Fractal Analysis and Hurst Parameter for Intrapartum Fetal Heart Rate Variability Analysis: A Versatile Alternative to Frequency Bands and LF/HF Ratio
暂无分享,去创建一个
Patrice Abry | Muriel Doret | Jiří Spilka | Václav Chudáček | P. Abry | P. Gonçalves | M. Doret | J. Spilka | V. Chudácek | Paulo Gonçalves | Paulo Gonçalves
[1] S. Yi,et al. Spectral analysis of fetal heart rate variability as a predictor of intrapartum fetal distress , 2001, International journal of gynaecology and obstetrics: the official organ of the International Federation of Gynaecology and Obstetrics.
[2] J. Taylor,et al. Short‐term cardiovascular oscillations in man: measuring and modelling the physiologies , 2002, The Journal of physiology.
[3] D. Goldstein,et al. Low‐frequency power of heart rate variability is not a measure of cardiac sympathetic tone but may be a measure of modulation of cardiac autonomic outflows by baroreflexes , 2011, Experimental physiology.
[4] Yoshitaka Kimura,et al. Alteration in the Low-Frequency Domain in Power Spectral Analysisof Fetal Heart Beat Fluctuations , 1999, Fetal Diagnosis and Therapy.
[5] V. Tsatsaris,et al. Inter‐observer agreement in clinical decision‐making for abnormal cardiotocogram (CTG) during labour: a comparison between CTG and CTG plus STAN , 2009, BJOG : an international journal of obstetrics and gynaecology.
[6] P. Ivanov. Scale-invariant Aspects of Cardiac Dynamics Across Sleep Stages and Circadian Phases , 2007, 2006 International Conference of the IEEE Engineering in Medicine and Biology Society.
[7] L Lhotská,et al. Automatic evaluation of intrapartum fetal heart rate recordings: a comprehensive analysis of useful features , 2011, Physiological measurement.
[8] Karl G Rosén,et al. Marked fetal acidosis and specific changes in power spectrum analysis of fetal heart rate variability recorded during the last hour of labour , 2005, BJOG : an international journal of obstetrics and gynaecology.
[9] G S Dawes,et al. Short–Term Fetal Heart Rate Variation, Decelerations, and Umbilical Flow Velocity Waveforms Before Labor , 1992, Obstetrics and gynecology.
[10] Ana Paula Rocha,et al. Linear and nonlinear analysis of heart rate patterns associated with fetal behavioral states in the antepartum period. , 2007, Early human development.
[11] João Bernardes,et al. Complexity-loss in fetal heart rate dynamics during labor as a potential biomarker of acidemia. , 2014, Early human development.
[12] M. Malik. Heart Rate Variability , 1996, Clinical cardiology.
[13] M. Moulden,et al. A computer system for the numerical analysis of nonstress tests. , 2002, American journal of obstetrics and gynecology.
[14] Jacques-Olivier Fortrat. Inaccurate normal values of heart rate variability spectral analysis in newborn infants. , 2002, The American journal of cardiology.
[15] Z. Alfirevic,et al. Continuous cardiotocography (CTG) as a form of electronic fetal monitoring (EFM) for fetal assessment during labour. , 2006, The Cochrane database of systematic reviews.
[16] Reza Tafreshi,et al. Specific change in spectral power of fetal heart rate variability related to fetal acidemia during labor: comparison between preterm and term fetuses. , 2012, Early human development.
[17] Patrice Abry,et al. A Wavelet-Based Joint Estimator of the Parameters of Long-Range Dependence , 1999, IEEE Trans. Inf. Theory.
[18] S. Siira,et al. Periodic spectral components of fetal heart rate variability reflect the changes in cord arterial base deficit values: a preliminary report. , 2001, Early human development.
[19] Toru Nakamura,et al. Local Holder exponent analysis of heart rate variability in preterm infants , 2006, IEEE Transactions on Biomedical Engineering.
[20] Jongil Lim,et al. Changes in spectral power of fetal heart rate variability in small-for-gestational-age fetuses are associated with fetal sex. , 2014, Early human development.
[21] Patrice Abry,et al. Multifractal analysis of fetal heart rate variability in fetuses with and without severe acidosis during labor. , 2011, American journal of perinatology.
[22] P. Stein,et al. Heart rate variability in risk stratification of cardiac patients. , 2013, Progress in cardiovascular diseases.
[23] Edwin Chandraharan,et al. Prevention of birth asphyxia: responding appropriately to cardiotocograph (CTG) traces. , 2007, Best practice & research. Clinical obstetrics & gynaecology.
[24] Laura Bennet,et al. Ontogeny and control of the heart rate power spectrum in the last third of gestation in fetal sheep , 2014, Experimental physiology.
[25] R. Victory,et al. Umbilical cord pH and base excess values in relation to adverse outcome events for infants delivering at term. , 2004, American journal of obstetrics and gynecology.
[26] J. V. van Laar,et al. Spectral analysis of fetal heart rate variability for fetal surveillance: review of the literature , 2008, Acta obstetricia et gynecologica Scandinavica.
