Wearable Devices Suitable for Monitoring Twenty Four Hour Heart Rate Variability in Military Populations
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[1] T. Wyss,et al. RR interval signal quality of a heart rate monitor and an ECG Holter at rest and during exercise , 2019, European Journal of Applied Physiology.
[2] M. Stone,et al. Reproducibility of 24-h ambulatory blood pressure and measures of autonomic function , 2017, Blood pressure monitoring.
[3] Maria Casagrande,et al. Heart Rate Variability and Cognitive Function: A Systematic Review , 2019, Front. Neurosci..
[4] M. Malik,et al. CrossTalk proposal: Heart rate variability is a valid measure of cardiac autonomic responsiveness , 2019, The Journal of physiology.
[5] V. Froelicher,et al. Heart Rate Variability: An Old Metric with New Meaning in the Era of Using mHealth technologies for Health and Exercise Training Guidance. Part Two: Prognosis and Training. , 2018, Arrhythmia & electrophysiology review.
[6] Aldo Quattrone,et al. Comparison between Electrocardiographic and Earlobe Pulse Photoplethysmographic Detection for Evaluating Heart Rate Variability in Healthy Subjects in Short- and Long-Term Recordings , 2018, Sensors.
[7] N. Naumovski,et al. Measuring Heart Rate Variability Using Commercially Available Devices in Healthy Children: A Validity and Reliability Study , 2020, European journal of investigation in health, psychology and education.
[8] A. Malliani,et al. Heart rate variability. Standards of measurement, physiological interpretation, and clinical use , 1996 .
[9] H. Kinnunen,et al. Feasible assessment of recovery and cardiovascular health: accuracy of nocturnal HR and HRV assessed via ring PPG in comparison to medical grade ECG , 2020, Physiological measurement.
[10] Matthias Weippert,et al. Heart rate and heart rate variability as indirect markers of surgeons’ intraoperative stress , 2014, International Archives of Occupational and Environmental Health.
[11] A. Seely,et al. Continuous Multi-Parameter Heart Rate Variability Analysis Heralds Onset of Sepsis in Adults , 2009, PloS one.
[12] Andreas V Larentzakis,et al. Can Wearable Devices Accurately Measure Heart Rate Variability? A Systematic Review , 2018, Folia medica.
[13] K. Søgaard,et al. Comparison of two systems for long-term heart rate variability monitoring in free-living conditions - a pilot study , 2011, Biomedical engineering online.
[14] Fokie Cnossen,et al. Heart rate variability as a measure of mental stress in surgery: a systematic review , 2020, International Archives of Occupational and Environmental Health.
[15] Misha Pavel,et al. Evaluation of the accuracy and reliability for photoplethysmography based heart rate and beat-to-beat detection during daily activities , 2017 .
[16] A. Kilding,et al. Evaluating training adaptation with heart-rate measures: a methodological comparison. , 2013, International journal of sports physiology and performance.
[17] John C. Young,et al. Reliability and Validation of the Hexoskin Wearable Bio-Collection Device During Walking Conditions , 2018, International journal of exercise science.
[18] Paul W. Franks,et al. Estimation of Free-Living Energy Expenditure by Heart Rate and Movement Sensing: A Doubly-Labelled Water Study , 2015, PloS one.
[19] W. Kibbe,et al. Investigating sources of inaccuracy in wearable optical heart rate sensors , 2020, npj Digital Medicine.
[20] F. Shaffer,et al. An Overview of Heart Rate Variability Metrics and Norms , 2017, Front. Public Health.
[21] William J. Tharion,et al. Acceptability and Usability of an Ambulatory Health Monitoring System for Use by Military Personnel , 2013 .
[22] A. Flatt,et al. Heart rate variability stabilization in athletes: towards more convenient data acquisition , 2016, Clinical physiology and functional imaging.
[23] D. Palomba,et al. Dysphoria is associated with reduced cardiac vagal withdrawal during the imagery of pleasant scripts: Evidence for the positive attenuation hypothesis , 2015, Biological Psychology.
