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Closing the loop on impulsivity via nucleus accumbens delta-band activity in mice and man

机译:通过伏隔核的三角带活动封闭小鼠和人的冲动回路

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摘要

Reward hypersensitization is a common feature of neuropsychiatric disorders, manifesting as impulsivity for anticipated incentives. Temporally specific changes in activity within the nucleus accumbens (NAc), which occur during anticipatory periods preceding consummatory behavior, represent a critical opportunity for intervention. However, no available therapy is capable of automatically sensing and therapeutically responding to this vulnerable moment in time when anticipation-related neural signals may be present. To identify translatable biomarkers for an off-the-shelf responsive neurostimulation system, we record local field potentials from the NAc of mice and a human anticipating conventional rewards. We find increased power in 1- to 4-Hz oscillations predominate during reward anticipation, which can effectively trigger neurostimulation that reduces consummatory behavior in mice sensitized to highly palatable food. Similar oscillations are present in human NAc during reward anticipation, highlighting the translational potential of our findings in the development of a treatment for a major unmet need.
机译:奖励超敏反应是神经精神疾病的常见特征,表现为对预期诱因的冲动。伏隔核(NAc)内活动的暂时特定变化发生在完善行为之前的预期时期,这是进行干预的关键机会。但是,当可能存在与预期有关的神经信号时,尚无可用的疗法能够及时自动感测并对这一脆弱时刻做出治疗反应。为了为现成的反应神经刺激系统识别可翻译的生物标记物,我们记录了小鼠NAc和预期常规奖励的人类NAc的局部场电势。我们发现奖励预期期间,在1至4 Hz振荡中增加的功率占主导,这可以有效触发神经刺激,从而降低对高度可口食物敏感的小鼠的消费行为。在奖励预期期间,人类NAc中也存在类似的振荡现象,这突显了我们的发现在开发针对主要未满足需求的治疗方法中的转化潜力。

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