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使用德州仪器ADS1299对静息和疼痛期间交感-迷走神经平衡进行心电图评估。

Electrocardiography Assessment of Sympatico-Vagal Balance during Resting and Pain Using the Texas Instruments ADS1299.

作者信息

Liao Donghua, Nedergaard Rasmus B, Unnisa Misbah, Mahapatra Soumya J, Faghih Mahya, Phillips Anna E, Yadav Dhiraj, Singh Vikesh K, Olesen Søren S, Talukdar Rupjyoti, Garg Pramod K, Niazi Imran K, Brock Christina, Drewes Asbjørn M

机构信息

Mech-Sense, Department of Gastroenterology and Hepatology, Aalborg University Hospital, 9000 Aalborg, Denmark.

Department of Medical Gastroenterology, Asian Institute of Gastroenterology, Hyderabad 500082, India.

出版信息

Bioengineering (Basel). 2023 Feb 3;10(2):205. doi: 10.3390/bioengineering10020205.

Abstract

Sympatico-vagal balance is essential for regulating cardiac electrophysiology and plays an important role in arrhythmogenic conditions. Various noninvasive methods, including electrocardiography (ECG), have been used for clinical assessment of the sympatico-vagal balance. This study aimed to use a custom-designed wearable device to record ECG and ECG-based cardiac function biomarkers to assess sympatico-vagal balance during tonic pain in healthy controls. Nineteen healthy volunteers were included for the ECG measurements using the custom-designed amplifier based on the Texas Instruments ADS1299. The ECG-based biomarkers of the sympatico-vagal balance, (including heart rate variability, deceleration capacity of the heart rate, and periodic repolarization dynamic), were calculated and compared between resting and pain conditions (tonic pain). The custom-designed device provided technically satisfactory ECG recordings. During exposure to tonic pain, the periodic repolarization dynamics increased significantly ( = 0.02), indicating enhancement of sympathetic nervous activity. This study showed that custom-designed wearable devices can potentially be useful in healthcare as a new telemetry technology. The ECG-based novel biomarkers, including periodic repolarization dynamic and deceleration capacity of heart rate, can be used to identify the cold pressor-induced activation of sympathetic and parasympathetic systems, making it useful for future studies on pain-evoked biomarkers.

摘要

交感 - 迷走神经平衡对于调节心脏电生理至关重要,并且在致心律失常的情况下发挥重要作用。包括心电图(ECG)在内的各种非侵入性方法已被用于交感 - 迷走神经平衡的临床评估。本研究旨在使用定制的可穿戴设备记录心电图以及基于心电图的心脏功能生物标志物,以评估健康对照者在持续性疼痛期间的交感 - 迷走神经平衡。纳入了19名健康志愿者,使用基于德州仪器ADS1299定制设计的放大器进行心电图测量。计算并比较了休息和疼痛状态(持续性疼痛)下基于心电图的交感 - 迷走神经平衡生物标志物(包括心率变异性、心率减速能力和周期性复极动态)。定制设计的设备提供了技术上令人满意的心电图记录。在持续性疼痛暴露期间,周期性复极动态显著增加( = 0.02),表明交感神经活动增强。本研究表明,定制的可穿戴设备作为一种新的遥测技术,在医疗保健中可能具有潜在用途。基于心电图的新型生物标志物,包括周期性复极动态和心率减速能力,可用于识别冷加压诱导的交感和副交感神经系统激活,这使其对未来关于疼痛诱发生物标志物的研究有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67ba/9952434/75a14d9ec91c/bioengineering-10-00205-g001.jpg

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