Modeling the Pulse Signal by Wave-Shape Function and Analyzing by Synchrosqueezing Transform
暂无分享,去创建一个
Hau-Tieng Wu | Hen-Hong Chang | Tung-Hu Tsai | Hau-Tieng Wu | T. Tsai | Hen-Hong Chang | Han-Kuei Wu | Wen-Hsiang Wu | Chun-Li Wang | Yueh-Lung Yang | Han-Kuei Wu | Chun-Li Wang | Yueh-Lung Yang | Wen-Hsiang Wu | Hau‐Tieng Wu
[1] L. Brush,et al. McDonaldʼs Blood Flow in Arteries , 1991 .
[2] Ming-Yie Jan,et al. Review: Theory and Applications of the Harmonic Analysis of Arterial Pressure Pulse Waves , 2010 .
[3] Paolo Salvi,et al. Pulse Waves: How Vascular Hemodynamics Affects Blood Pressure , 2012 .
[4] Hau-tieng Wu,et al. Convex Optimization approach to signals with fast varying instantaneous frequency , 2015, 1503.07591.
[5] Berend E. Westerhof,et al. Location of a Reflection Site Is Elusive: Consequences for the Calculation of Aortic Pulse Wave Velocity , 2008, Hypertension.
[6] Chien-Chen Chang,et al. Stringlike pulse quantification study by pulse wave in 3D pulse mapping. , 2012, Journal of alternative and complementary medicine.
[7] Michael F. O'Rourke,et al. McDonald's blood flow in arteries : theoretic, experimental, and clinical principles , 1990 .
[8] Ingrid Daubechies,et al. Ten Lectures on Wavelets , 1992 .
[9] Y. Y. Wang,et al. Resonance. The missing phenomenon in hemodynamics. , 1991, Circulation research.
[10] Zhong-Ke Gao,et al. Characterizing slug to churn flow transition by using multivariate pseudo Wigner distribution and multivariate multiscale entropy , 2016 .
[11] Westgate Road,et al. Photoplethysmography and its application in clinical physiological measurement , 2007 .
[12] R. Collins,et al. Age-specific relevance of usual blood pressure to vascular mortality: a meta-analysis of individual data for one million adults in 61 prospective studies , 2002, The Lancet.
[13] Thomas Y. Hou,et al. Extracting a shape function for a signal with intra-wave frequency modulation , 2015, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[14] Application of sphygmography to detection of dyspepsia and the rhinitis. , 2011, The American journal of Chinese medicine.
[15] Ming-Yie Jan,et al. Past, Present, and Future of the Pulse Examination (脈診 mài zhěn) , 2012, Journal of traditional and complementary medicine.
[16] I. Daubechies,et al. Synchrosqueezed wavelet transforms: An empirical mode decomposition-like tool , 2011 .
[17] Zhong-Ke Gao,et al. Multivariate weighted complex network analysis for characterizing nonlinear dynamic behavior in two-phase flow , 2015 .
[18] H Hsiu,et al. The importance of pulsatile microcirculation in relation to hypertension. , 2000, IEEE engineering in medicine and biology magazine : the quarterly magazine of the Engineering in Medicine & Biology Society.
[19] M. G. Taylor,et al. Use of Random Excitation and Spectral Analysis in the Study of Frequency‐Dependent Parameters of the Cardiovascular System , 1966, Circulation research.
[20] Ljubisa Stankovic,et al. Synchrosqueezing-based time-frequency analysis of multivariate data , 2015, Signal Process..
[21] Zhong-Ke Gao,et al. Multi-frequency complex network from time series for uncovering oil-water flow structure , 2015, Scientific Reports.
[22] Jianzhong Zhang,et al. Synchrosqueezing S-Transform and Its Application in Seismic Spectral Decomposition , 2016, IEEE Transactions on Geoscience and Remote Sensing.
[23] Maria I. Davila. Noncontact Extraction of Human Arterial Pulse with a Commercial Digital Color Video Camera , 2012 .
[24] J. Tsao,et al. Time‐varying spectral analysis revealing differential effects of sevoflurane anaesthesia: non‐rhythmic‐to‐rhythmic ratio , 2014, Acta anaesthesiologica Scandinavica.
[25] A. Khoshdel. Time to end a doubt: is pulse wave analysis a valid measure for central arterial blood pressure and arterial stiffness? , 2007, Journal of hypertension.
[26] Jin-Ting Zhang,et al. One‐Way anova for Functional Data via Globalizing the Pointwise F‐test , 2014 .
[27] M. Malik. Heart Rate Variability , 1996, Clinical cardiology.
[28] B. Silverman,et al. Functional Data Analysis , 1997 .
[29] N. Huang,et al. The empirical mode decomposition and the Hilbert spectrum for nonlinear and non-stationary time series analysis , 1998, Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[30] Christodoulos Stefanadis,et al. Prediction of cardiovascular events and all-cause mortality with central haemodynamics: a systematic review and meta-analysis. , 2010, European heart journal.
[31] Roman Rosipal,et al. Overview and Recent Advances in Partial Least Squares , 2005, SLSFS.
[32] Jaeuk U. Kim,et al. A Clinical Study of the Pulse Wave Characteristics at the Three Pulse Diagnosis Positions of Chon, Gwan and Cheok , 2011, Evidence-based complementary and alternative medicine : eCAM.
