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Journal Abstract Search


289 related items for PubMed ID: 32437666

  • 1. Monochorionic twins with selective fetal growth restriction: insight from placental whole-transcriptome analysis.
    Li W, Chung CYL, Wang CC, Chan TF, Leung MBW, Chan OK, Wu L, Appiah K, Chaemsaithong P, Cheng YKY, Poon LCY, Leung TY.
    Am J Obstet Gynecol; 2020 Nov; 223(5):749.e1-749.e16. PubMed ID: 32437666
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  • 4. Placental glucose transporter 1 and 3 gene expression in Monochorionic twin pregnancies with selective fetal growth restriction.
    Chang YL, Chao AS, Chang SD, Cheng PJ.
    BMC Pregnancy Childbirth; 2021 Mar 27; 21(1):260. PubMed ID: 33773574
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  • 5. Placental endoglin levels in diamniotic-monochorionic twin gestations: correlation with clinical and placental characteristics.
    Chu S, Mao Q, Shapiro S, De Paepe ME.
    Placenta; 2013 Mar 27; 34(3):261-8. PubMed ID: 23306069
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  • 6. Unequal placental sharing and birth weight discordance in monochorionic diamniotic twins.
    Fick AL, Feldstein VA, Norton ME, Wassel Fyr C, Caughey AB, Machin GA.
    Am J Obstet Gynecol; 2006 Jul 27; 195(1):178-83. PubMed ID: 16643828
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  • 10. Doppler velocimetry determined redistribution of fetal blood flow: correlation with growth restriction in diamniotic monochorionic and dizygotic twins.
    Gaziano E, Gaziano C, Brandt D.
    Am J Obstet Gynecol; 1998 Jun 27; 178(6):1359-67. PubMed ID: 9662323
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  • 12. Placental weight and birth weight to placental weight ratio in monochorionic and dichorionic growth-restricted and non-growth-restricted twins.
    Souza MA, de Lourdes Brizot M, Biancolin SE, Schultz R, de Carvalho MHB, Francisco RPV, Zugaib M.
    Clinics (Sao Paulo); 2017 May 27; 72(5):265-271. PubMed ID: 28591337
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  • 13. Whole genome miRNA profiling revealed miR-199a as potential placental pathogenesis of selective fetal growth restriction in monochorionic twin pregnancies.
    Meng M, Cheng YKY, Wu L, Chaemsaithong P, Leung MBW, Chim SSC, Sahota DS, Li W, Poon LCY, Wang CC, Leung TY.
    Placenta; 2020 Mar 27; 92():44-53. PubMed ID: 32063549
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  • 15. High risk of unexpected late fetal death in monochorionic twins despite intensive ultrasound surveillance: a cohort study.
    Barigye O, Pasquini L, Galea P, Chambers H, Chappell L, Fisk NM.
    PLoS Med; 2005 Jun 27; 2(6):e172. PubMed ID: 15971947
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  • 16. Placental DNA methylation analysis of selective fetal growth restriction in monochorionic twins reveals aberrant methylated CYP11A1 gene for fetal growth restriction.
    Shi D, Zhou X, Cai L, Wei X, Zhang L, Sun Q, Zhou F, Sun L.
    FASEB J; 2023 Oct 27; 37(10):e23207. PubMed ID: 37732623
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  • 17. Placental NFE2L2 is discordantly activated in monochorionic twins with selective intrauterine growth restriction and possibly regulated by hypoxia.
    Wu J, He Z, Gao Y, Zhang G, Huang X, Fang Q.
    Free Radic Res; 2017 Apr 27; 51(4):351-359. PubMed ID: 28441900
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  • 18. The relationships of umbilical venous volume flow, birthweight and placental share in monochorionic twin pregnancies with and without selective intrauterine growth restriction.
    Chang YL, Chang SD, Chao AS, Wang CN, Wang TH, Cheng PJ.
    Twin Res Hum Genet; 2011 Apr 27; 14(2):192-7. PubMed ID: 21425903
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  • 19. Significance of placental cord insertion site in twin pregnancy.
    Kalafat E, Thilaganathan B, Papageorghiou A, Bhide A, Khalil A.
    Ultrasound Obstet Gynecol; 2018 Sep 27; 52(3):378-384. PubMed ID: 28976606
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  • 20. Effects of inter-twin vascular anastomoses of monochorionic twins with selective intrauterine growth restriction on the contents of placental mitochondria DNA.
    Chang YL, Chao AS, Peng HH, Chang SD, Su SY, Chen KJ, Wang TH.
    BMC Pregnancy Childbirth; 2018 Mar 24; 18(1):74. PubMed ID: 29573746
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