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(2014). External uterine contractions signal analysis in relation to labor progression and dystocia. IFMBE Proceedings, 41, 555 - 558.
(2014). Fetal behavioral dynamics in cephalic versus breech presentations. Developmental Psychobiology, 56(7), 1595 - 1600.
(2014). Impact of the introduction of fetal central monitoring on hospital expenses with cardiotocographic paper. Journal of Obstetrics and Gynaecology, 34, 82-84.
(2014). Co-expression network analysis and genetic algorithms for gene prioritization in preeclampsia. BMC Medical Genomics, 6(1).
(2013). Comparison of different methods of heart rate entropy analysis during acute anoxia superimposed on a chronic rat model of pulmonary hypertension. Medical Engineering and Physics, 35(5), 559 - 568.
(2013). Comparison of real beat-to-beat signals with commercially available 4 Hz sampling on the evaluation of foetal heart rate variability. Medical and Biological Engineering and Computing, 51(6), 665 - 676.
(2013). Gender-specific heart rate dynamics in severe intrauterine growth-restricted fetuses. Early Human Development, 89(6), 431 - 437.
(2013). Information-based measure of disagreement for more than two observers: A useful tool to compare the degree of observer disagreement. BMC Medical Research Methodology, 13(1).
(2013). An overview of central fetal monitoring systems in labour. Journal of Perinatal Medicine, 41(1), 93 - 99.
(2013). Should European perinatal indicators be revisited?. European Journal of Obstetrics Gynecology and Reproductive Biology, 170(1), 85 - 89.
(2013). Poor reliability of visual analysis of fetal heart rate tracings: What should be done about it?. American Journal of Obstetrics and GynecologyAm. J. Obstet. Gynecol., 206(6), - .
(2012). Complexity and categorical analysis may improve the interpretation of agreement studies using continuous variables. Journal of Evaluation in Clinical PracticeJ. Eval. Clin. Pract., 17(3), 511 - 514.
(2011). Knowledge of adverse neonatal outcome alters clinicians' interpretation of the intrapartum cardiotocograph. BJOG: An International Journal of Obstetrics and GynaecologyBJOG Int. J. Obstet. Gynaecol., 118(8), 978 - 983.
(2011). The limits of agreement and the intraclass correlation coefficient may be inconsistent in the interpretation of agreement. Journal of Clinical EpidemiologyJ. Clin. Epidemiol., 64(3), 264 - 269.
(2011). Observer reliability and agreement: Differences, difficulties, and controversies. Journal of Clinical EpidemiologyJ. Clin. Epidemiol., 64(6), 702.
(2011). Access to computerised analysis of intrapartum cardiotocographs improves clinicians' prediction of newborn umbilical artery blood pH. BJOG: An International Journal of Obstetrics and GynaecologyBJOG Int. J. Obstet. Gynaecol., 117(10), 1288 - 1293.
(2010). Analysis of heart rate variability in a rat model of induced pulmonary hypertension. Medical Engineering and PhysicsMed. Eng. Phys., 32(7), 746 - 752.
(2010). Assessment of Disagreement: A New Information-Based Approach. Annals of EpidemiologyAnn. Epidemiol., 20(7), 554 - 561.
(2010). Comparison of a computer system evaluation of intrapartum cardiotocographic events and a consensus of clinicians. Journal of perinatal medicineJ Perinat Med, 38(2), 191 - 195.
(2010). Monitoring incremental histogram distribution for change detection in data streams. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)Lect. Notes Comput. Sci. (Vol. 5840 LNCS, pp. 25 - 42).
(2010). Prediction of neonatal acidemia by computer analysis of fetal heart rate and ST event signals. American Journal of Obstetrics and GynecologyAm. J. Obstet. Gynecol., 201(5), 464.e1 - 464.e6.
(2009). Sex differences in linear and complex fetal heart rate dynamics of normal and acidemic fetuses in the minutes preceding delivery. Journal of Perinatal MedicineJ. Perinat. Med., 37(2), 168 - 176.
(2009). Linear and complex heart rate dynamics vary with sex in relation to fetal behavioural states. Early Human DevelopmentEarly Hum. Dev., 84(7), 433 - 439.
(2008). Linear and nonlinear heart-rate analysis in a rat model of acute anoxia. Physiological MeasurementPhysiol. Meas., 29(9), 1133 - 1143.
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