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Evolution of circuits regulating pleasure and happiness with the habenula in control

机译:调节幸福与湿地控制的电路的演变

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摘要

The habenula, which in humans is a small nuclear complex within the epithalamus, plays an essential role in regulating the intensity of reward-seeking and adversity-avoiding behavior in all vertebrate ancestors by regulating the activity of ascending midbrain monoaminergic tracts. In lampreys, considered to possess a brain comparable to humans’ earliest evolutionary vertebrate ancestor, the activity of the lateral habenula is controlled by a subset of glutamatergic neurons of the animal’s pallidum (habenula-projecting globus pallidus) that inhibit reward-seeking behavior when this conduct is not successful enough. The pathophysiological roles of the habenula and habenula-projecting globus pallidus in humans have hardly been studied, which is probably due to insufficient resolution of common neuroimaging techniques. Their dysregulation may, however, play an essential role in the pathogenesis of mood and stress disorders and addiction.
机译:在人类中的哈尼斯是一部分在上皮的核心群体,在调节升序中脑单氨酰单氨基能束的活动来调节所有脊椎动物祖先的奖励和逆境行为的强度。 在Lampreys中,被认为具有与人类最早的进化脊椎动物祖先相当的大脑,横向湿地的活性由动物的Pallidum(Habenula-Projecting Globus Pallidus)的谷氨酸神经元的子集控制,抑制了奖励寻求行为 行为不够成功。 人类在人类中的母鹿和哈瓦氏突出的Globus Pallidus的病理生理作用几乎已经研究过,这可能是由于常见神经影像技术的解决不充分。 然而,他们的失调可能在情绪和应激障碍和成瘾的发病机制中起重要作用。

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