Abstract
Accurate prediction of the ovulation and menstrual days by bio-signals that can be easily measured is the wish of many women, and technological development for that will greatly contribute to women’s QOL. Although many studies have reported the differences in autonomic indices of heart rate variability (HRV) between the follicular and luteal phases, they have not yet reached the level that can predict the phases in the menstrual cycle. The dynamics of heart rate, however, carries plenty of information, and only a limited part of them has been examined in these studies. In this study, we conducted a comprehensive analysis of currently known HRV and heart rate dynamics measures in relation to the menstrual cycle.
Access this chapter
Tax calculation will be finalised at checkout
Purchases are for personal use only
Similar content being viewed by others
References
Bai, X., Li, J., Zhou, L., Li, X.: Influence of the menstrual cycle on nonlinear properties of heart rate variability in young women. Am. J. Physiol. Heart Circ. Physiol. 297(2), H765–H774 (2009)
de Zambotti, M., Nicholas, C.L., Colrain, I.M., Trinder, J.A., Baker, F.C.: Autonomic regulation across phases of the menstrual cycle and sleep stages in women with premenstrual syndrome and healthy controls. Psychoneuroendocrinology 38(11), 2618–2627 (2013)
Guasti, L., Grimoldi, P., Mainardi, L.T., Petrozzino, M.R., Piantanida, E., Garganico, D., Diolisi, A., Zanotta, D., Bertolini, A., Ageno, W., Grandi, A.M., Cerutti, S., Venco, A.: Autonomic function and baroreflex sensitivity during a normal ovulatory cycle in humans. Acta Cardiol. 54(4), 209–213 (1999)
Leicht, A.S., Hirning, D.A., Allen, G.D.: Heart rate variability and endogenous sex hormones during the menstrual cycle in young women. Exp. Physiol. 88(3), 441–446 (2003)
Sato, N., Miyake, S.: Cardiovascular reactivity to mental stress: relationship with menstrual cycle and gender. J. Physiol. Anthropol. Appl. Hum. Sci. 23(6), 215–223 (2004)
Yildirir, A., Kabakci, G., Akgul, E., Tokgozoglu, L., Oto, A.: Effects of menstrual cycle on cardiac autonomic innervation as assessed by heart rate variability. Ann. Noninvasive Electrocardiol. 7(1), 60–63 (2002)
Pincus, S.M.: Approximate entropy as a measure of system complexity. Proc. Natl. Acad. Sci. U.S.A. 88, 2297–2301 (1991)
Hayano, J., Ohashi, K., Yoshida, Y., Yuda, E., Nakamura, T., Kiyono, K., Yamamoto, Y.: Increase in random component of heart rate variability coinciding with developmental and degenerative stages of life. Physiol. Meas. 39(5), 054004 (2018)
Peng, C.K., Havlin, S., Stanley, H.E., Goldberger, A.L.: Quantification of scaling exponents and crossover phenomena in nonstationary heartbeat time series. CHAOS 5(1), 82–87 (1995)
Iyengar, N., Peng, C.K., Morin, R., Goldberger, A.L., Lipsitz, L.A.: Age-related alterations in the fractal scaling of cardiac interbeat interval dynamics. Am. J. Physiol. 271, R1078–R1084 (1996)
Kiyono, K., Struzik, Z.R., Aoyagi, N., Sakata, S., Hayano, J., Yamamoto, Y.: Critical scale invariance in a healthy human heart rate. Phys. Rev. Lett. 93(17), 178103 (2004)
Kiyono, K., Hayano, J., Watanabe, E., Struzik, Z.R., Yamamoto, Y.: Non-Gaussian heart rate as an independent predictor of mortality in patients with chronic heart failure. Heart Rhythm 5(2), 261–268 (2008)
Kantelhardt, J.W., Bauer, A., Schumann, A.Y., Barthel, P., Schneider, R., Malik, M., Schmidt, G.: Phase-rectified signal averaging for the detection of quasi-periodicities and the prediction of cardiovascular risk. CHAOS 17(1), 015112 (2007)