[33] Tsai-Chung Li,et al. Developing the Effective Method of Spectral Harmonic Energy Ratio to Analyze the Arterial Pulse Spectrum , 2011, Evidence-based complementary and alternative medicine : eCAM.
[34] Hsin Hsiu,et al. Organ‐specific ligation‐induced changes in harmonic components of the pulse spectrum and regional vasoconstrictor selectivity in Wistar rats , 2006, Experimental physiology.
[35] E. Lakatta,et al. Functional Correlates of Central Arterial Geometric Phenotypes , 2001, Hypertension.
[36] D. Levy,et al. Survival After the Onset of Congestive Heart Failure in Framingham Heart Study Subjects , 1993, Circulation.
[37] Zhongke Gao,et al. A directed weighted complex network for characterizing chaotic dynamics from time series , 2012 .
[38] Hau-Tieng Wu,et al. Non‐parametric and adaptive modelling of dynamic periodicity and trend with heteroscedastic and dependent errors , 2014 .
[39] Ming-Yie Jan,et al. The natural frequencies of the arterial system and their relation to the heart rate , 2004, IEEE Transactions on Biomedical Engineering.
[40] Haizhao Yang,et al. Synchrosqueezed wave packet transforms and diffeomorphism based spectral analysis for 1D general mode decompositions , 2013, 1311.4655.
[41] W. Nichols,et al. McDonald's Blood Flow in Arteries: Theoretical, Experimental and Clinical Principles , 1998 .
[42] J. Cockcroft,et al. Central blood pressure: current evidence and clinical importance. , 2014, European heart journal.
[43] Nigel Wiseman,et al. A practical dictionary of Chinese medicine , 1998 .
[44] Bruno Torrésani,et al. An optimally concentrated Gabor transform for localized time-frequency components , 2014, Adv. Comput. Math..
[45] Hau-Tieng Wu,et al. Impact of Ventilatory Modes on the Breathing Variability in Mechanically Ventilated Infants , 2014, Front. Pediatr..
[46] Thomas Y. Hou,et al. Extraction of Intrawave Signals Using the Sparse Time-Frequency Representation Method , 2014, Multiscale Model. Simul..
[47] P. Laguna,et al. Photoplethysmography pulse rate variability as a surrogate measurement of heart rate variability during non-stationary conditions , 2010, Physiological measurement.
[48] Y. Fung,et al. Mechanics of the Circulation , 2011, Developments in Cardiovascular Medicine.
[49] C H Chen,et al. Validation of carotid artery tonometry as a means of estimating augmentation index of ascending aortic pressure. , 1996, Hypertension.
[50] Ingrid Daubechies,et al. Optimizing Estimates of Instantaneous Heart Rate from Pulse Wave Signals with the Synchrosqueezing Transform , 2016, Methods of Information in Medicine.
[51] Yi Wang,et al. ConceFT: concentration of frequency and time via a multitapered synchrosqueezed transform , 2015, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[52] Hau-Tieng Wu,et al. Assess Sleep Stage by Modern Signal Processing Techniques , 2014, IEEE Transactions on Biomedical Engineering.
[53] L. Y. Wei,et al. A new scientific method of pulse diagnosis , 1984 .
[54] Haomin Zhou,et al. Adaptive Local Iterative Filtering for Signal Decomposition and Instantaneous Frequency analysis , 2014, 1411.6051.
[55] D. Krikler,et al. Heart disease: A textbook of cardiovascular medicine , 1992 .
[56] Charles K. Chui,et al. Signal decomposition and analysis via extraction of frequencies , 2016 .
[57] Hau-tieng Wu,et al. Nonparametric and adaptive modeling of dynamic seasonality and trend with heteroscedastic and dependent errors , 2012, 1210.4672.
[58] Vojtech Melenovsky,et al. Estimation of central pressure augmentation using automated radial artery tonometry , 2007, Journal of hypertension.
[59] Hau-tieng Wu,et al. Instantaneous frequency and wave shape functions (I) , 2011, 1104.2365.
[60] Patrick Flandrin,et al. Time-Frequency/Time-Scale Analysis , 1998 .
[61] S. Lewington. Prospective studies collaboration. Age-specific relevance of usual blood pressure to vascular mortality: a meta-analysis of individual data for one million adults in 61 prospective studies (vol 360, pg 1903, 2002) , 2003 .
[62] S. Oparil,et al. Pulsology rediscovered: commentary on the Conduit Artery Function Evaluation (CAFE) study. , 2006, Circulation.
[63] Ling Y. Wei,et al. Frequency Distribution of Human Pulse Spectra , 1985, IEEE Transactions on Biomedical Engineering.
[64] L. Leung. Traditional Chinese Medicine—A Beginner's Guide , 2011 .
[65] Patrick Flandrin,et al. Improving the readability of time-frequency and time-scale representations by the reassignment method , 1995, IEEE Trans. Signal Process..
[66] Gerald B. Folland,et al. Real Analysis: Modern Techniques and Their Applications , 1984 .
[67] M. O'Rourke,et al. Pulse wave analysis. , 1996, Journal of hypertension. Supplement : official journal of the International Society of Hypertension.
[68] Charles K. Chui,et al. Real-time dynamics acquisition from irregular samples -- with application to anesthesia evaluation , 2014, 1406.1276.
[69] K. Kodera,et al. Analysis of time-varying signals with small BT values , 1978 .