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刺激不同部位的心外膜交感神经可导致不同程度的心脏电不稳定。

Stimulation of Epicardial Sympathetic Nerves at Different Sites Induces Cardiac Electrical Instability to Various Degrees.

机构信息

The First Affiliated Hospital of Harbin Medical University, Harbin, China.

Henan Provincial Chest Hospital, Henan, China.

出版信息

Sci Rep. 2018 Jan 17;8(1):994. doi: 10.1038/s41598-018-19304-2.

Abstract

The cardiac sympathetic nerves distribute across cardiac tissues with uneven density. Yet, to what extent this anatomical heterogeneity affects electrical activity of the left ventricle is largely unknown. Dogs were randomized into non-stimulation control (NC), posterior basal-stimulation (PB), anterior superior-stimulation (AS), apical part-stimulation (AP) group. The epicardial sympathetic nerves at different sites along their distribution were with electrical stimulation (ES) for 4 hours except in the NC group. The myocardial effective refractory period (ERP), ventricular fibrillation threshold (VFT) and density of sympathetic nerves were recorded. Compared with ES at other places, the stimulation at PB site significantly shortened ERP (left ventricular anterior and posterior walls; PB group, 118 ± 4 ms, 106 ± 2 ms; Versus NC group, 155 ± 3.5 ms, 160 ± 3 ms; p < 0.01) and VFT (PB group, 11.5 ± 1.5 V; Versus NC group, 20.5 ± 0.9 V; p < 0.01), and induced remarkable regeneration of the cardiac sympathetic nerves, hence influencing electrical activity of the left ventricle to the most extent. Our study demonstrates that the degree of induced ventricular electrical instability is correlated tightly with the density of sympathetic nerves around ES site, and PB site is a potential target for modulating ventricular electrical activity to the maximal extent.

摘要

心脏交感神经在心脏组织中分布不均匀。然而,这种解剖学异质性在多大程度上影响左心室的电活动还很大程度上未知。狗被随机分为非刺激对照组(NC)、后基底刺激组(PB)、前上刺激组(AS)和心尖部刺激组(AP)。除 NC 组外,在其分布的不同部位用电刺激(ES)刺激心外膜交感神经 4 小时。记录心肌有效不应期(ERP)、室颤阈值(VFT)和交感神经密度。与其他部位的 ES 相比,PB 部位的刺激显著缩短了 ERP(左心室前壁和后壁;PB 组,118±4 ms,106±2 ms;与 NC 组相比,155±3.5 ms,160±3 ms;p<0.01)和 VFT(PB 组,11.5±1.5 V;与 NC 组相比,20.5±0.9 V;p<0.01),并引起心脏交感神经的显著再生,从而对左心室的电活动产生最大的影响。我们的研究表明,诱导心室电不稳定性的程度与 ES 部位周围交感神经的密度密切相关,PB 部位是调节心室电活动的潜在靶点,可以最大程度地调节心室电活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/663f/5772557/229fdcc9ce10/41598_2018_19304_Fig1_HTML.jpg

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