Εμφανίζονται 1 - 20 Αποτελέσματα από 2.103 για την αναζήτηση '"РЕПРОДУКТИВНЫЕ"', χρόνος αναζήτησης: 0,82δλ Περιορισμός αποτελεσμάτων
  1. 1
  2. 2
  3. 3
  4. 4
  5. 5
  6. 6
  7. 7
  8. 8
  9. 9
  10. 10
  11. 11
  12. 12
  13. 13
  14. 14
  15. 15
  16. 16
    Academic Journal

    Συνεισφορές: The study was carried out within a research program No. 1024062500021-3-3.2.2., Исследование выполнено в рамках ПНИ №1024062500021-3-3.2.2.

    Πηγή: Medical Genetics; Том 24, № 9 (2025); 124-127 ; Медицинская генетика; Том 24, № 9 (2025); 124-127 ; 2073-7998

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.medgen-journal.ru/jour/article/view/3196/2056; Harper J.C., Delhanty J.D. Preimplantation genetic diagnosis. Curr Opin Obstet Gynecol. 2000;12(2):67-72. doi:10.1097/00001703-200004000-00002.; Barbash-Hazan S., Frumkin T., Malcov M., et al. Preimplantation aneuploid embryos undergo self-correction in correlation with their developmental potential. Fertil Steril. 2009;92(3):890-896. doi:10.1016/j.fertnstert.2008.07.1761.; Capalbo A., Rienzi L. Mosaicism between trophectoderm and inner cell mass. Fertil Steril. 2017;107(5):1098-1106. doi:10.1016/j.fertnstert.2017.03.023.; McCoy R.C. Mosaicism in preimplantation human embryos: when chromosomal abnormalities are the norm. Trends Genet. 2017;33:448–463. doi:10.1016/j.tig.2017.04.001.; Griffin D.K., Brezina P.R., Tobler K., et al. The human embryonic genome is karyotypically complex, with chromosomally abnormal cells preferentially located away from the developing fetus. Hum Reprod. 2023;38(1):180-188. doi:10.1093/humrep/deac238.; Kubicek D., Hornak M., Horak J., et al. Incidence and origin of meiotic whole and segmental chromosomal aneuploidies detected by karyomapping. Reprod. Biomed. Online. 2019;38,330–339. doi:10.1016/j.rbmo.2018.11.023.; Coll L., Parriego M., Carrasco B., et al. The effect of trophectoderm biopsy technique and sample handling on artefactual mosaicism. J Assist Reprod Genet. 2022;39:1333–1340. doi:10.1007/s10815-022-02453-9.; Popovic M., Borot L., Lorenzon A.R., et al. Implicit bias in diagnosing mosaicism amongst preimplantation genetic testing providers: results from a multicenter study of 36 395 blastocysts. Hum Reprod. 