Simultaneous noninvasive recording of skin sympathetic nerve activity and electrocardiogram

医学 利多卡因 心率 星状神经节 麻醉 瓦萨尔瓦机动 心脏病学 冷压试验 心电图 心动过速 心率变异性 内科学 血压 病理 替代医学
作者
Anisiia Doytchinova,Jonathan Hassel,Yuan Yuan,Hongbo Lin,Dechun Yin,David Adams,Susan Straka,Keith Wright,Kimberly Smith,David B. Wagner,Changyu Shen,Vicenta Salanova,Chad Meshberger,Lan S. Chen,John C. Kincaid,Arthur C. Coffey,Gang Wu,Yan Li,Richard J. Kovacs,Thomas H. Everett
出处
期刊:Heart Rhythm [Elsevier BV]
卷期号:14 (1): 25-33 被引量:135
标识
DOI:10.1016/j.hrthm.2016.09.019
摘要

Background Sympathetic nerve activity is important to cardiac arrhythmogenesis. Objective The purpose of this study was to develop a method for simultaneous noninvasive recording of skin sympathetic nerve activity (SKNA) and electrocardiogram (ECG) using conventional ECG electrodes. This method (neuECG) can be used to adequately estimate sympathetic tone. Methods We recorded neuECG signals from the skin of 56 human subjects. The signals were low-pass filtered to show the ECG and high-pass filtered to show nerve activity. Protocol 1 included 12 healthy volunteers who underwent cold water pressor test and Valsalva maneuver. Protocol 2 included 19 inpatients with epilepsy but without known heart diseases monitored for 24 hours. Protocol 3 included 22 patients admitted with electrical storm and monitored for 39.0 ± 28.2 hours. Protocol 4 included 3 patients who underwent bilateral stellate ganglion blockade with lidocaine injection. Results In patients without heart diseases, spontaneous nerve discharges were frequently observed at baseline and were associated with heart rate acceleration. SKNA recorded from chest leads (V1–V6) during cold water pressor test and Valsalva maneuver (protocol 1) was invariably higher than during baseline and recovery periods (P < .001). In protocol 2, the average SKNA correlated with heart rate acceleration (r = 0.73 ± 0.14, P < .05) and shortening of QT interval (P < .001). Among 146 spontaneous ventricular tachycardia episodes recorded in 9 patients of protocol 3, 106 episodes (73%) were preceded by SKNA within 30 seconds of onset. Protocol 4 showed that bilateral stellate ganglia blockade by lidocaine inhibited SKNA. Conclusion SKNA is detectable using conventional ECG electrodes in humans and may be useful in estimating sympathetic tone. Sympathetic nerve activity is important to cardiac arrhythmogenesis. The purpose of this study was to develop a method for simultaneous noninvasive recording of skin sympathetic nerve activity (SKNA) and electrocardiogram (ECG) using conventional ECG electrodes. This method (neuECG) can be used to adequately estimate sympathetic tone. We recorded neuECG signals from the skin of 56 human subjects. The signals were low-pass filtered to show the ECG and high-pass filtered to show nerve activity. Protocol 1 included 12 healthy volunteers who underwent cold water pressor test and Valsalva maneuver. Protocol 2 included 19 inpatients with epilepsy but without known heart diseases monitored for 24 hours. Protocol 3 included 22 patients admitted with electrical storm and monitored for 39.0 ± 28.2 hours. Protocol 4 included 3 patients who underwent bilateral stellate ganglion blockade with lidocaine injection. In patients without heart diseases, spontaneous nerve discharges were frequently observed at baseline and were associated with heart rate acceleration. SKNA recorded from chest leads (V1–V6) during cold water pressor test and Valsalva maneuver (protocol 1) was invariably higher than during baseline and recovery periods (P < .001). In protocol 2, the average SKNA correlated with heart rate acceleration (r = 0.73 ± 0.14, P < .05) and shortening of QT interval (P < .001). Among 146 spontaneous ventricular tachycardia episodes recorded in 9 patients of protocol 3, 106 episodes (73%) were preceded by SKNA within 30 seconds of onset. Protocol 4 showed that bilateral stellate ganglia blockade by lidocaine inhibited SKNA. SKNA is detectable using conventional ECG electrodes in humans and may be useful in estimating sympathetic tone.
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