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The development of brain sex differences: a multisignaling process.

机译:脑性别差异的发展:一个多信号过程。

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In order to account for the development of sex differences in the brain, we took, as an integrative model, the vomeronasal pathway, which is involved in the control of reproductive physiology and behavior. The fact that brain sex differences take place in complex neural networks will help to develop a motivational theory of sex differences in reproductive behaviors. We also address the classic genomic actions in which three agents (the hormone, the intracellular receptor, and the transcription function) play an important role in brain differentiation, but we also point out refinements that such a theory requires if we want to account of the existence of two morphological patterns of sex differences in the brain, one in which males show greater morphological measures (neuron numbers and/or volume) than females and the opposite. Moreover, we also consider very important processes closely related to neuronal afferent input and membrane excitability for the developing of sex differences. Neurotransmission associated to metabotropic and ionotropic receptors, neurotrophic factors, neuroactive steroids that alter membrane excitability, cross-talk (and/or by-pass) phenomena, and second messenger pathways appear to be involved in the development of brain sex differences. The sexual differentiation of the brain and reproductive behavior is regarded as a cellular multisignaling process.
机译:为了说明大脑中性别差异的发展,我们采用了犁鼻通路作为整合模型,该通路参与生殖生理和行为的控制。在复杂的神经网络中发生大脑性别差异的事实将有助于发展生殖行为中性别差异的动机理论。我们还讨论了经典的基因组作用,其中三种物质(激素,细胞内受体和转录功能)在大脑分化中起着重要作用,但我们也指出了这种理论需要完善的方法,如果我们要考虑大脑中存在两种性别差异的形态学模式,其中一种表现出比女性更大的形态学指标(神经元数量和/或体积),而另一种则相反。此外,我们还认为与神经元传入输入和膜兴奋性密切相关的非常重要的过程对于性别差异的发展。与代谢型和离子型受体,神经营养因子,改变膜兴奋性的神经活性类固醇,串扰(和/或旁路)现象以及第二信使途径相关的神经传递似乎与大脑性别差异的发展有关。大脑的性别分化和生殖行为被认为是细胞多信号传递过程。

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