染色体46,xy,1qh+胎停三次还能治吗?Chromosome 46, XY, 1qh + fetal stop three times still can treat?
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- 更新日期:2019-06-13 09:17
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染色体46,xy,1qh+,胎停育三次,用什么方法能治疗好呢? Chromosome 46, XY, 1qh +, stillborn three times, with what method can be treated well? 陈凤林教授指出:染色体46,46,xy,1qh+合并胎停育三次,用什么方法治疗取决于什么原因导致的胎停育,染色体
染色体46,xy,1qh+,胎停育三次,用什么方法能治疗好呢?
Chromosome 46, XY, 1qh +, stillborn three times, with what method can be treated well?
陈凤林教授指出:染色体46,46,xy,1qh+合并胎停育三次,用什么方法治疗取决于什么原因导致的胎停育,染色体因素不是唯一的因素,必须找到病因对因治疗才有效,例如免疫因素可以孕前进行抗胚胎抗体免疫治疗干预,而宫腔形态需要进行形态修复治疗!
Professor Chenfenglin pointed out: Chromosomes 46, 46, XY, 1qh + combined with fetal miscarriage three times, what method to treat depends on what causes fetal miscarriage, chromosome factors are not the only factors, must find the cause of the treatment is effective. For example, immune factors can be pre-pregnancy anti-embryo antibody immunotherapy intervention, and the cavity morphology needs to be repaired!
他指出:染色体异常有三种情况:
He pointed out that there are three conditions for chromosomal abnormalities:
致死型异常;致残型异常;携带型异常。致死型,是染色体严重变异,结局是胚胎枯萎而自然流产,不会有出生婴儿。
Lethal abnormalities; Disabling abnormalities; Portable anomaly. The lethal type is a serious chromosome variation. The outcome is that the embryo withers and naturally miscarries, and there will be no baby born.
致残型,是染色体中度异常,多是染色体数量变化,如21三体,22三体,特纳综合征(多一条Y染色体)等出生的都是残疾人,基本都无生育能力。
The disability type is a moderately abnormal chromosome, and it is mostly a change in the number of chromosomes. For example, 21 trisomes, 22 trisomes, Turner syndrome(more than one Y chromosome), etc., are all born with disabilities and are basically infertile.
携带型,是轻度染色体异常,如平衡易位、倒位[46,XY,t(5,12)]等,遗传信息并不少,只是染色体片段发生位移,这样的人外表和生殖腺正常,也不会导致流产,充其量出生的后代染色体与上代一样而已。
Portable type, is a mild chromosomal anomaly, such as equilibrium transposition, inversion[ 46, XY, T(5, 12)] And so on, there is a lot of genetic information, but the chromosomal fragments are displaced. Such a person's appearance and gonad are normal, and it will not lead to miscarriage. At best, the offspring born have the same chromosomes as the previous generation.
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