either at the conveyor belt or of adhesive labels placed around the feet. Indeed, the graft group was impaired compared with the lesion group in the accuracy of reaches at the conveyor belt. Overall, these results indicate that embryonic nigral grafts can yield a partial recovery from the symptoms induced by unilateral nigrostriatal lesions in a primate model of hemiparkinsonism.
Seven lactating female rhesus macaques, housed in social groups, were administered with low doses (0.5 mg/kg) of the opioid antagonist naloxone when their infants were 4, 6, 8, and 10 weeks old. A control group received saline. Mothers receiving naloxone were involved in less grooming with other group members, and were less protective towards their infants. By infant-age week 8 they also groomed their infants less, while other monkeys groomed the infants more. Other behavioural measures of mother-infant interactions were not altered. With time, from infant-age week 6 onwards, some short-lived dysphoric conditioned drug responses to naloxone became apparent, although these were not correlated with the decline in social interaction. These results are interpreted in terms of possible interference of naloxone with maternal affect.
In this study the anxiety-related components of rhesus monkey infant behavior at an early stage of social development were examined. Eight rhesus infants (age 30-40 weeks) belonging to 3 captive groups were administered with an anxiogenic drug (beta-CCE; 0.2 mg/kg) and an anxiolytic drug (midazolam; 0.2 mg/kg). Saline solution was used as placebo. All infants were tested twice with each drug (four times with placebo) and their behavioral interactions with their mother and other social companions were recorded in 1-hr observation sessions. No convulsant or sedative effects of the drugs were observed. beta-CCE was associated with an increase in time spent by the infant with its mother and a concomitant reduction in proximity with other individuals and in social play. Midazolam did not affect the mother-infant interaction but increased the infant's locomotor activity away from the mother and its proximity and social play with juveniles and subadults when compared to peers. These results suggest that, although infant anxiety can be experimentally induced, it is not a major component of the mother-infant relationship. Infant anxiety, however, might affect the formation of other social bonds and play a part in the development of avoidance responses toward other individuals.
Previous studies have shown that dopamine-rich nigral grafts, implanted bilaterally into the intact neonatal brain, will provide some protection from the eating disorders induced by subsequent nigrostriatal 6-OHDA lesions. This has been repeated in the present study using unilaterally transplanted nigral grafts. Following adult lesions, the control animals displayed the full syndrome of aphagia, adipsia and akinesia. By contrast, 37% of the rats in the transplanted group recommenced eating following the adult lesion. Recovery was related to the size and position of the graft: protection was associated in particular with transplants located in the posterior-ventral neostriatum. The results are discussed in terms of specific patterns of graft-host interaction that may underlie protection of the regulation of eating from the loss of forebrain dopamine systems.
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An operant delayed-matching task was used to assess the role of proactive interference (PI) effects on short-term memory capacity of rats. Task performance was analyzed in terms of the influence of the sample positions and response choices on previous trials. PI was predominantly attributable to the influence of the immediately previous trial but not preceding trials and was abolished by increasing the intertrial intervals from 5 to 15 s. Nicotine induced a decline in choice accuracy only on trials in which the previous response had been to the side opposite the current sample and correct response, suggesting an increased susceptibility to PI. Physostigmine induced a mild, relatively nonspecific decline in response accuracy. Clonidine induced delay-dependent impairments irrespective of responses on previous trials. None of these drugs enhanced choice accuracy at any dose tested.
Whether the short-term memory impairments of aged rats in an operant delayed-matching task is attributable to increased susceptibility to proactive interference (PI) was tested. Groups of young and aged rats were trained on the task, and the previously reported delay-dependent deficit of aged rats was replicated. The aged rats showed a significantly greater decline in performance on previous-response-opposite trials compared with previous-response-same trials than did young rats, when tested over the same range of delay intervals, suggesting a higher sensitivity to PI. However, this effect was established against a higher overall baseline performance of the young animals on both types of trial. When the young and aged animals were equated for performance on previous-response-same trials (by increasing the range of delay intervals used for testing the young animals), the interaction effect was abolished. Thus, the delay-dependent deficits of aged rats are independent of their sensitivity to PI.