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Afferent vagal nerve stimulation resets baroreflex neural arc and inhibits sympathetic nerve activity

机译:传入阴道神经刺激重置苦罗克隆神经弧,抑制交感神经活动

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AbstractIt has been established that vagal nerve stimulation (VNS) benefits patients and/or animals with heart failure. However, the impact of VNS on sympathetic nerve activity (SNA) remains unknown. In this study, we investigated how vagal afferent stimulation (AVNS) impacts baroreflex control of SNA. In 12 anesthetized Sprague–Dawley rats, we controlled the pressure in isolated bilateral carotid sinuses (CSP), and measured splanchnic SNA and arterial pressure (AP). Under a constant CSP, increasing the voltage of AVNS dose dependently decreased SNA and AP. The averaged maximal inhibition of SNA was -28.0 ± 10.3%. To evaluate the dynamic impacts of AVNS on SNA, we performed random AVNS using binary white noise sequences, and identified the transfer function from AVNS to SNA and that from SNA to AP. We also identified transfer functions of the native baroreflex from CSP to SNA (neural arc) and from SNA to AP (peripheral arc). The transfer function from AVNS to SNA strikingly resembled the baroreflex neural arc and the transfer functions of SNA to AP were indistinguishable whether we perturbed ANVS or CSP, indicating that they likely share common central and peripheral neural mechanisms. To examine the impact of AVNS on baroreflex, we changed CSP stepwise and measured SNA and AP responses with or without AVNS. AVNS resets the sigmoidal neural arc downward, but did not affect the linear peripheral arc. In conclusion, AVNS resets the baroreflex neural arc and induces sympathoinhibition in the same manner as the control of SNA and AP by the native baroreflex.
机译:已经建立了迷重神经刺激(VNS)益于心力衰竭的患者和/或动物。然而,VNS对交感神经活动(SNA)的影响仍然未知。在这项研究中,我们调查了迷走的刺激(AVNS)如何影响SNA的Baroreflex控制。在12个麻醉的Sprague-Dawley大鼠中,我们控制了孤立的双侧颈动脉鼻窦(CSP)的压力,并测量了Sprancanc ana和动脉压(AP)。在恒定的CSP下,增加AVNS剂量的电压依赖性降低了SNA和AP。平均最大抑制SNA为-28.0±10.3%。为了评估AVN对SNA对SNA的动态影响,我们使用二进制白噪声序列执行随机AVN,并将来自AVN的传输函数识别到SNA,从SNA到AP。我们还确定了从CSP到SNA(神经弧)的天然Baroreflex的转移函数,并从SNA到AP(外围电弧)。从AVN到SNA的转移函数很自动地称为Baroreflex神经弧,并且SNA对AP的传递函数是难以区分的,无论我们扰乱ANV还是CSP,表明它们都可能分享共同的中央和外围神经机制。为了检查AVNS对Baroreflex的影响,我们逐步更改了CSP,并测量了SNA和AP响应,有或没有AVN。 AVNS向下重置符号神经弧,但不影响线性外围弧。总之,AVNS重置了大石榴弧神经弧,并以与天然BaroreFlex的Sna和AP的控制相同的方式诱导同情。

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