2024;39(1):258-274. doi:10.1093/humrep/dead213.; Treff N.R., Marin D. The «mosaic» embryo: Misconceptions and misinterpretations in preimplantation genetic testing for aneuploidy. Fertil. Steril. 2021;116:1205–1211. doi:10.1016/j.fertnstert.2021.06.027.; Johnson D.S., Cinnioglu C., Ross R., et al. Comprehensive analysis of karyotypic mosaicism between trophectoderm and inner cell mass. Mol Hum Reprod. 2010;16(12):944-9. doi:10.1093/molehr/gaq062.; Capalbo A., Wright G., Elliott T., et al. FISH reanalysis of inner cell mass and trophectoderm samples of previously array-CGH screened blastocysts shows high accuracy of diagnosis and no major diagnostic impact of mosaicism at the blastocyst stage. Hum Reprod. 2013;28(8):2298-307. doi:10.1093/humrep/det245.; Victor A.R., Griffin D.K., Brake A.J., et al. Assessment of aneuploidy concordance between clinical trophectoderm biopsy and blastocyst. Hum Reprod. 2019;34:181–192. doi:10.1093/humrep/dey327.; Vera-Rodríguez M., Michel C.E., Mercader A., et al. Distribution patterns of segmental aneuploidies in human blastocysts identified by next-generation sequencing. Fertil Steril. 2016;105(4):1047-1055. e2. doi:10.1016/j.fertnstert.2015.12.022.; Babariya D., Fragouli E., Alfarawati S., et al. The incidence and origin of segmental aneuploidy in human oocytes and preimplantation embryos. Hum Reprod. 2017;32(12):2549-2560. doi:10.1093/humrep/dex324.; Fragouli E., Lenzi M., Ross R., et al. Comprehensive molecular cytogenetic analysis of the human blastocyst stage. Hum Reprod. 2008;23(11):2596-608. doi:10.1093/humrep/den287.; Huang J., Yan L., Lu S., et al. Re-analysis of aneuploidy blastocysts with an inner cell mass and different regional trophectoderm cells. J Assist Reprod Genet. 2017;34:487–493. doi:10.1007/s10815-017-0875-9.; Capalbo A., Poli M., Rienzi L., et al. Mosaic human preimplantation embryos and their developmental potential in a prospective, nonselection clinical trial. Am J Hum Genet. 2021;108:2238–2247. doi:10.1016/j.ajhg.2021.11.002.; Tikhonov A.V., Krapivin M.I., Malysheva O.V., et al. ReExamination of PGT-A Detected Genetic Pathology in Compartments of Human Blastocysts: A Series of 23 Cases. J Clin Med. 2024;13(11):3289. doi:10.3390/jcm13113289.

