首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Central-peripheral neural network interactions evoked by vagus nerve stimulation: functional consequences on control of cardiac function
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Central-peripheral neural network interactions evoked by vagus nerve stimulation: functional consequences on control of cardiac function

机译:迷走神经刺激引起的中枢周围神经网络相互作用:对控制心功能的功能性影响

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摘要

Using vagus nerve stimulation (VNS), we sought to determine the contribution of vagal afferents to efferent control of cardiac function. In anesthetized dogs, the right and left cervical vagosympathetic trunks were stimulated in the intact state, following ipsilateral or contralateral vagus nerve transection (VNTx), and then following bilateral VNTx. Stimulations were performed at currents from 0.25 to 4.0 mA, frequencies from 2 to 30 Hz, and a 500-μs pulse width. Right or left VNS evoked significantly greater current- and frequency-dependent suppression of chronotropic, inotropic, and lusitropic function subsequent to sequential VNTx. Bradycardia threshold was defined as the current first required for a 5% decrease in heart rate. The threshold for the right vs. left vagus-induced bradycardia in the intact state (2.91 ± 0.18 and 3.47 ± 0.20 mA, respectively) decreased significantly with right VNTx (1.69 ± 0.17 mA for right and 3.04 ± 0.27 mA for left) and decreased further following bilateral VNTx (1.29 ± 0.16 mA for right and 1.74 ± 0.19 mA for left). Similar effects were observed following left VNTx. The thresholds for afferent-mediated effects on cardiac parameters were 0.62 ± 0.04 and 0.65 ± 0.06 mA with right and left VNS, respectively, and were reflected primarily as augmentation. Afferent-mediated tachycardias were maintained following β-blockade but were eliminated by VNTx. The increased effectiveness and decrease in bradycardia threshold with sequential VNTx suggest that 1) vagal afferents inhibit centrally mediated parasympathetic efferent outflow and 2) the ipsilateral and contralateral vagi exert a substantial buffering capacity. The intact threshold reflects the interaction between multiple levels of the cardiac neural hierarchy.
机译:使用迷走神经刺激(VNS),我们试图确定迷走神经传入对心脏功能传出控制的贡献。在麻醉的狗中,在同侧或对侧迷走神经横断(VNTx)之后,然后在双侧VNTx之后,在完整状态下刺激左右颈交感神经干。在0.25至4.0 mA的电流,2至30 Hz的频率以及500μs的脉冲宽度下进行刺激。右VNS或左VNS在顺序VNTx之后引起明显的电流,频率依赖性的变时性,正性性和Lusitropic功能抑制。心动过缓阈值定义为当前心率降低5%首先需要的时间。右VNTx可使左迷走神经诱发的心动过缓在完整状态下的阈值(分别为2.91±0.18 mA和3.47±0.20 mA)(右为1.69±0.17 mA,左为3.04±0.27 mA)显着降低进一步跟随双侧VNTx(右侧为1.29±0.16 mA,左侧为1.74±0.19 mA)。左VNTx后观察到类似的效果。左右VNS对心脏参数的传入介导作用的阈值分别为0.62±0.04和0.65±0.06 mA,主要反映为增强。 β受体阻滞后维持传入介导的心动过速,但被VNTx消除。连续VNTx的有效性增加和心动过缓阈值降低表明1)迷走神经传入抑制中央介导的副交感神经传出流出,2)同侧和对侧迷走神经发挥重要的缓冲作用。完整的阈值反映了心脏神经层次的多个级别之间的相互作用。

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