Paced copulation induces conditioned place preference in female rats. The authors examined whether associating almond-scented males with paced copulation induces conditioned partner preference. The paired group received 4 paced copulations with almond-scented males and 4 nonpaced copulations with unscented males sequentially at 4-day intervals. The unpaired group received the opposite order of association, whereas the randomly paired group received random associations. A 4th group received a single pairing. On the final test, females were placed into an open field with 2 males, 1 scented and 1 unscented. Females in the paired group solicited the scented male more frequently, and most chose the scented male for their 1st ejaculation. Thus, an odor paired with paced copulation elicits conditioned partner preference in female rats.
Previous studies have shown that hypothyroidism modifies the development of callosal connections. In particular, adult hypothyroid rats have fewer callosally projecting neurons in layers II-III of the auditory cortex and more in layer V. This might be due to disturbance in the stabilization/elimination of juvenile callosal axons, or to abnormal neuronal migration during cortical histogenesis. To distinguish between these possibilities we have studied the distribution of callosally projecting auditory neurons at different postnatal ages using retrogradely transported tracers, and the cortical neurogenetic gradients using DNA labelling with 5-bromo-2'-deoxiuridine. In hypothyroid rats, injected at postnatal day 5 (P5) and killed at P18-20, most of the neurons retrogradely labelled from the contralateral hemisphere are distributed between layers IV and VI, as in older rats. In hypothyroid rats, many neurons are at locations inappropriate for their birthdate, including the subcortical white matter, resulting in more diffuse radial neurogenetic gradients. These results indicate that early induced hypothyroidism alters neuronal migration and prevents the establishment of callosal connections from cortical layers II-III.
Damage and regeneration of the pubococcygeus and bulbospongiosus muscles are differently influenced by multiparity in rabbits. This could rely on the anatomical location, metabolism, myofiber composition, and muscle exertion during pregnancy and/or the delivery of each muscle.
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