  17. 17
    Academic Journal

    Συγγραφείς: Kudratova , Rano

    Πηγή: Eurasian Journal of Medical and Natural Sciences; Vol. 5 No. 10 (2025): Eurasian Journal of Medical and Natural Sciences; 305-313 ; Евразийский журнал медицинских и естественных наук; Том 5 № 10 (2025): Евразийский журнал медицинских и естественных наук; 305-313 ; Yevrosiyo tibbiyot va tabiiy fanlar jurnali; Jild 5 Nomeri 10 (2025): Евразийский журнал медицинских и естественных наук; 305-313 ; 2181-287X

    Περιγραφή αρχείου: application/pdf

  18. 18
    Academic Journal

    Συνεισφορές: The authors declare no funding, Авторы заявляют об отсутствии финансовой поддержки

    Πηγή: Obstetrics, Gynecology and Reproduction; Vol 19, No 3 (2025); 377-388 ; Акушерство, Гинекология и Репродукция; Vol 19, No 3 (2025); 377-388 ; 2500-3194 ; 2313-7347

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.gynecology.su/jour/article/view/2494/1346; Calhaz-Jorge C., De Geyter C.H., Kupka M.S. et al. Survey on ART and IUI: legislation, regulation, funding and registries in European countries: The European IVF-monitoring Consortium (EIM) for the European Society of Human Reproduction and Embryology (ESHRE). Hum Reprod Open. 2020;2020(1):hoz044. https://doi.org/10.1093/hropen/hoz044.; European IVF Monitoring Consortium (EIM) for the European Society of Human Reproduction and Embryology (ESHRE); Smeenk J., Wyns C., De Geyter C. et al. ART in Europe, 2019: results generated from European registries by ESHRE. Hum Reprod. 2023;3(12):2321–38. https://doi.org/10.1093/humrep/dead197.; Farquhar C., Marjoribanks J., Brown J. et al. Management of ovarian stimulation for IVF: narrative review of evidence provided for World Health Organization guidance. Reprod Biomed Online. 2017;35(1):3–16. https://doi.org/10.1016/j.rbmo.2017.03.024.; Nelson S.M. Venous thrombosis during assisted reproduction: novel risk reduction strategies. Thromb Res. 2013;131 Suppl 1:S1–3. https://doi.org/10.1016/S0049-3848(13)00023-6.; Grandone E., Villani M. Assisted reproductive technologies and thrombosis. Thromb Res. 2015;135 Suppl 1:S44–5. https://doi.org/10.1016/S0049-3848(15)50441-6.; Kupka M.S., Ferraretti A.P., de Mouzon J. et al.; European IVF-Monitoring Consortium, for the European Society of Human Reproduction and Embryology. Assisted reproductive technology in Europe, 2010: results generated from European registers by ESHRE†. Hum Reprod. 2014;29(10):2099–113. https://doi.org/10.1093/humrep/deu175.; Sennström M., Rova K., Hellgren M. et al. Thromboembolism and in vitro fertilization – a systematic review. Acta Obstet Gynecol Scand. 2017;96(9):1045–52. https://doi.org/10.1111/aogs.13147.; Practice Committee of American Society for Reproductive Medicine. Ovarian hyperstimulation syndrome. Fertil Steril. 2008;90(5 Supple):S188–93. https://doi.org/10.1016/j.fertnstert.2008.08.034.; Grandone E., Colaizzo D., Vergura P. et al. Age and homocysteine plasma levels are risk factors for thrombotic complications after ovarian stimulation. Hum Reprod. 2004;19(8):1796–9. https://doi.org/10.1093/humrep/deh346.; Henriksson P., Westerlund E., Wallén H. et al. Incidence of pulmonary and venous thromboembolism in pregnancies after in vitro fertilisation: cross sectional study. BMJ. 2013;346:е8632. https://doi.org/10.1136/bmj.e8632.; Rova K., Passmark H., Lindqvist P.G. Venous thromboembolism in relation to in vitro fertilization: an approach to determining the incidence and increase in risk in successful cycles. Fertil Steril. 