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Biomedical subjects

J D Biggins

Publications and source records attributed to J D Biggins.

4 recordsLinked to original sources

Nontransitivity of paternity in a bird.

In many animals reproductive success is determined after insemination by the interaction of male and female processes. While sperm competition is reasonably well understood in some taxa, other processes, such as cryptic female choice and differential early embryo mortality resulting from genetic incompatibilities, are less well understood. The relative importance of these different factors contributing to reproductive success is difficult to assess. Here we control for male-mediated effects (which are often considerable and can mask more subtle processes) through the artificial insemination of known numbers of sperm in the domestic fowl to reveal that male reproductive success is nontransitive across females: the success of a particular male depends on the background against which his sperm compete for fertilization. Two potential processes could account for this effect: cryptic female choice (sperm choice) or differential early embryo mortality. Regardless of the mechanism, nontransitivity of male reproductive success has important evolutionary consequences, including the maintenance of variation in male fitness.

Analysis of Variance↗

Factors affecting the peak expiratory flow rate in children.

Standing height and peak expiratory flow rate (PEFR) were measured in 339 British schoolchildren aged 7-16 years. Enquiry was made into a past history of wheeze or atopy, a family history of asthma or atopy, or a cold within the preceding 2 weeks. A strong correlation was found between PEFR and height, expressed by the equation PEFR = 5.640 Ht - 472.5 (r = 0.89). Neither a recent cold nor a positive personal or family history of wheeze or atopy had any significant effect on the regression equation. Sex was also unimportant. Further examination of the data revealed that age had an effect on peak expiratory flow rate independent of height. The effect of age was linear in girls and curvilinear in boys. Five hundred and sixty-nine Greek schoolchildren were also studied and similar age effects were found on the regression of peak expiratory flow rate on height. The implication of these findings is that any population study of peak expiratory flow rates in children should ensure a normal age distribution at each height interval. Significant error in the prediction of the PEFR will result if the effect of age is ignored, particularly in pubertal boys.

Adolescent↗