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Chapter 1 - Maternal Hemodynamics in Health and Disease: A Paradigm Shift in the Causation of Placental Syndromes

from Section 1 - Physiology of Normal Pregnancy

Published online by Cambridge University Press:  28 April 2018

Christoph Lees
Affiliation:
Imperial College London
Wilfried Gyselaers
Affiliation:
Hasselt Universiteit, Belgium
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Publisher: Cambridge University Press
Print publication year: 2018

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References

Roberts, JM, Redman, CW. Pre-eclampsia: more than pregnancy-induced hypertension. Lancet. 1993;341:1447–51.Google Scholar
Ogge, G, Chaiworapongsa, T, Romero, R, et al. Placental lesions associated with maternal underperfusion are more frequent in early-onset than in late-onset preeclampsia. J Perinat Med. 2011;39:641–52.CrossRefGoogle ScholarPubMed
Falco, ML, Sivanathan, J, Laoreti, A, Thilaganathan, B, Khalil, A. Placental histopathology associated with preeclampsia: a systematic review and meta-analysis. Ultrasound Obstet Gynecol. 2017;50(3):295301.CrossRefGoogle ScholarPubMed
Pathak, S, Lees, C, Hackett, G, Jessop, F, Sebire, N. Frequency and clinical significance of placental histological lesions in an unselected population at or near term. Virchows Arch. 2011;459:565–72.Google Scholar
Rasmussen, S, Irgens, LM, Espinoza, J. Maternal obesity and excess of fetal growth in pre-eclampsia. BJOG. 2014;121:1351–7.CrossRefGoogle ScholarPubMed
Melchiorre, K, Sharma, S, Thilaganathan, B. Cardiovascular Implications in preeclampsia: an overview. Circulation. 2014;130:701–14.CrossRefGoogle ScholarPubMed
Melchiorre, K, Sharma, R, Khalil, A, Thilaganathan, B. Maternal cardiovascular function in normal pregnancy: evidence of maladaptation to chronic volume overload. Hypertension. 2016;67:754–62.Google Scholar
Kenchaiah, S, Evans, JC, Levy, D, et al. Obesity and the risk of heart failure. N Engl J Med. 2002;347:305–13.CrossRefGoogle ScholarPubMed
Velauthar, L, Plana, MN, Kalidindi, M, et al. First-trimester uterine artery Doppler and adverse pregnancy outcome: a meta-analysis involving 55 974 women. Ultrasound Obstet Gynecol. 2014;43:500–7.Google Scholar
Kalafat, E, Laoreti, A, Khalil, A, Da Silva Costa, F, Thilaganathan, B. Ophthalmic Artery Doppler Prediction of Preeclampsia: A Systematic Review and Meta-Analysis. Ultrasound Obstet Gynecol. 2018 Jan 12. doi:10.1002/uog.19002.CrossRefGoogle ScholarPubMed
Allen, RE, Morlando, M, Thilaganathan, B, et al. Predictive accuracy of second-trimester uterine artery Doppler indices for stillbirth: a systematic review and meta-analysis. Ultrasound Obstet Gynecol. 2016;47:22–7.Google Scholar
Andrietti, S, Carlucci, S, Wright, A, Wright, D, Nicolaides, KH. Repeat measurements of uterine artery pulsatility index, mean arterial pressure and serum placental growth factor at 12, 22 and 32 weeks in prediction of pre-eclampsia. Ultrasound Obstet Gynecol. 2017;50:221227.CrossRefGoogle Scholar
Sohlberg, S, Mulic-Lutvica, A, Lindgren, P, Ortiz-Nieto, F, Wikstrom, AK, Wikstrom, J. Placental perfusion in normal pregnancy and early and late preeclampsia: a magnetic resonance imaging study. Placenta. 2014;35:202–6.Google Scholar
Poon, LCY, Syngelaki, A, Akolekar, Lai J, Nicolaides, KH. Combined screening for preeclampsia and small for gestational age at 11–13 weeks. Fetal Diagn Ther. 2013;33:1627.CrossRefGoogle ScholarPubMed
Hochholzer, W, Reichlin, T, Stelzig, C, et al. Impact of soluble fms-like tyrosine kinase-1 and placental growth factor serum levels for risk stratification and early diagnosis in patients with suspected acute myocardial infarction. Eur Heart J. 2011;32:326–35.Google Scholar
Nilsson, E, Salonen Ros, H, Cnattingius, S, Lichtenstein, P. The importance of genetic and environmental effects for pre-eclampsia and gestational hypertension: a family study. BJOG. 2004;111:200–6.Google Scholar
Steegers, EA, von Dadelszen, P, Duvekot, JJ, Pijnenborg, R. Pre-eclampsia. Lancet. 2010 21;376:631–44.Google Scholar
Buurma, AJ, Turner, RJ, Driessen, JH, Mooyaart, AL, Schoones, JW, Bruijn, JA, Bloemenkamp, KW, Dekkers, OM, Baelde, HJ. Genetic variants in pre-eclampsia: a meta-analysis. Hum Reprod Update. 2013;19:289303.CrossRefGoogle ScholarPubMed
Thilaganathan, B. Maternal death: a century of getting it wrong. TEDx talk on the origins of preeclampsia: www.youtube.com/watch?v=ELET24AHnEgGoogle Scholar
Melchiorre, K, Sutherland, GR, Baltabaeva, A, Liberati, M, Thilaganathan, B. Maternal cardiac dysfunction and remodeling in women with preeclampsia at term. Hypertension. 2011;57:8593.CrossRefGoogle ScholarPubMed
Melchiorre, K, Sutherland, GS, Liberati, M, Thilaganathan, B. Maternal cardiovascular impairment in pregnancies complicated by severe fetal growth restriction. Hypertension. 2012;60:437443.Google Scholar
Fraser, A, Nelson, SM, Macdonald-Wallis, C, et al. Associations of pregnancy complications with calculated CVD risk and cardiovascular risk factors in middle age: the Avon Longitudinal Study of Parents and Children. Circulation. 2012;125:13671380.CrossRefGoogle ScholarPubMed
Melchiorre, K, Sutherland, GR, Liberati, M, Thilaganathan, B. Preeclampsia is associated with persistent postpartum cardiovascular impairment. Hypertension. 2011;58:709715.CrossRefGoogle ScholarPubMed
Behrens, I, Basit, S, Melbye, M, et al. Risk of post-pregnancy hypertension in women with a history of hypertensive disorders of pregnancy – a nationwide cohort study. BMJ. 2017. Jul 12;358:j3078. doi:10.1136/bmj.j3078.Google Scholar
Smith, GC, Pell, JP, Walsh, D. Pregnancy complications and maternal risk of ischaemic heart disease: a retrospective cohort study of 129,290 births. Lancet. 2001;357:2002–6.CrossRefGoogle Scholar
Wikstrom, AK, Gunnarsdottir, J, Nelander, M, Simic, M, Stephansson, O, Cnattingius, S. Prehypertension in pregnancy and risks of small for gestational age infant and stillbirth. Hypertension. 2016;67: 640–6.Google Scholar
Thilaganathan, B. Placental syndromes: getting to the heart of the matter. Ultrasound Obstet Gynecol. 2017;49:79.CrossRefGoogle Scholar

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