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Midbrain modulation of the cardiac baroreflex involves excitation of lateral parabrachial neurons in the rat.

机译:心脏压力反射的中脑调节涉及大鼠侧臂外侧副神经元的兴奋。

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Activation of the dorsal periaqueductal gray (PAG) evokes defense-like behavior including a marked increase in sympathetic drive and resetting of baroreflex function. The goal of this study was to investigate the role of the lateral parabrachial nucleus (LPBN) in mediating dorsal PAG modulation of the arterial baroreflex. Reflex responses were elicited by electrical stimulation of the aortic depressor nerve (ADN) at 5 Hz or 15 Hz in urethane anesthetized rats (n=18). Electrical stimulation of the dorsal PAG at 10 Hz did not alter baseline mean arterial pressure (MAP) but did significantly attenuate baroreflex control of heart rate (HR) evoked by low frequency ADN stimulation. Alternatively, 40 Hz dorsal PAG stimulation increased baseline MAP (43+/-3 mm Hg) and HR (33+/-3 bpm) and attenuated baroreflex control of HR at both ADN stimulation frequencies. Reflex control of MAP was generally unchanged by dorsal PAG stimulation. Bilateral inhibition of neurons in LPBN area (n=6) with muscimol (0.45 nmol per side) reduced dorsal PAG-evoked increases in MAP and HR by 50+/-4% and 95+/-4%, respectively, and significantly reduced, but did not completely eliminate dorsal PAG attenuation of the cardiac baroreflex. Bilateral blockade of glutamate receptors in the LPBN area (n=6) with kynurenic acid (1.8 nmol) had a similar effect on dorsal PAG-evoked increases in MAP, HR and cardiac baroreflex function. Reflex control of MAP was unchanged with either treatment. These findings suggest that the LPBN area is one of several brainstem regions involved in descending modulation of the cardiac baroreflex function during defensive behavior.
机译:导水管周围灰色(PAG)的激活引起了类似防御的行为,包括交感神经驱动力的明显增加和压力反射功能的复位。这项研究的目的是调查侧臂旁臂核(LPBN)在介导动脉压力反射的背PAG调制中的作用。在尿烷麻醉的大鼠(n = 18)中,通过以5 Hz或15 Hz电刺激主动脉降压神经(ADN)引起反射反应。以10 Hz电刺激背侧PAG不会改变基线平均动脉压(MAP),但会显着减弱低频ADN刺激引起的心律压力反射(HR)的压力反射控制。或者,在两个ADN刺激频率下,40 Hz背侧PAG刺激均会增加基线MAP(43 +/- 3 mm Hg)和HR(33 +/- 3 bpm),并减弱HR的压力反射控制。通过背侧PAG刺激,MAP的反射控制通常保持不变。 muscimol(每侧0.45 nmol)对LPBN区域(n = 6)的神经元进行双侧抑制,可使背侧PAG引起的MAP和HR升高分别降低50 +/- 4%和95 +/- 4%,并显着降低,但并未完全消除心脏压力反射的背侧PAG衰减。 Kynurenic acid(1.8 nmol)对LPBN区域(n = 6)的谷氨酸受体的双向阻滞对背侧PAG引起的MAP,HR和心脏压力反射功能的增加具有相似的作用。两种疗法的MAP反射控制均未改变。这些发现表明,LPBN区域是在防御行为期间参与心脏压力感受反射功能的递减调节的几个脑干区域之一。

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