[24] Pablo Laguna,et al. Methodological framework for heart rate variability analysis during exercise: application to running and cycling stress testing , 2018, Medical & Biological Engineering & Computing.
[25] Scott W Cheatham,et al. Concurrent validity of resting pulse-rate measurements: a comparison of 2 smartphone applications, the polar H7 belt monitor, and a pulse oximeter with bluetooth. , 2015, Journal of sport rehabilitation.
[26] Kristi B. Adamo,et al. Endurance Running Training Individually Guided by HRV in Untrained Women , 2017, Journal of strength and conditioning research.
[27] A. L. Short,et al. Rate of reduction of heart rate variability during exercise as an index of physical work capacity , 2007, Scandinavian journal of medicine & science in sports.
[28] Jørgen Skotte,et al. Prolonged Sitting is Associated with Attenuated Heart Rate Variability during Sleep in Blue-Collar Workers , 2015, International journal of environmental research and public health.
[29] Silvia Santini,et al. Evaluating the accuracy of heart rate sensors based on photoplethysmography for in-the-wild analysis , 2019, PervasiveHealth.
[30] D. van Heemst,et al. Comparative Analysis of the Equivital EQ02 Lifemonitor with Holter Ambulatory ECG Device for Continuous Measurement of ECG, Heart Rate, and Heart Rate Variability: A Validation Study for Precision and Accuracy , 2016, Front. Physiol..
[31] S. Cerutti,et al. Advances in heart rate variability signal analysis: joint position statement by the e-Cardiology ESC Working Group and the European Heart Rhythm Association co-endorsed by the Asia Pacific Heart Rhythm Society. , 2015, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[32] J. Castellani,et al. Physiological monitoring during multi-day Norwegian ski patrols in the arctic , 2017 .
[33] D. Bai,et al. Stress and Heart Rate Variability: A Meta-Analysis and Review of the Literature , 2018, Psychiatry investigation.
[34] Vladimir Coric,et al. Relation between cardiac vagal tone and performance in male military personnel exposed to high stress: three prospective studies. , 2007, Psychophysiology.
[35] Daniel J. Plews,et al. The Accuracy of Acquiring Heart Rate Variability from Portable Devices: A Systematic Review and Meta-Analysis , 2019, Sports Medicine.
[36] J. Thayer,et al. Vagal influence on working memory and attention. , 2003, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[37] M. Turiel,et al. Power Spectral Analysis of Heart Rate and Arterial Pressure Variabilities as a Marker of Sympatho‐Vagal Interaction in Man and Conscious Dog , 1986, Circulation research.
[38] Andy Adler,et al. Validation of the Empatica E4 wristband , 2016, 2016 IEEE EMBS International Student Conference (ISC).
[39] William J. Tharion,et al. Form Factor Evaluation of Open Body Area Network (OBAN) Physiological Status Monitoring (PSM) System Prototype Designs , 2018 .
[40] David Giles,et al. Validity of the Polar V800 heart rate monitor to measure RR intervals at rest , 2015, European Journal of Applied Physiology.
[41] Viola Vaccarino,et al. Is Heart Rate Variability Related to Memory Performance in Middle-Aged Men? , 2011, Psychosomatic medicine.
[42] Jari Laarni,et al. Promoting Soldier Cognitive Readiness for Battle Tank Operations Through Bio-signal Measurements , 2019, AHFE.
[43] A. Leicht,et al. Importance of Tachogram Length and Period of Recording during Noninvasive Investigation of the Autonomic Nervous System , 2012, Annals of noninvasive electrocardiology : the official journal of the International Society for Holter and Noninvasive Electrocardiology, Inc.
[44] G. Billman. The LF/HF ratio does not accurately measure cardiac sympatho-vagal balance , 2013, Front. Physio..
[45] J. Rosenberg,et al. Heart rate variability is reduced during acute uncomplicated diverticulitis. , 2016, Journal of critical care.