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首页> 外文期刊>Autonomic neuroscience: basic & clinical >Neurons in amygdala mediate ear pinna vasoconstriction elicited by unconditioned salient stimuli in conscious rabbits.
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Neurons in amygdala mediate ear pinna vasoconstriction elicited by unconditioned salient stimuli in conscious rabbits.

机译:杏仁核中的神经元介导有意识的兔子的无条件显着刺激引起的耳廓血管收缩。

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We determined whether functional integrity of neurons in the amygdala is necessary for sudden episodes of cutaneous vasoconstriction that occur when the conscious animal detects a salient alerting stimulus. To inhibit neuronal function, muscimol (5 nmol in 300 nl), a long acting and potent GABA-A receptor agonist that hyperpolarizes neurons, was injected bilaterally into the amygdala or into a more dorsal control site in conscious rabbits. Cutaneous blood flow was measured in the ear pinna flow using an ultrasonic Doppler probe chronically implanted around the central ear artery. Ear flow responses to salient unconditioned alerting stimuli (fur touch, slight cage movement. removal of drape covering cage) were examined before and after injection of the muscimol, and the effects compared with effects of muscimol on the ear flow response to more nociceptive stimuli, including ear pinch. Muscimol injections into the dorsal control site did not significantly alter alerting-related episodes of ear pinna vasoconstriction. Muscimol injections into the amygdala almost completely abolished ear vasoconstriction elicited by fur touch (0/5 positive responses), drape removal (0/7 positive responses) and cage movement (0/7 positive responses). Muscimol injections into the amygdala reduced the mean ear flow coefficient of variation for a 15 min observation period from 47+/-5 before injection to 15+/-33% after injection (P<0.01, n=7 rabbits). Muscimol injections into the amygdala did not alter the vigorous ear pinna vasoconstriction elicited by ear pinch (7/7 positive responses). Our results indicate that neuronal function in the amygdala, probably the central nucleus of the amygdala, is necessary for the occurrence of ear pinna vasoconstriction episodes elicited by unconditioned salient stimuli but not for the occurrence of corresponding vasoconstriction elicited by nociceptive stimuli.
机译:我们确定杏仁核中神经元的功能完整性对于有意识的动物检测到明显的警报刺激时发生的皮肤血管收缩突然发作是否必要。为了抑制神经元功能,向双侧注射杏仁核或有意识的兔子的背部控制部位使用了麝香酚(300 nl中的5 nmol),一种长效的强效GABA-A受体激动剂,可使神经元超极化。使用长期植入在中耳动脉周围的超声多普勒探针测量耳廓血流中的皮肤血流。在注射麝香酚之前和之后,检查了对明显的无条件警报刺激的耳流响应(皮毛接触,轻微的笼子运动,去除了垂垂的笼子),并与麝香酚对更多伤害性刺激的耳流响应进行了比较,包括捏耳朵。向背侧控制部位注射麝香酚并没有显着改变耳廓血管收缩的警觉性发作。向杏仁核中注射麝香酚几乎完全消除了因皮毛接触(0/5阳性反应),除皱(0/7阳性反应)和笼运动(0/7阳性反应)引起的耳部血管收缩。在15分钟的观察期内,向杏仁核注射Muscimol可将平均耳流量变异系数从注射前的47 +/- 5降低到注射后的15 +/- 33%(P <0.01,n = 7只兔子)。向杏仁核中注射Muscimol并不会改变因捏捏引起的剧烈的耳廓血管收缩(7/7阳性反应)。我们的结果表明,杏仁核(可能是杏仁核的中央核)中的神经元功能对于由无条件的显性刺激引起的耳廓血管收缩事件的发生是必需的,但对于由伤害性刺激引起的相应的血管收缩的发生则不是必需的。

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