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https://doi.org/10.52322/jocmbmh.12.en.0102
ABSTRACT
Increasing the live birth rate from single embryo transfers remains a major challenge in assisted reproduction. Currently, embryologists primarily rely on morphological assessments to select embryos for transfer. Preimplantation genetic testing (PGT) is a valuable addition that identifies embryos with higher chances of successful implantation and delivery of healthy infants. Advances in time-lapse incubators and algorithms for quantitative morphological analysis have aided embryologists in choosing embryos with improved implantation potential. The combination of these technologies shows promise for improving single embryo transfer outcomes through enhanced embryo selection.
Keywords: Time-lapse microscopy, embryo selection.
Citations:
APA: Nguyen Thi Thanh Thao, & Dao Lan Huong. (2023). Utilizing Time-lapse microscopy to optimize embryo selection in in-vitro fertilization. Journal of Clinical Medicine, 1(12), 11-17.
AMA: Thao NTT, Huong DL. Utilizing Time-lapse microscopy to optimize embryo selection in in-vitro fertilization. J Clin Med. 2023;1(12):11-17.
MLA: Thao, Nguyen Thi Thanh, and Dao Lan Huong. "Utilizing Time-lapse Microscopy to Optimize Embryo Selection in In-vitro Fertilization." Journal of Clinical Medicine, vol. 1, no. 12, 2023, pp. 11-17.
Vancouver: Thao NTT, Huong DL. Utilizing Time-lapse microscopy to optimize embryo selection in in-vitro fertilization. J Clin Med. 2023;1(12):11-17.
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