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持续低水平迷走神经刺激可降低活动状态下犬的星状神经节神经活动和阵发性房性心动过速。

Continuous low-level vagus nerve stimulation reduces stellate ganglion nerve activity and paroxysmal atrial tachyarrhythmias in ambulatory canines.

机构信息

Krannert Institute of Cardiology, Division of Cardiology, Indiana University School of Medicine, Indianapolis, IN, USA.

出版信息

Circulation. 2011 May 24;123(20):2204-12. doi: 10.1161/CIRCULATIONAHA.111.018028. Epub 2011 May 9.


DOI:10.1161/CIRCULATIONAHA.111.018028
PMID:21555706
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3101282/
Abstract

BACKGROUND: We hypothesize that left-sided low-level vagus nerve stimulation (LL-VNS) can suppress sympathetic outflow and reduce atrial tachyarrhythmias in ambulatory dogs. METHODS AND RESULTS: We implanted a neurostimulator in 12 dogs to stimulate the left cervical vagus nerve and a radiotransmitter for continuous recording of left stellate ganglion nerve activity, vagal nerve activities, and ECGs. Group 1 dogs (N=6) underwent 1 week of continuous LL-VNS. Group 2 dogs (N=6) underwent intermittent rapid atrial pacing followed by active or sham LL-VNS on alternate weeks. Integrated stellate ganglion nerve activity was significantly reduced during LL-VNS (7.8 mV/s; 95% confidence interval [CI] 6.94 to 8.66 versus 9.4 mV/s [95% CI, 8.5 to 10.3] at baseline; P=0.033) in group 1. The reduction was most apparent at 8 am, along with a significantly reduced heart rate (P=0.008). Left-sided low-level vagus nerve stimulation did not change vagal nerve activity. The density of tyrosine hydroxylase-positive nerves in the left stellate ganglion 1 week after cessation of LL-VNS were 99 684 μm(2)/mm(2) (95% CI, 28 850 to 170 517) in LL-VNS dogs and 186 561 μm(2)/mm(2) (95% CI, 154 956 to 218 166; P=0.008) in normal dogs. In group 2, the frequencies of paroxysmal atrial fibrillation and tachycardia during active LL-VNS were 1.4/d (95% CI, 0.5 to 5.1) and 8.0/d (95% CI, 5.3 to 12.0), respectively, significantly lower than during sham stimulation (9.2/d [95% CI, 5.3 to 13.1]; P=0.001 and 22.0/d [95% CI, 19.1 to 25.5], P<0.001, respectively). CONCLUSIONS: Left-sided low-level vagus nerve stimulation suppresses stellate ganglion nerve activities and reduces the incidences of paroxysmal atrial tachyarrhythmias in ambulatory dogs. Significant neural remodeling of the left stellate ganglion is evident 1 week after cessation of continuous LL-VNS.

摘要

背景:我们假设左侧低水平迷走神经刺激(LL-VNS)可以抑制交感神经输出并减少活动犬的房性心动过速。

方法和结果:我们将神经刺激器植入 12 只狗中,以刺激左侧颈迷走神经和放射性发射器,用于连续记录左侧星状神经节神经活动、迷走神经活动和心电图。第 1 组(N=6 只狗)接受 1 周的连续 LL-VNS。第 2 组(N=6 只狗)接受间歇性快速心房起搏,然后在交替周进行主动或假 LL-VNS。在第 1 组中,LL-VNS 时星状神经节神经活动明显减少(7.8 mV/s;95%置信区间 [CI] 6.94 至 8.66 与基线时 9.4 mV/s [95% CI,8.5 至 10.3];P=0.033)。最明显的减少发生在早上 8 点,同时心率显著降低(P=0.008)。左侧低水平迷走神经刺激并未改变迷走神经活动。在停止 LL-VNS 1 周后,左侧星状神经节中酪氨酸羟化酶阳性神经的密度为 99684 μm(2)/mm(2)(95%CI,28850 至 170517)在 LL-VNS 犬中,186561 μm(2)/mm(2)(95%CI,154956 至 218166;P=0.008)在正常犬中。在第 2 组中,主动 LL-VNS 期间阵发性房颤和心动过速的频率分别为 1.4/d(95%CI,0.5 至 5.1)和 8.0/d(95%CI,5.3 至 12.0),明显低于假刺激时的频率(9.2/d[95%CI,5.3 至 13.1];P=0.001 和 22.0/d[95%CI,19.1 至 25.5],P<0.001)。

结论:左侧低水平迷走神经刺激抑制星状神经节神经活动并减少活动犬阵发性房性心动过速的发生率。在停止连续 LL-VNS 后 1 周,左侧星状神经节明显出现神经重塑。

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[1]
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本文引用的文献

[1]
Patterns of baseline autonomic nerve activity and the development of pacing-induced sustained atrial fibrillation.

Heart Rhythm. 2010-11-29

[2]
Non-pharmacological, non-ablative approaches for the treatment of atrial fibrillation: experimental evidence and potential clinical implications.

J Cardiovasc Transl Res. 2010-11-6

[3]
Chronic vagus nerve stimulation: a new and promising therapeutic approach for chronic heart failure.

Eur Heart J. 2010-10-28

[4]
Low-level vagosympathetic nerve stimulation inhibits atrial fibrillation inducibility: direct evidence by neural recordings from intrinsic cardiac ganglia.

J Cardiovasc Electrophysiol. 2010-10-13

[5]
Intrinsic cardiac nerve activity and paroxysmal atrial tachyarrhythmia in ambulatory dogs.

Circulation. 2010-6-7

[6]
Vagus nerve stimulation: a proven therapy for treatment of epilepsy strives to improve efficacy and expand applications.

Annu Int Conf IEEE Eng Med Biol Soc. 2009

[7]
Low-level vagosympathetic stimulation: a paradox and potential new modality for the treatment of focal atrial fibrillation.

Circ Arrhythm Electrophysiol. 2009-12

[8]
Chronic vagus nerve stimulation improves autonomic control and attenuates systemic inflammation and heart failure progression in a canine high-rate pacing model.

Circ Heart Fail. 2009-11

[9]
Vagal stimulation for heart failure: background and first in-man study.

Heart Rhythm. 2009-9-1

[10]
Spinal cord stimulation improves ventricular function and reduces ventricular arrhythmias in a canine postinfarction heart failure model.

Circulation. 2009-7-28

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