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

Author:

Liao Donghua1,Nedergaard Rasmus B.1ORCID,Unnisa Misbah2,Mahapatra Soumya J.3,Faghih Mahya45,Phillips Anna E.6,Yadav Dhiraj6,Singh Vikesh K.45,Olesen Søren S.17,Talukdar Rupjyoti2,Garg Pramod K.3,Niazi Imran K.8ORCID,Brock Christina17,Drewes Asbjørn M.17ORCID

Affiliation:

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

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

3. Department of Gastroenterology, All India Institute of Medical Sciences, New Delhi 110016, India

4. Division of Gastroenterology, Department of Medicine, Johns Hopkins Medical Institutions, Baltimore, MD 21287, USA

5. Pancreatitis Center, Department of Medicine, Johns Hopkins Medical Institutions, Baltimore, MD 21287, USA

6. Division of Gastroenterology, Hepatology, and Nutrition, Department of Medicine, School of Medicine, University of Pittsburgh, Pittsburgh, PA 15213, USA

7. Department of Clinical Medicine, Aalborg University, 9220 Aalborg, Denmark

8. Centre for Chiropractic Research, New Zealand College of Chiropractic, Auckland 1060, New Zealand

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 (p = 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.

Funder

Aalborg University Hospital

Publisher

MDPI AG

Subject

Bioengineering

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