2012;97(1):95–100. https://doi.org/10.1016/j.fertnstert.2011.10.038.; Nelson S.M. Prophylaxis of VTE in women – during assisted reproductive techniques. Thromb Res. 2009;123 Suppl 3:S8–S15. https://doi.org/10.1016/S0049-3848(09)70127-6.; Hansen A.T., Kesmodel U.S., Juul S., Hvas A.M. No evidence that assisted reproduction increases the risk of thrombosis: a Danish national cohort study. Hum Reprod. 2012;27(5):1499–503. https://doi.org/10.1093/humrep/des041.; Serour G.I., Aboulghar M., Mansour R. et al. Complications of medically assisted conception in 3,500 cycles. Fertil Steril. 1998;70(4):638–42. https://doi.org/10.1016/s0015-0282(98)00250-7.; Girolami A., Scandellari R., Tezza F. et al. Arterial thrombosis in young women after ovarian stimulation: case report and review of the literature. J Thromb Thrombolysis. 2007;24(2):169–74. https://doi.org/10.1007/s11239-007-0009-9.; Chan W.S. The 'ART' of thrombosis: a review of arterial and venous thrombosis in assisted reproductive technology. Curr Opin Obstet Gynecol. 2009;21(3):207–18. https://doi.org/10.1097/GCO.0b013e328329c2b8.; Yang S., Yuan J., Qin W. et al. The clinical characteristics of acute cerebrovascular accidents resulting from ovarian hyperstimulation syndrome. Eur Neurol. 2017;77(5–6):221–30. https://doi.org/10.1159/000463383.; Filipovic-Pierucci A., Gabet A., Deneux-Tharaux C. et al. Arterial and venous complications after fertility treatment: a French nationwide cohort study. Eur J Obstet Gynecol Reprod Biol. 2019;237:57–63. https://doi.org/10.1016/j.ejogrb.2019.02.034.; Chan W.S, Dixon M.E. The "ART" of thromboembolism: a review of assisted reproductive technology and thromboembolic complications. Thromb Res. 2008;121(6):713–26. https://doi.org/10.1016/j.thromres.2007.05.023.; Villani M., Favuzzi G., Totaro P. et al. Venous thromboembolism in assisted reproductive technologies: comparison between unsuccessful versus successful cycles in an Italian cohort. J Thromb Thrombolysis. 2018;45(2):234–9. https://doi.org/10.1007/s11239-017-1584-z.; Mozes M., Bogokowsky H., Antebi E. et al. Thromboembolic phenomena after ovarian stimulation with human gonadotrophins. Lancet. 1965;2(7424):1213–5. https://doi.org/10.1016/s0140-6736(65)90636-7.; Kermode A.G., Churchyard A., Carroll W.M. Stroke complicating severe ovarian hyperstimulation syndrome. Aust N Z J Med. 1993;23(2):219–20. https://doi.org/10.1111/j.1445-5994.1993.tb01823.x.; Inbar O.J., Levran D., Mashiach S., Dor J. Ischemic stroke due to induction of ovulation with clomiphene citrate and menotropins without evidence of ovarian hyperstimulation syndrome. Fertil Steril. 1994;62(5):1075–6. https://doi.org/10.1016/s0015-0282(16)57078-2.; Cluroe A.D., Synek B.J. A fatal case of ovarian hyperstimulation syndrome with cerebral infarction. Pathology. 1995;27(4):344–6. https://doi.org/10.1080/00313029500169273.; Chan W.S., Ginsberg J.S. A review of upper extremity deep vein thrombosis in pregnancy: unmasking the 'ART' behind the clot. J Thromb Haemost. 2006;4(8):673–7. https://doi.org/10.1111/j.1538-7836.2006.02026.x.; Fleming T., Sacks G., Nasser J. Internal jugular vein thrombosis following ovarian hyperstimulation syndrome. Aust N Z J Obstet Gynaecol. 2012;52(1):87–90. https://doi.org/10.1111/j.1479-828X.2011.01392.x.; Salomon O., Schiby G., Heiman Z. et al. Combined jugular and subclavian vein thrombosis following assisted reproductive technology – new observation. Fertil Steril. 2009;92(2):620–5. https://doi.org/10.1016/j.fertnstert.2008.07.1708.; Aboulghar M.A., Mansour R.T., Serour G.I., Amin Y.M. Moderate ovarian hyperstimulation syndrome complicated by deep cerebrovascular thrombosis. Hum Reprod. 