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Amygdala neurones: converging synaptic inputs produced by median eminence and medial preoptic area stimulations in rats

机译:杏仁核神经元:大鼠中位隆起和视前内侧区域刺激产生的会聚突触输入

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摘要

1. Amygdaloid afferent inputs from the median eminence and the medial preoptic area were studied electrophysiologically in urethane-anaesthetized female rats.2. Stimulation of the surface of the median eminence produced orthodromic responses in about 80% of the forty-seven amygdala units tested and about 65% of the responsive cells showed an excitation.3. Stimulation of the ipsilateral medial preoptic area orthodromically excited seventeen and inhibited twenty of the forty-nine units tested.4. Stimulation of the contralateral medial preoptic area evoked orthodromic excitation in nine and inhibition in three of the twenty-two units tested. These stimuli were ineffective for producing antidromically conducted impulses in the tested units.5. Sixteen of the thirty amygdala units tested for responses to both median eminence and ipsilateral medial preoptic area stimulation responded orthodromically with either excitation or inhibition. The latency of the response to median eminence stimulation was approximately equal to that of the response to ipsilateral preoptic area stimulation in four of these sixteen units.6. A characteristic bursting discharge was observed in eleven amygdala units during and after ipsilateral preoptic area stimulation. A transitory inhibition was evoked simultaneously with the bursting discharge in some units. Seven of the eleven units were also tested for median eminence stimulation, and a transitory excitation was observed in each of these units.7. These results suggest the existence of converging synaptic inputs both from tuberoinfundibular neurones and the ipsilateral medial preoptic area to certain amygdala neurones. They also demonstrate the existence of a specific neural pathway mediating a characteristic self-sustained bursting discharge in some amygdala neurones after such stimulation.
机译:1.在氨基甲酸乙酯麻醉的雌性大鼠中,电生理学研究了中位隆起和视前内侧区域的杏仁核传入输入。2。刺激中位隆突表面产生的正畸反应在约47个杏仁核单位中占80%,而约65%的反应性细胞表现出兴奋性。3。正畸刺激同侧内侧视前区17个,抑制了测试的49个单元中的20个。4。对侧内侧视前区的刺激在9个试验中引起了正交刺激,在22个试验中的3个中抑制了刺激。这些刺激对于在被测单元中产生反方向传导的冲动无效。5。测试的30个杏仁核单位中有16个对正中隆起和同侧内侧视前区刺激的反应均受到刺激或抑制的正畸反应。在这十六个单元中的四个单元中,对中位突出刺激的反应潜伏期大约等于对同侧视前区刺激的潜伏期。6。在同侧视光前区刺激期间和之后,在11个杏仁核单位中观察到了特征性的爆破放电。在某些单位中,在突然放电的同时引起短暂的抑制。还对11个单元中的7个单元进行了中位突出刺激测试,并在每个单元中观察到了短暂的兴奋感。7。这些结果表明,既存在来自结节底神经元的融合突触输入,也存在来自同侧内侧前视区的某些突触输入。他们还证明了在刺激后某些杏仁核神经元中存在介导特征性的自我持续性爆发放电的特定神经通路。

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