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杏仁核对家兔脑干神经元的影响。

Amygdaloid influences on brain-stem neurones in the rabbit.

作者信息

Cox G E, Jordan D, Moruzzi P, Schwaber J S, Spyer K M, Turner S A

出版信息

J Physiol. 1986 Dec;381:135-48. doi: 10.1113/jphysiol.1986.sp016318.

Abstract
  1. Electrical stimulation of the central nucleus of the amygdala in the urethane or alpha-chloralose anaesthetized rabbit evokes a bradycardia with a rapid onset and a concomitant fall in arterial blood pressure. 2. Extracellular neuronal activity was recorded in the ipsilateral nucleus tractus solitarius and dorsal vagal nucleus whilst stimulating the ipsilateral central nucleus of the amygdala, the aortic and vagus nerves. 3. A total of 213 neurones were activated by stimulation of at least one of these inputs. 93 of these neurones received a marked excitatory input from the central nucleus with a wide range of latencies (2-100 ms). 50 of these cells also received inputs from either the aortic or vagus nerves, or both. 4. The activity of 42 vagal preganglionic neurones was recorded in the dorsal vagal nucleus of which 22 had properties typical of cardioinhibitory neurones. 9 of these vagal motoneurones received inputs from the central nucleus with latencies between 2 and 100 ms. Of these, 5 had physiological properties indicating they were cardio-inhibitory neurones. 5. We conclude that neurones in the nucleus tractus solitarius and dorsal vagal nucleus can be influenced by descending inputs arising from the central nucleus of the amygdala. Some of these neurones are also likely to be influenced by afferents innervating the thoracic viscera and arterial baroreceptors. The implications of these observations on the role of forebrain-brain-stem interactions in cardiovascular control are discussed.
摘要
  1. 对氨基甲酸乙酯或α-氯醛糖麻醉的家兔杏仁核中央核进行电刺激,可诱发心动过缓,其起效迅速,同时伴有动脉血压下降。2. 在刺激同侧杏仁核中央核、主动脉神经和迷走神经时,记录同侧孤束核和迷走神经背核的细胞外神经活动。3. 至少一种这些输入刺激共激活了213个神经元。其中93个神经元从杏仁核中央核接受了明显的兴奋性输入,潜伏期范围广泛(2 - 100毫秒)。这些细胞中有50个还接受了来自主动脉神经或迷走神经,或两者的输入。4. 在迷走神经背核记录了42个迷走神经节前神经元的活动,其中22个具有典型的心抑制神经元特性。这些迷走运动神经元中有9个从杏仁核中央核接受潜伏期在2至100毫秒之间的输入。其中,5个具有生理特性,表明它们是心抑制神经元。5. 我们得出结论,孤束核和迷走神经背核中的神经元可受到杏仁核中央核下行输入的影响。其中一些神经元也可能受到支配胸内脏器和动脉压力感受器的传入神经的影响。讨论了这些观察结果对前脑 - 脑干相互作用在心血管控制中的作用的影响。

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