2,770 research outputs found

    Rhesus D distribution in blood group of individuals and the relationship with bleeding time

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    Relationship between Rhesus factor and bleeding time in blood group O subjects selected randomly from Niger Delta University, Bayelsa State, Nigeria was investigated, using standard antisera and Duke’s method. Group O+ subjects had shorter bleeding time (1.32 ± 0.41min) than O- (1.33 ± 0.37 min). Gender-wise, group O+ females had shorter bleeding time (1.30 ± 0.40 min) than male O+ (1.34 ± 0.42 min), and males with O- blood type had shorter bleeding time (1.20 ± 0.39 min) than female O- (1.39 ± 0.37 min). Comparison within same gender shows that group O+ males had longer bleeding time (1.34 ± 0.42 min) than O- males (1.20 ± 0.39 min), and the females with blood type O+ had shorter bleeding time (1.30 ± 0.40 min) than O- females (1.39 ± 0.37 min). All these observed differences were statistically significant at p< 0.05. In conclusion, the current study suggests that generally, blood group O+ individuals have shorter bleeding time than O-. Bleeding time appear prolonged in O+ males than O+ females and prolonged in O- females than O- males. Within gender, O+ males appear to have longer bleeding time than O- males, while O+ females have shorter bleeding time than O- females.Key words: Rhesus factor, Blood group O, Bleeding time, male, female

    Why is timing of bird migration advancing when individuals are not?

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    Recent advances in spring arrival dates have been reported in many migratory species but the mechanism driving these advances is unknown. As population declines are most widely reported in species that are not advancing migration, there is an urgent need to identify the mechanisms facilitating and constraining these advances. Individual plasticity in timing of migration in response to changing climatic conditions is commonly proposed to drive these advances but plasticity in individual migratory timings is rarely observed. For a shorebird population that has significantly advanced migration in recent decades, we show that individual arrival dates are highly consistent between years, but that the arrival dates of new recruits to the population are significantly earlier now than in previous years. Several mechanisms could drive advances in recruit arrival, none of which require individual plasticity or rapid evolution of migration timings. In particular, advances in nest-laying dates could result in advanced recruit arrival, if benefits of early hatching facilitate early subsequent spring migration. This mechanism could also explain why arrival dates of short-distance migrants, which generally return to breeding sites earlier and have greater scope for advance laying, are advancing more rapidly than long-distance migrants

    Lack of response to garlic fed at different dose rates for the control of Haemonchus contortus in Merino wether lambs

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    With the increased incidence of parasite resistance to chemical anthelmintics worldwide novel approaches to manage parasite infection, such as medicinal plants and their extracts, are being investigated by the scientific community. The current study tested the effect of three rates of garlic (0.9, 1.8 and 3.6%) in a pelleted ration on Haemonchus contortus in sheep. Thirty-nine Merino wether lambs aged 6 months were divided into five treatment groups, including three garlic dose rates and two control groups that received no garlic. All animals were infected with 4000 L3 H. contortus larvae 3 weeks after allocation to treatments. A positive control group was drenched with abamectin 28 days after infection. The synthetic drench was effective in controlling the parasites, but there was no reduction in either worm egg counts (WEC) or total worm count due to the garlic. The 3.6% garlic treatment had significantly lower (P <0.05) liveweight, feed intake, body condition score and feed conversion ratio than any of the other treatment groups, suggesting that this level of garlic had a low level of anti-nutritional properties. There was an interaction between faecal WEC and voluntary feed intake overtime, with the animals with higher voluntary feed intake having lower WEC over time

    Monte Carlo Study of an Extended 3-State Potts Model on the Triangular Lattice

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    By introducing a chiral term into the Hamiltonian of the 3-state Potts model on a triangular lattice additional symmetries are achieved between the clockwise and anticlockwise states and the ferromagnetic state. This model is investigated using Monte Carlo methods. We investigate the full phase diagram and find evidence for a line tricritical points separating the ferromagnetic and antiferromagnetic phases.Comment: 6 pages, 10 figure

    Subpoena, Marshall County, M.S, 2 December 1837

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    https://egrove.olemiss.edu/aldrichcorr_a/1081/thumbnail.jp

    Cluster simulations of loop models on two-dimensional lattices

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    We develop cluster algorithms for a broad class of loop models on two-dimensional lattices, including several standard O(n) loop models at n \ge 1. We show that our algorithm has little or no critical slowing-down when 1 \le n \le 2. We use this algorithm to investigate the honeycomb-lattice O(n) loop model, for which we determine several new critical exponents, and a square-lattice O(n) loop model, for which we obtain new information on the phase diagram.Comment: LaTex2e, 4 pages; includes 1 table and 2 figures. Totally rewritten in version 2, with new theory and new data. Version 3 as published in PR

    Ferromagnetic phase transition for the spanning-forest model (q \to 0 limit of the Potts model) in three or more dimensions

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    We present Monte Carlo simulations of the spanning-forest model (q \to 0 limit of the ferromagnetic Potts model) in spatial dimensions d=3,4,5. We show that, in contrast to the two-dimensional case, the model has a "ferromagnetic" second-order phase transition at a finite positive value w_c. We present numerical estimates of w_c and of the thermal and magnetic critical exponents. We conjecture that the upper critical dimension is 6.Comment: LaTex2e, 4 pages; includes 6 Postscript figures; Version 2 has expanded title as published in PR

    Investigations on numerical analysis of coupled thermo-hydraulic problems in geotechnical engineering

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    Critical speeding-up in a local dynamics for the random-cluster model

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    We study the dynamic critical behavior of the local bond-update (Sweeny) dynamics for the Fortuin-Kasteleyn random-cluster model in dimensions d=2,3, by Monte Carlo simulation. We show that, for a suitable range of q values, the global observable S_2 exhibits "critical speeding-up": it decorrelates well on time scales much less than one sweep, so that the integrated autocorrelation time tends to zero as the critical point is approached. We also show that the dynamic critical exponent z_{exp} is very close (possibly equal) to the rigorous lower bound \alpha/\nu, and quite possibly smaller than the corresponding exponent for the Chayes-Machta-Swendsen-Wang cluster dynamics.Comment: LaTex2e/revtex4, 4 pages, includes 5 figure
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