Yamanaka Ko, Takagishi Miwa, Kim Jimmy, Gouraud Sabine S, Waki Hidefumi
Department of Physiology, Graduate School of Health and Sports Science, Juntendo University, 1-1 Hiraka-Gakuendai, Inzai, Chiba, 270-1695, Japan.
Department of Therapeutic Health Promotion, Kansai University of Health Sciences, 2-11-1 Wakaba, Kumatori, Sennan, Osaka, 590-0482, Japan.
J Physiol Sci. 2018 May;68(3):233-242. doi: 10.1007/s12576-017-0523-2. Epub 2017 Jan 23.
Although the amygdala is known as a negative emotion center for coordinating defensive behaviors, its functions in autonomic control remain unclear. To resolve this issue, we examined effects on cardiovascular responses induced by stimulation and lesions of the amygdala in anesthetized and free-moving rats. Electrical microstimulation of the central nucleus of the amygdala (CeA) induced a gradual increase in arterial pressure (AP) and heart rate (HR), whereas stimulation of adjacent nuclei evoked a phasic AP decrease. The gain of the baroreceptor reflex was not altered by CeA stimulation, suggesting that CeA activity increases both AP and HR by resetting baroreceptor reflex function. Disinhibition of GABAergic input by amygdalar microinjection of the GABA receptor antagonist induced robust increases in AP and HR. Furthermore, bilateral electrolytic lesions of CeA evoked consistent AP increases over the light/dark cycle. These results suggest that the amygdala exerts 'bidirectional' autonomic control over the cardiovascular system.
尽管杏仁核作为协调防御行为的负性情绪中心而为人所知,但其在自主控制方面的功能仍不清楚。为解决这一问题,我们研究了在麻醉和自由活动的大鼠中,杏仁核刺激和损伤对心血管反应的影响。对杏仁核中央核(CeA)进行电微刺激会导致动脉血压(AP)和心率(HR)逐渐升高,而对相邻核团的刺激则会引起AP阶段性下降。CeA刺激并未改变压力感受器反射的增益,这表明CeA活动通过重置压力感受器反射功能来增加AP和HR。通过向杏仁核微注射GABA受体拮抗剂来解除GABA能输入的抑制,会导致AP和HR显著升高。此外,CeA的双侧电解损伤在明/暗周期中引起了持续的AP升高。这些结果表明,杏仁核对心血管系统施加“双向”自主控制。