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Maturation of the corpus callosum of the rat: II. Influence of thyroid hormones on the number and maturation of axons

 

作者: Claude Gravel,   Rachel Sasseville,   Richard Hawkes,  

 

期刊: Journal of Comparative Neurology  (WILEY Available online 1990)
卷期: Volume 291, issue 1  

页码: 147-161

 

ISSN:0092-7317

 

年代: 1990

 

DOI:10.1002/cne.902910110

 

出版商: Wiley Subscription Services, Inc., A Wiley Company

 

关键词: hypothyroidism;electron microscopy;axon elimination;synaptogenesis

 

数据来源: WILEY

 

摘要:

AbstractQuantitative electron microscopy has been used to study the number of callosal axons in the corpus callosum of normal and hypothyroid rats during postnatal development. At birth, the normal corpus callosum contains 4.4 × 106axons. This number increases to 11.4 × 106by 5 days of age (P5) and then, in contrast to cats and primates, remains constant until at least P60, the oldest age examined. The number of axons in the corpus callosum of hypothyroid animals is not significantly different from the values observed in normal rats at all ages studied, although the callosal axons of hypothyroid rats remain structurally immature. As extensive elimination of callosal axons has been shown to occur in normal rats past P5, we conclude that new callosal processes grow through the corpus callosum past this age that compensate numerically for the loss. Moreover, as the number of callosally projecting neurons seems to be higher in hypothyroid rats than in normal controls, it seems that the constant axon number derives from more parent neurons, and thus that there are more axon collaterals per callosal neuron in a normal animal than in a hypothyroid one. Taken together, these data indicate that although hypothyroidism does not alter the total number of callosally projecting axons, it interferes with the normal processes that define or sculpt the projection fields, thereby leading to a numerically normal projection with abnormal topograph

 

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