1998;13(8):2088–91. https://doi.org/10.1093/humrep/13.8.2088.; Kodama H., Fukuda J., Karube H. et al. Characteristics of blood hemostatic markers in a patient with ovarian hyperstimulation syndrome who actually developed thromboembolism. Fertil Steril. 1995;64(6):1207–9. https://doi.org/10.1016/s0015-0282(16)57987-4.; Delvigne A., Demoulin A., Smitz J. et al. The ovarian hyperstimulation syndrome in in-vitro fertilization: a Belgian multicentric study. I. Clinical and biological features. Hum Reprod. 1993;8(9):1353–60. https://doi.org/10.1093/oxfordjournals.humrep.a138260.; Dulitzky M., Cohen S.B., Inbal A. et al. Increased prevalence of thrombophilia among women with severe ovarian hyperstimulation syndrome. Fertil Steril. 2002;77(3):463–7. https://doi.org/10.1016/s0015-0282(01)03218-6.; Grandone E., Di Micco P.P., Villani M. et al.; RIETE Investigators. Venous thromboembolism in women undergoing assisted reproductive technologies: Data from the RIETE Registry. Thromb Haemost. 2018;118(11):1962–8. https://doi.org/10.1055/s-0038-1673402.; Olausson N., Discacciati A., Nyman A.I. et al. Incidence of pulmonary and venous thromboembolism in pregnancies after in vitro fertilization with fresh respectively frozen-thawed embryo transfer: nationwide cohort study. J Thromb Haemost. 2020;18(8):1965–73. https://doi.org/10.1111/jth.14840.; Abramov Y., Elchalal U., Schenker J.G. Obstetric outcome of in vitro fertilized pregnancies complicated by severe ovarian hyperstimulation syndrome: a multicenter study. Fertil Steril. 1998;70(6):1070–6. https://doi.org/10.1016/s0015-0282(98)00350-1.; Bauersachs R.M., Manolopoulos K., Hoppe I. et al. More on: the 'ART' behind the clot: solving the mystery. J Thromb Haemost. 2007;5(2):438–9.; Richardson M.A., Berg D.T., Calnek D.S. et al. 17beta-estradiol, but not raloxifene, decreases thrombomodulin in the antithrombotic protein C pathway. Endocrinology. 2000;141(10):3908–11. https://doi.org/10.1210/endo.141.10.7798.; Rogolino A., Coccia M.E., Fedi S. et al. Hypercoagulability, high tissue factor and low tissue factor pathway inhibitor levels in severe ovarian hyperstimulation syndrome: possible association with clinical outcome. Blood Coagul Fibrinolysis. 2003;14(3):277–82. https://doi.org/10.1097/01.mbc.0000061296.28953.d0.; Ricci G., Bogatti P., Fischer-Tamaro L. et al. Factor V Leiden and prothrombin gene G20210A mutation and in vitro fertilization: prospective cohort study. Hum Reprod. 2011;26(11):3068–77. https://doi.org/10.1093/humrep/der261.; Goualou M., Noumegni S., de Moreuil C. et al. Venous thromboembolism associated with assisted reproductive technology: a systematic review and meta-analysis. Thromb Haemost. 2023;123(3):283–94. https://doi.org/10.1055/s-0042-1760255.; Pabinger I., Grafenhofer H., Kaider A. et al. Risk of pregnancy-associated recurrent venous thromboembolism in women with a history of venous thrombosis. J Thromb Haemost. 2005;3(5):949–54. https://doi.org/10.1111/j.1538-7836.2005.01307.x.; Milenkovic J., Milojkovic M., Mitic D. et al. Interaction of thrombophilic SNPs in patients with unexplained infertility-multifactor dimensionality reduction (MDR) model analysis. J Assist Reprod Genet. 2020;37(6):1449–58. https://doi.org/10.1007/s10815-020-01808-4.; Santos T.D.S., Ieque A.L., de Carvalho H.C. et al. Antiphospholipid syndrome and recurrent miscarriage: A systematic review and meta-analysis. J Reprod Immunol. 2017;123:78–87. https://doi.org/10.1016/j.jri.2017.09.007.; El Hasbani G., Khamashta M., Uthman I. Antiphospholipid syndrome and infertility. Lupus. 