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C Compoint-Monmignaut

Publications and source records attributed to C Compoint-Monmignaut.

3 recordsLinked to original sources

[Organization of the primary visual system of 2 rodents Arvicola terrestris and Meriones shawi].

Radio-autography and Fink-Heimer technique were performed in two rodents, the nocturnal Meriones shawi (Cricetidae, Gerbillidae) and the subterranean Arvicola terrestris (Arvicolidae) in order to investigate the organization of the primary visual system. In general the whole visual system is poorly developed in Arvicola. In two species, contralaterally, visual inputs project to nuclei geniculatus dorsalis and ventralis, pretectum and colliculus anterior (at the level of stratum opticum and the stratum griseum superficiale). In Meriones the nucleus geniculatus dorsalis receive specially an important projection. Ipsilaterally, in Meriones, retinofugal fibres reach the two geniculates, the pretectum and anterior third of the colliculus; in Arvicola, fibres do not pass the pretectum where they project to the nucleus tractus optici only. Few differences exist between rat and Arvicola accessory optic systems. In Meriones the system is entirely contralateral, the nucleus terminalis medialis receive one of the two fasciculi superior only. The retino-hypothalamic system in Meriones shawi shows crossed projections and each pathway reaches the antero-medial hypothalamic area. In Arvicola terrestris fibres reach the contralateral suprachiasmatic nucleus; such a structural difference may be related to the behavioural difference existing between the two rodents.

Animals

[Allometry and linear correlation coefficients binding the volumes of the different pituitary gland lobes, of the pituitary gland, of the subfornical organ and of the pineal gland to body weight and to hypothalamic volume in Rodents and in a Lagomorphe].

The morphometric study of the hypophysis, of the subfornical organ and of the pineal gland of 41 Rodents and one Lagomorphe shows that the anterior lobe of the hypophysis as well as the total hypophysis are better correlated to body weight than to the volume of the hypothalamus, while it is the contrary for the pars nervosa. The volume of the intermediate lobe varies very much from one species to another for the same body weight. The high value of the allometry coefficient of the pineal gland on somatic weight (1.25) is due to the fact that the heavy Rodents of our temperate climates have a large epiphysis while the small african Rodents possess a small pineal gland.

Animals