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A Fairley 《CMAJ》1990,142(9):993-995
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Where you sit defines success in the world of multiple births. One person's success is a failure to others. Comments and observations come from years of working with parents of multiple clubs and presentations to and discussions with obstetricians and neonatologists.  相似文献   

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We used a population-based historical French Canadian database to examine the effects of mother's birth season on sex ratio at birth. Non-first births in the database (n = 127,658) were analyzed for their sex, parish size (2 large parishes of Montreal and Quebec or the other smaller parishes), time period (births up to 1719 or those from 1720), maternal age (< or = 24, 25-29, 30-34, 35+ years), sex of the preceding sibling (male or female), and birth seasons of the child and his or her parents (February-April, May-July, August-October, November-January). Season of child's birth significantly affected the sex ratio (chi 2 = 11.507, d.f. = 3, p = 0.009), with the births in February-April or May-July showing a lower sex ratio. Season of mother's birth also contributed highly significantly to the variation of sex ratio (chi 2 = 15.196, d.f. = 3, p = 0.002); mothers born in February-April had a low sex ratio among their children (sex ratio = 1.013). In contrast, season of father's birth did not affect the sex ratio (chi 2 = 0.618, d.f. = 3, p = 0.892). When a multiple logistic model was applied to the data, mother's birth season was the single most significant factor. The lower sex ratio from mothers born in February-April was observed consistently for every maternal age and delivery season. Seasonal influences on female fetuses seem to have changed their future reproductive characteristics.  相似文献   

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The effects of mating time and of LD cycles on the timing of birth and length of gestation were examined in Syrian hamsters (Mesocricetus auratus). Hamsters maintained on 14L:10D cycles were mated for 2 h either in the evening or in the morning, and groups of hamsters mated in the morning were subjected to either a 6-h advance shift or a 6-h delay shift of the LD cycle on Days 5-14 of gestation. For the last 2 days of gestation the hamsters were kept in constant dim light and observed every hour to determine the time of birth. Hamsters mated in the evening gave birth an average of 4.8 h before those mated in the morning, and the hamsters subjected to an advance shift gave birth an average of 8.1 h before those subjected to delay shift. The results show that 80-100% of births occur during the subjective day on Day 16 of gestation and that the minimum duration of gestation is 15 days and 2 h. The regulation of birth appears to involve two processes, an interval timer related to the time of conception and a circadian rhythm that is governed by the LD cycle.  相似文献   

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