arrow
返回

Timed intercourse for couples trying to conceive

delete2015-03-17
delete37
PRE
AI
B
Brittany Schulze
M
Michael Beckmann
J
Jan A.M. Kremer
C
Cindy Farquhar
DOI:10.1002/14651858.CD011345.pub2delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Background Fertility problems are very common, as subfertility affects about 10% to 15% of couples trying to conceive. There are many factors that may impact a couple's ability to conceive and one of these may be incorrect timing of intercourse. Conception is only possible from approximately five days before up to several hours after ovulation. Therefore, to be effective, intercourse must take place during this fertile period. 'Timed intercourse' is the practice of prospectively identifying ovulation and, thus, the fertile period to increase the likelihood of conception. Whilst timed intercourse may increase conception rates and reduce unnecessary intervention and costs, there may be associated adverse aspects including time consumption and stress. Ovulation prediction methods used for timing intercourse include urinary hormone measurement (luteinizing hormone (LH), estrogen), tracking basal body temperatures, cervical mucus investigation, calendar charting and ultrasonography. This review considered the evidence from randomised controlled trials for the use of timed intercourse on positive pregnancy outcomes. Objectives To assess the benefits and risks of ovulation prediction methods for timing intercourse on conception in couples trying to conceive. Search methods We searched the following sources to identify relevant randomised controlled trials, the Menstrual Disorders and Subfertility Group Specialised Register, the Cochrane Central Register of Controlled Trials (CENTRAL), MEDLINE, EMBASE, PsycINFO, PubMed, LILACS, Web of Knowledge, the World Health Organization (WHO) Clinical Trials Register Platform and ClinicalTrials.gov. Furthermore, we manually searched the references of relevant articles. The search was not restricted by language or publication status. The last search was on 5 August 2014. Selection criteria We included randomised controlled trials (RCTs) comparing timed intercourse versus intercourse without ovulation prediction or comparing different methods of ovulation prediction for timing intercourse against each other in couples trying to conceive. Data collection and analysis Two review authors independently assessed trial eligibility and risk of bias and extracted the data. The primary review outcomes were cumulative live birth and adverse events (such as quality of life, depression and stress). Secondary outcomes were clinical pregnancy, pregnancy (clinical or self-reported pregnancy, not yet confirmed by ultrasound) and time to conception. We combined data to calculate pooled risk ratios (RRs) and 95% confidence intervals (CIs). Statistical heterogeneity was assessed using the I-2 statistic. We assessed the overall quality of the evidence for the main comparisons using GRADE methods. Main results We included five RCTs (2840 women or couples) comparing timed intercourse versus intercourse without ovulation prediction. Unfortunately one large study (n = 1453) reporting live birth and pregnancy had not published outcome data by randomised group and therefore could not be analysed. Consequently, four RCTs (n = 1387) were included in the meta-analysis. The evidence was of low to very low quality. Main limitations for downgrading the evidence included imprecision, lack of reporting clinically relevant outcomes and the high risk of publication bias. One study reported live birth, but the sample size was too small to draw any relevant conclusions on the effect of timed intercourse (RR 0.75, 95% CI 0.16 to 3.41, 1 RCT, n = 17, very low quality). One study reported stress as an adverse event. There was no evidence of a difference in levels of stress (mean difference 1.98, 95 CI% 0.87 to 4.83, 1 RCT, n = 77, low level evidence). No other studies reported adverse events. Two studies reported clinical pregnancy. There was no evidence of a difference in clinical pregnancy rates (RR 1.10, 95% CI 0.57 to 2.12, 2 RCTs, n = 177, I-2 = 0%, low level evidence). This suggested that if the chance of a clinical pregnancy following intercourse without ovulation prediction is assumed to be 16%, the chance of success following timed intercourse would be between 9% and 33%. Four studies reported pregnancy rate (clinical or self-reported pregnancy). Timed intercourse was associated with higher pregnancy rates compared to intercourse without ovulation prediction in couples trying to conceive (RR 1.35, 95% CI 1.06 to 1.71, 4 RCTs, n = 1387, I2 = 0%, very low level evidence). This suggests that if the chance of a pregnancy following intercourse without ovulation prediction is assumed to be 13%, the chance following timed intercourse would be between 14% and 23%. Subgroup analysis by duration of subfertility showed no difference in effect between couples trying to conceive for < 12 months versus couples trying for = 12 months. One trial reported time to conception data and showed no evidence of a difference in time to conception. Authors' conclusions There are insufficient data available to draw conclusions on the effectiveness of timed intercourse for the outcomes of live birth, adverse events and clinical pregnancy. Timed intercourse may improve pregnancy rates (clinical or self-reported pregnancy, not yet confirmed by ultrasound) compared to intercourse without ovulation prediction. The quality of this evidence is low to very low and therefore findings should be regarded with caution. There is a high risk of publication bias, as one large study remains unpublished 8 years after recruitment finished. Further research is required, reporting clinically relevant outcomes (live birth, clinical pregnancy rates and adverse effects), to determine if timed intercourse is safe and effective in couples trying to conceive.
Keyword:
MUCUS OBSERVATIONS
FERTILE WINDOW
OVULATION
PREGNANCY
PREDICTION
CONCEPTION
SUBFERTILITY
STRESS
KITS
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

Cochrane Database of Systematic Reviews 封面图
Cochrane Database of Systematic Reviews
IF:
9.4
论文数:
1.3W
被引数:
7.9W

机构

Mater Health Services 封面图
Mater Health Services
学者数:
1.0K
论文数: 711
被引数: 682
M
Mater Mothers Hospital
学者数:
76
论文数: 62
被引数: 80
R
Radboud University Nijmegen
学者数:
4.4W
论文数: 3.4W
被引数: 5.4W
学者 查看更多机构
引用论文

引用论文

Childhood Risk Factors for Persistence of Violence in the Transition to Adulthood: A Social Development Perspective
err2001-01-01
err0
PREAI
errRick Kosterman; John W. Graham; J. David Hawkins; Richard F. Catalano; Todd I. Herrenkohl
err分享
err收藏
Use of a Web‐based clinical decision support system to improve abdominal aortic aneurysm screening in a primary care practice
err2011-03-15
err0
errOAAI
errRajeev Chaudhry; Sidna M. Tulledge‐Scheitel; Doug A. Parks; Kurt B. Angstman; Lindsay K. Decker; Robert J. Stroebel
err分享
err收藏
Interleukin-1 receptors and receptor antagonist in haemodialysis
err1997-01-01
err0
errOAAI
errD. Donati; D. Degiannis; E. Mazzola; L. Gastaldi; J. Raskova; K. Raska; G. Camussi
err分享
err收藏
Female subfertility
errLANCET
IF88.5
err2002-07-01
err558
PREAI
errEvers, JLH
err分享
err收藏
Intra-uterine insemination for unexplained subfertility无法解释的生育力不足的子宫内人工授精
err2012-09-12
err62
errOAAI
errVeltman-Verhulst, Susanne M.; Cohlen, Ben J.; Hughes, Edward; Heineman, Maas Jan
err分享
err收藏
Lessons learned from implementation of a computerized application for pending tests at hospital discharge
err2010-11-15
err0
PREAI
errAnuj K. Dalal; Eric G. Poon; Andrew S. Karson; Tejal K. Gandhi; Christopher L. Roy
err分享
err收藏
err分享
err收藏
学者 查看更多内容