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首页> 外文期刊>The Journal of Physiology >Sublinear summation of afferent inputs to the nucleus accumbens in the awake rat.
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Sublinear summation of afferent inputs to the nucleus accumbens in the awake rat.

机译:清醒大鼠伏隔核传入输入的亚线性求和。

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The mechanisms by which the nucleus accumbens integrates afferent input from limbic and cortical structures have been influential in the development of models of psychiatric disorders such as schizophrenia. Previous studies of the response of nucleus accumbens (Nacb) cells to the stimulation of afferent inputs from hippocampus (HC) and prefrontal cortex (PFC) have demonstrated that PFC throughput can be modulated by preceding HC input. Examination of the post-synaptic potential size has suggested, however, that summation of these inputs is sublinear. All studies to date examining Nacb integration of inputs via stimulation of afferents have been performed in the anaesthetized rat. The present experiments compare the response of Nacb cells to different combinations of PFC and HC stimulation in awake and isoflurane-anaesthetized rats that were chronically implanted with both stimulating and recording electrodes. The results of these experiments suggest that summation of afferent input in the Nacb of the awake rat is predominantly sublinear, with only a minority of neurons demonstrating modulation of PFC inputs by the HC in the awake or the anaesthetized animal. The response profile of many cells changed during anaesthesia when compared to the awake condition, and on average showed suppression to PFC input 50 and 150 ms following HC stimulation while under deep isoflurane anaesthesia. These results suggest that sublinear integration of afferent input from the PFC and HC is the dominant mode of integration of Nacb cells in the awake animal, which has implications for corticostriatal models of psychiatric dysfunction.
机译:伏隔核整合来自边缘和皮质结构的传入输入的机制在诸如精神分裂症的精神疾病模型的开发中具有影响力。先前对伏隔核(Nacb)细胞对来自海马(HC)和前额叶皮层(PFC)的传入输入刺激的响应的研究表明,可以通过先前的HC输入来调节PFC的通过量。然而,已经提出了对突触后电位大小的检查,这些输入的总和是亚线性的。迄今为止,已在麻醉大鼠中进行了所有通过刺激传入来检查Nacb整合输入的研究。本实验比较了清醒和异氟烷麻醉的大鼠(长期植入刺激和记录电极)中Nacb细胞对PFC和HC刺激的不同组合的反应。这些实验的结果表明,在清醒大鼠的Nacb中传入输入的总和主要是亚线性的,只有少数神经元证明了清醒或麻醉动物中HC对PFC输入的调节。与清醒状态相比,麻醉期间许多细胞的反应情况发生了变化,平均而言,在深异氟烷麻醉下,HC刺激后50和150 ms,PFC输入平均受到抑制。这些结果表明从PFC和HC传入输入的亚线性整合是清醒动物中Nacb细胞整合的主要方式,这对精神功能障碍的皮质口侧模型具有影响。

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