[1] |
Capalbo A, Hoffmann ER, Cimadomo D, et al. Human female meiosis revised: new insights into the mechanisms of chromosome segregation and aneuploidies from advanced genomics and time-lapse imaging[J]. Hum Reprod Update, 2017, 23(6):706-722. doi: 10.1093/humupd/dmx026.
pmid: 28961822
|
[2] |
Sachs ES, Jahoda MG, Los FJ, et al. Trisomy 21 mosaicism in gonads with unexpectedly high recurrence risks[J]. Am J Med Genet Suppl, 1990, 7:186-188. doi: 10.1002/ajmg.1320370737.
pmid: 2149943
|
[3] |
Chen CP, Hsu TY, Chern SR, et al. Low-level mosaic trisomy 21 at amniocentesis in a pregnancy associated with a negative NIPT result, cytogenetic discrepancy in various tissues, perinatal progressive decrease of the aneuploid cell line and a favorable fetal outcome[J]. Taiwan J Obstet Gynecol, 2023, 62(4):582-585. doi: 10.1016/j.tjog.2023.05.004.
|
[4] |
Bruyère H, Rupps R, Kuchinka BD, et al. Recurrent trisomy 21 in a couple with a child presenting trisomy 21 mosaicism and maternal uniparental disomy for chromosome 21 in the euploid cell line[J]. Am J Med Genet, 2000,94(1):35-41. doi: 10.1002/1096-8628(20000904) 94:1<35::aid-ajmg8>3.0.co;2-9.
|
[5] |
徐聚春, 胡斌, 胡华梅, 等. 生殖腺嵌合——1例连续2次易位型21三体生育史病例细胞遗传学探讨[C]. 第十一届全国遗传病诊断与产前诊断学术交流会暨第二届海峡两岸医药卫生交流协会遗传与生殖专业委员会年会论文集, 2018:116.
|
[6] |
Da Sacco S, Sedrakyan S, Boldrin F, et al. Human amniotic fluid as a potential new source of organ specific precursor cells for future regenerative medicine applications[J]. J Urol, 2010, 183(3):1193-1200. doi: 10.1016/j.juro.2009.11.006.
pmid: 20096867
|
[7] |
Madan K. Natural human chimeras: A review[J]. Eur J Med Genet, 2020, 63(9):103971. doi: 10.1016/j.ejmg.2020.103971.
|
[8] |
Cheng L, Meiser B, Kaur R, et al. Health professionals′ role in the transfer of mosaic embryos after preimplantation genetic testing for aneuploidies[J]. Reprod Biomed Online, 2023, 46(6):926-938. doi: 10.1016/j.rbmo.2023.02.009.
|
[9] |
Hu P, Martinez AF, Kruszka P, et al. Low-level parental mosaicism affects the recurrence risk of holoprosencephaly[J]. Genet Med, 2019, 21(4):1015-1020. doi: 10.1038/s41436-018-0261-8.
pmid: 30197418
|
[10] |
付玉荣, 郭志超, 马莹, 等. 荧光原位杂交检测在产前诊断性染色体嵌合中的应用[J]. 解放军医学院学报, 2019, 40(9):810-814. doi: 10.3969/j.issn.2095-5227.2019.09.002.
|
[11] |
李显筝, 许玲, 胡晶晶, 等. 荧光原位杂交技术在产前诊断染色体嵌合体中的应用价值[J]. 国际生殖健康/计划生育杂志, 2020, 39(2):104-108. doi: 10.3969/j.issn.1674-1889.2020.02.004.
|
[12] |
张立文. 产前实验室检测技术现状与展望[J]. 解放军医学院学报, 2019, 40(9):805-809,820. doi: 10.3969/j.issn.2095-5227.2019.09.001.
|
[13] |
Sahajpal NS, Mondal AK, Fee T, et al. Clinical Validation and Diagnostic Utility of Optical Genome Mapping in Prenatal Diagnostic Testing[J]. J Mol Diagn, 2023, 25(4):234-246. doi: 10.1016/j.jmoldx.2023.01.006.
pmid: 36758723
|