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Evolution of GABAergic circuitry in the mammalian medial geniculate body.

机译:哺乳动物内侧膝状体中GABA能回路的演变。

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摘要

Many features in the mammalian sensory thalamus, such as the types of neurons, their connections, or their neurotransmitters, are conserved in evolution. We found a wide range in the proportion of gamma-aminobutyric acidergic (GABAergic) neurons in the medial geniculate body, from <1% (bat and rat) to 25% or more (cat and monkey). In the bat, some medial geniculate body subdivisions have no GABAergic cells. Species-specific variation also occurs in the somesthetic ventrobasal complex. In contrast, the lateral geniculate body of the visual system has about the same proportion of GABAergic cells in many species. In the central auditory pathway, only the medial geniculate body shows this arrangement; the relative number of GABAergic cells in the inferior colliculus and auditory cortex is similar in each species. The range in the proportion of GABAergic neurons suggests that there are comparative differences in the neural circuitry for thalamic inhibition. We conclude that the number of GABAergic neurons in thalamic sensory nuclei may have evolved independently or divergently in phylogeny. Perhaps these adaptations reflect neurobehavioral requirements for more complex, less stereotyped processing, as in speech-like communication.
机译:哺乳动物感觉丘脑中的许多特征,例如神经元的类型,它们的连接或它们的神经递质,在进化过程中是保守的。我们发现内侧膝状体中γ-氨基丁酸能(GABA能)神经元的比例范围很广,从<1%(蝙蝠和大鼠)到25%或更多(猫和猴)。在蝙蝠中,一些膝状膝状体细分没有GABA能细胞。特定的变异也发生在知觉的脑室基底复合体中。相反,在许多物种中,视觉系统的外侧膝状体具有大约相同比例的GABA能细胞。在中央听觉通路中,只有内侧膝状体显示出这种排列;而在中央听觉上则显示出这种排列。下种和听觉皮层中GABA能细胞的相对数量在每个物种中都相似。 GABA能神经元的比例范围表明,丘脑抑制的神经回路存在比较差异。我们得出的结论是,丘脑感觉核中GABA能神经元的数量可能在系统发育上独立或发散。也许这些改编反映了神经性行为要求,如语音交流一样,需要更复杂,更少定型的处理。

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