囊胚完全形成后多次塌陷是非整倍体的独立风险因素--一项基于人工智能和人工验证的研究。

IF 4.2 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM Reproductive Biology and Endocrinology Pub Date : 2024-07-15 DOI:10.1186/s12958-024-01242-6
Lei Jin, Keyi Si, Zhou Li, Hui He, Li Wu, Bingxin Ma, Xinling Ren, Bo Huang
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引用次数: 0

摘要

背景:囊胚塌陷的发生可能成为植入前胚胎质量评估的一个指标。有报道称,囊胚塌陷会导致非整倍体率升高和临床预后变差,但还需要更大规模的研究来探讨这种关系。本研究探讨了人工智能识别和量化的囊胚塌陷特征,并探讨了囊胚塌陷与胚胎倍性、形态质量和临床结局之间的关联:这项观察性研究纳入了一家学术生殖中心在 2019 年 1 月至 2023 年 2 月期间进行的 1071 个延时植入前遗传检测周期中 3288 个活检囊胚的数据。所有移植的囊胚均为优倍囊胚。人工智能识别延时显微镜视频中的囊胚塌陷,然后记录塌陷时间以及每次塌陷的开始时间、恢复持续时间和收缩百分比。利用现有的 1196 个优倍体胚胎和 1300 个非优倍体胚胎的数据,研究了囊胚塌陷对胚胎倍性、妊娠、活产、流产和胚胎质量的影响:结果:5.6%的囊胚在完全囊胚形成(tB)前至少塌陷一次,19.4%的囊胚在完全囊胚形成(tB)后至少塌陷一次,3.1%的囊胚在完全囊胚形成(tB)前后均塌陷。囊胚在 tB 后多次塌陷(次数≥ 2)与较高的非整倍体率有关(54.6%,P > 0.05;70.5%,P 结论:囊胚塌陷是胚胎发育过程中常见的现象:囊胚崩解在囊胚发育过程中很常见。这项研究强调,囊胚移植后多次囊胚塌陷可能是导致非整倍体的一个独立风险因素,临床医生和胚胎学家在选择囊胚移植时应考虑到这一点。
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Multiple collapses of blastocysts after full blastocyst formation is an independent risk factor for aneuploidy - a study based on AI and manual validation.

Background: The occurrence of blastocyst collapse may become an indicator of preimplantation embryo quality assessment. It has been reported that collapsing blastocysts can lead to higher rates of aneuploidy and poorer clinical outcomes, but more large-scale studies are needed to explore this relationship. This study explored the characteristics of blastocyst collapse identified and quantified by artificial intelligence and explored the associations between blastocyst collapse and embryo ploidy, morphological quality, and clinical outcomes.

Methods: This observational study included data from 3288 biopsied blastocysts in 1071 time-lapse preimplantation genetic testing cycles performed between January 2019 and February 2023 at a single academic fertility center. All transferred blastocysts are euploid blastocysts. The artificial intelligence recognized blastocyst collapse in time-lapse microscopy videos and then registered the collapsing times, and the start time, the recovery duration, the shrinkage percentage of each collapse. The effects of blastocyst collapse and embryo ploidy, pregnancy, live birth, miscarriage, and embryo quality were studied using available data from 1196 euploid embryos and 1300 aneuploid embryos.

Results: 5.6% of blastocysts collapsed at least once only before the full blastocyst formation (tB), 19.4% collapsed at least once only after tB, and 3.1% collapsed both before and after tB. Multiple collapses of blastocysts after tB (times ≥ 2) are associated with higher aneuploid rates (54.6%, P > 0.05; 70.5%, P < 0.001; 72.5%, P = 0.004; and 71.4%, P = 0.049 in blastocysts collapsed 1, 2, 3 or ≥ 4 times), which remained significant after adjustment for confounders (OR = 2.597, 95% CI 1.464-4.607, P = 0.001). Analysis of the aneuploid embryos showed a higher ratio of collapses and multiple collapses after tB in monosomies and embryos with subchromosomal deletion of segmental nature (P < 0.001). Blastocyst collapse was associated with delayed embryonic development and declined blastocyst quality. There is no significant difference in pregnancy and live birth rates between collapsing and non-collapsing blastocysts.

Conclusions: Blastocyst collapse is common during blastocyst development. This study underlined that multiple blastocyst collapses after tB may be an independent risk factor for aneuploidy which should be taken into account by clinicians and embryologists when selecting blastocysts for transfer.

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来源期刊
Reproductive Biology and Endocrinology
Reproductive Biology and Endocrinology 医学-内分泌学与代谢
CiteScore
7.90
自引率
2.30%
发文量
161
审稿时长
4-8 weeks
期刊介绍: Reproductive Biology and Endocrinology publishes and disseminates high-quality results from excellent research in the reproductive sciences. The journal publishes on topics covering gametogenesis, fertilization, early embryonic development, embryo-uterus interaction, reproductive development, pregnancy, uterine biology, endocrinology of reproduction, control of reproduction, reproductive immunology, neuroendocrinology, and veterinary and human reproductive medicine, including all vertebrate species.
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