2020;29(2):105–17. https://doi.org/10.1177/0961203319893763.; Qublan H.S., Eid S.S., Ababneh H.A. et al. Acquired and inherited thrombophilia: implication in recurrent IVF and embryo transfer failure. Hum Reprod. 2006;21(10):2694–8. https://doi.org/10.1093/humrep/del203.; Nesbit C., Gunalp C., Zhang J. et al. Longitudinal assessment of coagulation potential before, during, and following an in vitro fertilization cycle. Thromb Res. 2024;238:97–102. https://doi.org/10.1016/j.thromres.2024.04.020.; Azem F., Many A., Ben Ami I. et al. Increased rates of thrombophilia in women with repeated IVF failures. Hum Reprod. 2004;19(2):368–70. https://doi.org/10.1093/humrep/deh069.; Hansen A.T., Kesmodel U.S., Juul S., Hvas A.M. Increased venous thrombosis incidence in pregnancies after in vitro fertilization. Hum Reprod. 2014;29(3):611–7. https://doi.org/10.1093/humrep/det458.; Refsum H., Nurk E., Smith A.D. et al. The Hordaland Homocysteine Study: a community-based study of homocysteine, its determinants, and associations with disease. J Nutr. 2006;136(6 Suppl):1731S–1740S. https://doi.org/10.1093/jn/136.6.1731S.; Fuchs H.E., O'Connell K., Du M. et al. Vitamin B12 supplementation and vitamin B12 blood serum levels: evaluation of effect modification by gender and smoking status. Nutr Cancer. 2022;74(7):2373–83. https://doi.org/10.1080/01635581.2021.2007271.; Bazzano L.A., He J., Muntner P. et al. Relationship between cigarette smoking and novel risk factors for cardiovascular disease in the United States. Ann Intern Med. 2003;138(11):891–7. https://doi.org/10.7326/0003-4819-138-11-200306030-00010.; Villani M., Dentali F., Colaizzo D. et al. Pregnancy-related venous thrombosis: comparison between spontaneous and ART conception in an Italian cohort. BMJ Open. 2015;5(10):e008213. https://doi.org/10.1136/bmjopen-2015-008213.; Rosendaal F.R. Risk factors for venous thrombotic disease. Thromb Haemost. 1999;82(2):610–9.; Grandone E., Ageno W. The legacy of Edwards and Steptoe and the windy roads of assisted reproduction: where do we stand with venous thromboembolism? Thromb Haemost. 2023;123(3):267–9. https://doi.org/10.1055/a-1996-1341.; Yinon Y., Pauzner R., Dulitzky M. et al. Safety of IVF under anticoagulant therapy in patients at risk for thrombo-embolic events. Reprod Biomed Online. 2006;12(3):354–8. https://doi.org/10.1016/s1472-6483(10)61009-7.; Bates S.M., Greer I.A., Middeldorp S. et al. VTE, thrombophilia, antithrombotic therapy, and pregnancy: Antithrombotic Therapy and Prevention of Thrombosis, 9th ed: American College of Chest Physicians Evidence-Based Clinical Practice Guidelines. Chest. 2012;141(2 Suppl):e691S–e736S. https://doi.org/10.1378/chest.11-2300.; Grandone E., Piazza G. Thrombophilia, inflammation, and recurrent pregnancy loss: a case-based review. Semin Reprod Med. 2021;39(1–02):62–8. https://doi.org/10.1055/s-0041-1731827.; Sticchi E., Romagnuolo I., Cellai A.P. et al. Fibrinolysis alterations in infertile women during controlled ovarian stimulation: influence of BMI and genetic components. Thromb Res. 2012;130(6):919–24. https://doi.org/10.1016/j.thromres.2012.07.005.; Gurunath S., Vinekar S., Biliangady R. Assisted reproductive techniques in a patient with history of venous thromboembolism: a case report and review of literature. J Hum Reprod Sci. 2018;11(2):193–7. https://doi.org/10.4103/jhrs.JHRS5817.; Westerlund E., Antovic A., Hovatta O. et al. Changes in von Willebrand factor and ADAMTS13 during IVF. Blood Coagul Fibrinolysis. 2011;22(2):127–31. https://doi.org/10.1097/MBC.0b013e32834363ea.; https://www.gynecology.su/jour/article/view/2494