Bauer, A., Kantelhardt, J.W., Barthel, P., Schneider, R., Makikallio, T., Ulm, K., Hnatkova, K., Schomig, A., Huikuri, H., Bunde, A., Malik, M., Schmidt, G.: Deceleration capacity of heart rate as a predictor of mortality after myocardial infarction: cohort study. Lancet. 367(9523), 1674–1681 (2006). ISSN 0099-5355
Hayano, J., Yasuma, F., Watanabe, E., Carney, R.M., Stein, P.K., Blumenthal, J.A., Arsenos, P., Gatzoulis, K.A., Takahashi, H., Ishii, H., Kiyono, K., Yamamoto, Y., Yoshida, Y., Yuda, E., Kodama, I.: Blunted cyclic variation of heart rate predicts mortality risk in post-myocardial infarction, end-stage renal disease, and chronic heart failure patients. Europace 19(8), 1392–1400 (2017)
Yuda, E., Yoshida, Y., Hayano, J.: Impacts of sleeping time during the day on the timing and level of basal heart rate: analysis of ALLSTAR big data. Wireless Networks Online, pp. 1–5 (2018)
Penzel, T., Kantelhardt, J.W., Grote, L., Peter, J.H., Bunde, A.: Comparison of detrended fluctuation analysis and spectral analysis for heart rate variability in sleep and sleep apnea. IEEE Trans. Biomed. Eng. 50(10), 1143–1151 (2003)
Adane, M., Jiang, Z., Yan, Z.: Sleep–wake stages classification and sleep efficiency estimation using single-lead electrocardiogram. Expert Syst. Appl. 39(1), 1401–1413 (2012)
Hayano, J., Yuda, E., Yoshida, Y. (eds.): Novel sleep indicator of heart rate variability: power concentration index of high-frequency component. In: The 39th Annual International Conference of the IEEE Engineering in Medicine and Biology Society, Jeju Island, Korea, 11–15 July 2017 (2017)
Hayano, J., Watanabe, E., Saito, Y., Sasaki, F., Fujimoto, K., Nomiyama, T., Kawai, K., Kodama, I., Sakakibara, H.: Screening for obstructive sleep apnea by cyclic variation of heart rate. Circ.: Arrhythmia Electrophysiol. 4(1), 64–72 (2011)
Hayano, J., Tsukahara, T., Watanabe, E., Sasaki, F., Kawai, K., Sakakibara, H., Kodama, I., Nomiyama, T., Fujimoto, K.: Accuracy of ECG-based screening for sleep-disordered breathing: a survey of all male workers in a transport company. Sleep Breath 17(1), 243–251 (2013)
Camm, A.J., Malik, M., Bigger Jr., J.T., Breithardt, G., Cerutti, S., Cohen, R.J., Coumel, P., Fallen, E.L., Kleiger, R.E., Lombardi, F., Malliani, A., Moss, A.J., Rottman, J.N., Schmidt, G., Schwartz, P.J., Singer, D.H.: Task force of the European society of cardiology and the North American society of pacing and electrophysiology. Heart rate variability: standards of measurement, physiological interpretation and clinical use. Circulation 93(5), 1043–1065 (1996)
Costa, M.D., Davis, R.B., Goldberger, A.L.: Heart rate fragmentation: a symbolic dynamical approach. Front. Physiol. 8, 827 (2017)
Author information
Authors and Affiliations
Corresponding author
Editor information
Editors and Affiliations
Rights and permissions
Copyright information
© 2020 Springer Nature Switzerland AG
About this paper
Cite this paper
Yuda, E., Hayano, J. (2020). Changes in Heart Rate Dynamics with Menstrual Cycles. In: Vasant, P., Zelinka, I., Weber, GW. (eds) Intelligent Computing and Optimization. ICO 2019. Advances in Intelligent Systems and Computing, vol 1072. Springer, Cham. https://doi.org/10.1007/978-3-030-33585-4_14
Download citation
DOI: https://doi.org/10.1007/978-3-030-33585-4_14
Published:
Publisher Name: Springer, Cham
Print ISBN: 978-3-030-33584-7
Online ISBN: 978-3-030-33585-4
eBook Packages: Intelligent Technologies and RoboticsIntelligent Technologies and Robotics (R0)