震惊之后:异胎妊娠对后来的生育能力和父母身份的影响
Efthalia Moustakli1, Ekaterini Domali2, Anastasios Potiris3
1Department of Nursing, School of Health Sciences, University of Ioannina, 4th kilometer National Highway Str. Ioannina-Athens, 45500 Ioannina, Greece.
Biomedicines
|September 27, 2025
概括
宫外怀孕 (EP) 可以影响未来的生育能力和心理健康. 早期的生育咨询和心理支持对于妇女来说至关重要,以改善生殖结果和整体健康.
科学领域:
- 生殖健康 生殖健康
- 孕产妇患病率 孕产妇患病率
- 心理社会影响 心理社会影响
背景情况:
- 宫外妊娠 (EP) 是一种可能致命的疾病,胚胎植入子宫外,通常在输卵管中.
- EP影响1-2%的怀孕,是第一季度孕产妇发病的主要原因.
- EP的影响超出了即时的临床护理范围,影响了长期的生育能力和父母的结果.
研究的目的:
- 研究异胎妊娠 (EP) 对生育和育儿的生理,生殖和心理方面的多方面的影响.
- 综合现有关于患者体验,心理社会影响和EP后生殖结果的研究.
- 确定影响EP后生殖成功和父母福祉的关键因素.
主要方法:
- 进行了叙事文献综述,汇编了从定性访谈,病例控制研究和队列研究中得出的发现.
- 包括过去20年发表的同行评审研究.
- 研究重点关注患者经验,心理社会影响和EP后的生殖结果.
主要成果:
- 过去的子宫外妊娠 (EP) 可能会略微降低未来怀孕的机会,特别是在salpingectomy之后.
- 辅助生殖技术可能有助于减轻与EP相关的一些生育风险.
- 心理后果显著复杂化了EP后的育儿之旅.
结论:
- 宫外怀孕 (EP) 可以对生育能力和育儿过程产生持久的影响.
- 获得生育服务和咨询对EP后的生殖结果产生重大影响.
- 针对身体和心理健康的综合性后续护理,包括早期生育咨询和心理支持,对于优化患者福祉和生殖成功至关重要.
更多相关视频
08:06Author Spotlight: Evaluating the Impact of Immediate Partial Removal of Cumulus-Oocyte Complexes on Fertilization Efficiency and Embryo Quality
Published on: October 18, 2024
822
06:11Author Spotlight: Exploring the Long-Term Health Impacts of Intracytoplasmic Sperm Injection on Offspring
Published on: May 17, 2024
1.0K
相关概念视频
Oogenesis
69.1K
In human women, oogenesis produces one mature egg cell or ovum for every precursor cell that enters meiosis. This process differs in two unique ways from the equivalent procedure of spermatogenesis in males. First, meiotic divisions during oogenesis are asymmetric, meaning that a large oocyte (containing most of the cytoplasm) and minor polar body are produced as a result of meiosis I, and again following meiosis II. Since only oocytes will go on to form embryos if fertilized, this unequal...
69.1K
Spermatogenesis
121.9K
Spermatogenesis is the process by which haploid sperm cells are produced in the male testes. It starts with stem cells located close to the outer rim of seminiferous tubules. These spermatogonial stem cells divide asymmetrically to give rise to additional stem cells (meaning that these structures “self-renew”), as well as sperm progenitors, called spermatocytes. Importantly, this method of asymmetric mitotic division maintains a population of spermatogonial stem cells in the male...
121.9K
Teratogenicity
4.0K
The ability of a drug to produce structural deformations and functional abnormalities in the developing embryo or the fetus is called teratogenicity, and the drug producing this effect is known as a teratogen. Teratogenic effects include stillbirth, miscarriage, intrauterine growth restriction, and neurocognitive delay. A teratogen may affect the embryo at different stages of development, which is important in determining the type and extent of the damage. During blastocyst formation, the early...
4.0K
Infertility in Females
3.7K
Female infertility is defined as the inability to conceive after a year of regular, unprotected intercourse and affects about 10–15% of couples worldwide. The primary cause of female infertility is ovulatory disorders, which hinder the release of eggs. These disorders can be classified as hypothalamic amenorrhea, polycystic ovarian syndrome (PCOS), premature ovarian failure, and hyperprolactinemic anovulation disorders.
Endometriosis, a condition characterized by abnormal growth of...
Endometriosis, a condition characterized by abnormal growth of...
3.7K
Infertility in Males
527
Male infertility affects millions of couples worldwide, arising from various factors that impact different stages of the reproductive process. An endocrine imbalance resulting from conditions like hypogonadism, Klinefelter syndrome, or pituitary disorders can disrupt hormone levels and reduce sperm production. Testicular defects, such as tumors, cryptorchidism, atrophic testes, abnormal sperm morphology, and low sperm count or motility, may arise due to genetic factors, structural...
527
Meiosis II
207.0K
Meiosis II is the second and final stage of meiosis. It relies on the haploid cells produced during meiosis I, each of which contain only 23 chromosomes—one from each homologous initial pair. Importantly, each chromosome in these cells is composed of two joined copies, and when these cells enter meiosis II, the goal is to separate such sister chromatids using the same microtubule-based network employed in other division processes. The result of meiosis II is two haploid cells, each...
207.0K