  19. 19
    Academic Journal

    Πηγή: Obstetrics, Gynecology and Reproduction; Vol 19, No 2 (2025); 152-157 ; Акушерство, Гинекология и Репродукция; Vol 19, No 2 (2025); 152-157 ; 2500-3194 ; 2313-7347

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.gynecology.su/jour/article/view/2424/1316; Габидуллина Р.И., Ганеева А.В., Капелюшник П.Л., Шигабутдинова Т.Н., Валеева Е.В., Нургатина А.Ф. Взаимосвязь полиморфизма rs1799983 гена NOS3 с риском развития преэклампсии и восприимчивостью к SARS-CoV-2 во время беременности. Акушерство, Гинекология и Репродукция. 2025;19(2):158–167. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2025.623.; Воробьев А.В., Солопова А.Г., Ломакин Н.В., Бицадзе В.О., Ким М.В., Григорьева К.Н., Гадацкая К.В., Галкин В.Н., Уткин Д.О., Элалами И., Макацария А.Д. Рецидивирующие тромбозы при злокачественных новообразованиях: клиническая значимость длительной антикоагулянтной профилактики. Акушерство, Гинекология и Репродукция. 2025;19(2):168–179. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2025.629.; Зиганшин А.М., Дикке Г.Б., Янбарисова А.Р. Прогнозирование возникновения миомы матки у женщин репродуктивного возраста с помощью нейронной сети. Акушерство, Гинекология и Репродукция. 2025;19(2):180–191. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2025.605.; Матюшонок Е.Н., Крюковский С.Б., Смирнова Т.И., Боженков К.А. Исследование уровня вазопрессина для прогнозирования исхода угрожающих преждевременных родов. Акушерство, Гинекология и Репродукция. 2025;19(2):192–200. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2025.608.; Прокопенко Е.И., Никольская И.Г., Губина Д.В., Ватазин А.В., Коваленко Т.С., Ефимкова Е.Б. Осложнения беременности и гестационная динамика протеинурии и сывороточного креатинина у пациенток с хроническим гломерулонефритом и хроническими тубулоинтерстициальными заболеваниями почек. Акушерство, Гинекология и Репродукция. 2025;19(2):201–215. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2025.553.; Сушко Т.А., Зайнулина М.С. Патогенетический подход к лечению коагулопатического кровотечения в акушерстве. Акушерство, Гинекология и Репродукция. 2025;19(2):216–229. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2025.557.; Громова О.А., Торшин И.Ю., Тетруашвили Н.К. Систематический компьютерный анализ фармакологии фумарата железа в контексте лечения дефицита железа и железодефицитной анемии. Акушерство, Гинекология и Репродукция. 2025;19(2):230–248. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2025.632.; Бицадзе В.О., Хизроева Д.Х., Третьякова М.В., Макацария Н.А., Габидуллина Р.И., Мостовой А.В.,Карпова А.Л., Войновский А.Е., Новосатрян М.Г., Лазарчук А.В., Хисамиева А.Р., Воробьев А.В., Агасян К.В., Капанадзе Д.Л., Зайнулина М.С., Серов В.Н., Блинов Д.В., Гри Ж.-К., Ван Дреден П., Элалами И., Геротзиафас Г., Макацария А.Д. Фетальный синдром системного воспалительного ответа, тромбовоспаление и неонатальный септический шок: патогенез, диагностика и лечение. Акушерство, Гинекология и Репродукция. 2025;19(2):250–272. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2025.619.; Бахтияров К.Р., Игнатко И.В., Зуева А.С., Синякова Е.В., Капырина Т.Д. Роль микробиома матки и влагалища в исходах вспомогательных репродуктивных технологий. Акушерство, Гинекология и Репродукция. 2025;19(2):273–281. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2025.592.; Марзаганова А.И., Мартиросян И.Р., Корчемкина А.С., Аванесян Э.Г., Коркмазова Д.А., Грахнова О.Б., Акимина В.В., Джамалутдинова А.П., Боллоев Д.А., Дугулубгова А.М., Бахмудова З.Г., Салихова А.Т., Дзигора П.А. Роль ARID1A при злокачественных новообразованиях женской репродуктивной системы: современный взгляд на возможности диагностики и терапии. Акушерство, Гинекология и Репродукция. 2025;19(2):282–298. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2024.581.; Бодыков Г.Ж., Локшин В.Н., Мухаметова Э.Е., Бищекова Б.Н. Спонтанный разрыв матки у многорожавшей женщины без рубца на матке. Акушерство, Гинекология и Репродукция. 2025;19(2):299–305. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2025.604.; Козлов Л.А., Чикмарева К.А. О зарождении и забвении способа Н.Н. Чукалова о выделении отделившегося последа. Акушерство, Гинекология и Репродукция. 2025;19(2):306–311. https://doi.org/10.17749/2313-7347/ob.gyn.rep.2025.624.; https://www.gynecology.su/jour/article/view/2424

  20. 20