[27] J Haueisen,et al. Fetal heart rate variability reveals differential dynamics in the intrauterine development of the sympathetic and parasympathetic branches of the autonomic nervous system , 2009, Physiological measurement.
[28] Can Ozan Tan,et al. Fractal properties of human heart period variability: physiological and methodological implications , 2009, Journal of Physiology.
[29] Paulo Gonçalves,et al. Hurst exponent and intrapartum fetal heart rate: Impact of decelerations , 2013, Proceedings of the 26th IEEE International Symposium on Computer-Based Medical Systems.
[30] H. Stanley,et al. Multifractal Detrended Fluctuation Analysis of Nonstationary Time Series , 2002, physics/0202070.
[31] A. Malliani,et al. Heart rate variability. Standards of measurement, physiological interpretation, and clinical use , 1996 .
[32] S. Houterman,et al. Fetal autonomic response to severe acidaemia during labour , 2010, BJOG : an international journal of obstetrics and gynaecology.
[33] Pascal Gaucherand,et al. Use of peripartum ST analysis of fetal electrocardiogram without blood sampling: a large prospective cohort study. , 2011, European journal of obstetrics, gynecology, and reproductive biology.
[34] L. Oppenheimer,et al. Power spectral analysis of fetal heart rate. , 1994, Bailliere's clinical obstetrics and gynaecology.
[35] I. Salloum,et al. Computerized analysis of fetal heart rate variability using the matching pursuit technique as an indicator of fetal hypoxia during labor , 2006, The journal of maternal-fetal & neonatal medicine : the official journal of the European Association of Perinatal Medicine, the Federation of Asia and Oceania Perinatal Societies, the International Society of Perinatal Obstetricians.
[36] Dietrich Grönemeyer,et al. Changes in the frequency power spectrum of fetal heart rate in the course of pregnancy , 2003, Prenatal diagnosis.
[37] Solange Akselrod,et al. An estimate of fetal autonomic state by time-frequency analysis of fetal heart rate variability. , 2007, Journal of applied physiology.
[38] R. Cohen,et al. Power spectrum analysis of heart rate fluctuation: a quantitative probe of beat-to-beat cardiovascular control. , 1981, Science.
[39] G. Visser,et al. Changes with time in fetal heart rate variation, movement incidences and haemodynamics in intrauterine growth retarded fetuses: a longitudinal approach to the assessment of fetal well being. , 1993, Early human development.
[40] E. Graham,et al. Intrapartum electronic fetal heart rate monitoring and the identification of metabolic acidosis and hypoxic-ischemic encephalopathy. , 2007, American journal of obstetrics and gynecology.
[41] Keith Willson,et al. Physiological basis of fractal complexity properties of heart rate variability in man , 2002, The Journal of physiology.
[42] L. Oppenheimer,et al. 7 Power spectral analysis of fetal heart rate , 1994 .
[43] C. Spong,et al. The 2008 National Institute of Child Health and Human Development workshop report on electronic fetal monitoring: update on definitions, interpretation, and research guidelines. , 2008, Journal of obstetric, gynecologic, and neonatal nursing : JOGNN.
[44] Patrice Abry,et al. Scaling range automated selection for wavelet leader multifractal analysis , 2014, Signal Process..
[45] Sandra Hernandez,et al. Visual analysis of antepartum fetal heart rate tracings: inter- and intra-observer agreement and impact of knowledge of neonatal outcome , 2005, Journal of perinatal medicine.
[46] Scale-Invariant Aspects of Cardiac Dynamics , 2022 .
[47] Joakim Andén,et al. Scattering Transform for Intrapartum Fetal Heart Rate Variability Fractal Analysis: A Case-Control Study , 2014, IEEE Transactions on Biomedical Engineering.
[48] N. Prabhakar. Sensing hypoxia: physiology, genetics and epigenetics , 2013, The Journal of physiology.
[49] Everett F. Magann,et al. Intrapartum nonreassuring fetal heart rate tracing and prediction of adverse outcomes: interobserver variability. , 2008, American journal of obstetrics and gynecology.
[50] Sergio Cerutti,et al. Linear and nonlinear parameters for the analysisof fetal heart rate signal from cardiotocographic recordings , 2003, IEEE Transactions on Biomedical Engineering.
[51] John J. B. Allen,et al. Characterization of the fetal diaphragmatic magnetomyogram and the effect of breathing movements on cardiac metrics of rate and variability. , 2011, Early human development.
[52] G. Breithardt,et al. Heart rate variability: standards of measurement, physiological interpretation and clinical use. Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology. , 1996 .
[53] J. Low,et al. Predictive value of electronic fetal monitoring for intrapartum fetal asphyxia with metabolic acidosis. , 1999, Obstetrics and gynecology.
[54] K. Rosen,et al. Do spectral bands of fetal heart rate variability associate with concomitant fetal scalp pH? , 2013, Early human development.
[55] K. Maršál,et al. Cardiotocography only versus cardiotocography plus ST analysis of fetal electrocardiogram for intrapartum fetal monitoring: a Swedish randomised controlled trial , 2001, The Lancet.