Automated detection of uterine contractions in tocography signals – Comparison of algorithms
Tài liệu tham khảo
Abdulhay, 2014, Non-invasive fetal heart rate monitoring techniques: review article, Biomed Sci Eng, 2, 53
Dawes, 1991, System 8000: computerized antenatal FHR analysis, J Perinatal Med, 19, 47, 10.1515/jpme.1991.19.1-2.47
Pello, 1991, Computerized foetal heart analysis in labour, J Obstet Gynaecol, 78, 602
Ayres-De-Campos, 2000, SisPorto 2.0: a program for automated analysis of cardiotocograms, J Maternal-Fetal Neonatal Med, 9, 311, 10.1002/1520-6661(200009/10)9:5<311::AID-MFM12>3.0.CO;2-9
Chu, 2015, Automated data collection and analysis for ubiquitous and continuous electronic fetal monitoring, Gen Med, 3, 1
Czabanski, 2015, Efficient evaluation of fetal wellbeing during pregnancy using methods based on statistical learning principles, J Med Imag Health Inf, 5, 1327, 10.1166/jmihi.2015.1536
Khandoker, 2009, Antepartum non-invasive evaluation of opening and closing timings of the cardiac valves in fetal cardiac cycle, Med Biol Eng Comput, 47, 1075, 10.1007/s11517-009-0528-y
Smyth, 1957, The guard-ring tocodynamometer, J Obstet Gynaecol Br Commonwealth, 64, 59, 10.1111/j.1471-0528.1957.tb02599.x
Kitlas, 2010, Signal processing methods in the analysis of the uterine contractility, IFMBE Proceedings of 6th World Congress of Biomechanics. Singapore, 31, 679
Kitlas, 2009, Uterine contraction signals – application of the linear synchronization measures, Eur J Obstet Gynecol Reprod Biol, 144S, 61, 10.1016/j.ejogrb.2009.02.013
Arduini, 1994, Effects of Braxton–Hicks contractions on fetal heart rate variations in normal and growth-retarded fetuses, Gynecol Obstet Investig, 38, 177, 10.1159/000292474
Kupka, 2004, Timing events in Doppler ultrasound signal of fetal heart activity, 337
Georgoulas, 2006, Feature extraction and classification of fetal heart rate using wavelet analysis and support vector machines, Int J Artif Intell Tools, 15, 411, 10.1142/S0218213006002746
Guijarro-Berdinas, 2002, Intelligent analysis and pattern recognition in cardiotocographic signals using a tightly coupled hybrid system, Artif Intell, 136, 1, 10.1016/S0004-3702(01)00163-1
Jezewski, 2011, A novel technique for fetal heart rate estimation from Doppler ultrasound signal, Biomed Eng Online, 10, 10.1186/1475-925X-10-92
Rotariu, 2014, Automatic analysis of the fetal heart rate variability and uterine contractions, 553
Bakker, 2008, Uterine activity: implications for the condition of the fetus, J Perinatal Med, 36, 30, 10.1515/JPM.2008.003
Czabanski, 2008, Neuro-fuzzy approach to the classification of fetal cardiotocograms, IFMBE Proc 14th Nordic Baltic Conference on Biomedical Engineering and Medical Physics. Riga, 20, 446, 10.1007/978-3-540-69367-3_120
Jezewski, 2007, Some practical remarks on neural networks approach to fetal cardiotocograms classification, 5170
Garfield, 1998, Instrumentation for the diagnosis of term and preterm labour, J Perinatal Med, 26, 413, 10.1515/jpme.1998.26.6.413
Euliano, 2013, Monitoring uterine activity during labor: a comparison of 3 methods, Am J Obstet Gynecol, 208
Chourasia, 2008, Comparative analysis of recent advancements in fetal monitoring techniques, Crit Rev Biomed Eng, 36, 335
Chudacek, 2011, Automatic evaluation of intrapartum fetal heart rate recordings: a comprehensive analysis of useful features, Physiol Measur, 32, 1347, 10.1088/0967-3334/32/8/022
Steer, 1984, Normal levels of active contraction area in spontaneous labor, Br J Obstet Gynaecol, 91, 211, 10.1111/j.1471-0528.1984.tb04755.x
Georgieva, 2009, Computerised electronic foetal heart rate monitoring in labour: automated contraction identification, Med Biol Eng Comput, 47, 1315, 10.1007/s11517-009-0538-9
Phillips, 1987, Units for evaluation of uterine contractility, Br J Obstet Gynaecol, 94, 236, 10.1111/j.1471-0528.1987.tb02360.x
Rooth, 1987, Guidelines for the use of fetal monitoring, Int J Gynecol Obstet, 25, 159
Jezewski, 2005, Quantitative analysis of contraction patterns in electrical activity signal of pregnant uterus as an alternative to mechanical approach, Physiol Measur, 26, 753, 10.1088/0967-3334/26/5/014
Zietek, 2008, Mechanical and electrical uterine activity. Part I. Contractions monitoring/in Polish/, Ginekol Polska, 79, 791
Zietek, 2008, Mechanical and electrical uterine activity. Part II. Contractions parameters”/in Polish/, Ginekol Polska, 79, 798
Horoba, 2008, Ensuring the real time signal transmission using GSM/Internet technology for remote fetal monitoring, vol 47, 291
Wrobel, 2015, Pregnancy telemonitoring with smart control of algorithms for signal analysis, J Med Imag Health Inf, 5, 1302, 10.1166/jmihi.2015.1533
Cazares, 2002