2,073 research outputs found

    Modeling of in hospital mortality determinants in myocardial infarction patients, with and without stroke: A national study in Iran

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    Background: The data and determinants of mortality due to stroke in myocardial infarction (MI) patients are unknown. This study was conducted to evaluate the differences in risk factors for hospital mortality among MI patients with and without stroke history. Materials and Methods: This study was a retrospective, cohort study; 20,750 new patients with MI from April, 2012 to March, 2013 were followed up and their data were analyzed according to having or not having the stroke history. Stroke and MI were defined based on the World Health Organization's definition. The data were analyzed by logistic regression in STATA software. Results: Of the 20,750 studied patients, 4293 had stroke history. The prevalence of stroke in the studied population was derived 20.96% (confidence interval CI] 95%: 20.13-21.24). Of the patients, 2537 (59.1%) had ST-elevation MI (STEMI). Mortality ratio in patients with and without stroke was obtained 18.8% and 10.3%, respectively. The prevalence of risk factors in MI patients with and without a stroke is various. The adjusted odds ratio of mortality in patients with stroke history was derived 7.02 (95% CI: 5.42-9) for chest pain resistant to treatment, 2.39 (95% CI: 1.97-2.9) for STEMI, 3.02 (95% CI: 2.5-3.64) for lack of thrombolytic therapy, 2.2 (95% CI: 1.66-2.91) for heart failure, and 2.17 (95% CI: 1.6-2.9) for ventricular tachycardia. Conclusion: With regards to the factors associated with mortality in this study, it is particularly necessary to control the mortality in MI patients with stroke history. More emphasis should be placed on the MI patients with the previous stroke over those without in the interventions developed for prevention and treatment, and for the prevention of avoidable mortalities

    Pump-Enhanced Continuous-Wave Magnetometry using Nitrogen-Vacancy Ensembles

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    Ensembles of nitrogen-vacancy centers in diamond are a highly promising platform for high-sensitivity magnetometry, whose efficacy is often based on efficiently generating and monitoring magnetic-field dependent infrared fluorescence. Here we report on an increased sensing efficiency with the use of a 532-nm resonant confocal cavity and a microwave resonator antenna for measuring the local magnetic noise density using the intrinsic nitrogen-vacancy concentration of a chemical-vapor deposited single-crystal diamond. We measure a near-shot-noise-limited magnetic noise floor of 200 pT/Hz\sqrt{\text{Hz}} spanning a bandwidth up to 159 Hz, and an extracted sensitivity of approximately 3 nT/Hz\sqrt{\text{Hz}}, with further enhancement limited by the noise floor of the lock-in amplifier and the laser damage threshold of the optical components. Exploration of the microwave and optical pump-rate parameter space demonstrates a linewidth-narrowing regime reached by virtue of using the optical cavity, allowing an enhanced sensitivity to be achieved, despite an unoptimized collection efficiency of <2 %, and a low nitrogen-vacancy concentration of about 0.2 ppb.Comment: 10 pages and 5 figure

    Strategi Komunikasi Politik dan Budaya Transparansi Partai Politik

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    Freedom of information has become a momentum for the effort to realize good governance and promote democratic governance system in Indonesia. With the enactment of Freedom of Information Law No. 14 of 2008, the public was given access to the right of public information as human right such as guaranteed by law. Public freedom of information should encourage public participation. Political parties as public institutions also have to give information in the service of the public who wish to access any kind of information which is regulated by law. However, based on reports ICW, how difficult political parties provide the information requested by the ICW. This Article examines the political culture, political communication strategies and public freedom of information within the political parties

    COVID-19 spread in a classroom equipped with partition – A CFD approach

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    In this study, the motion and distribution of droplets containing coronaviruses emitted by coughing of an infected person in front of a classroom (e.g., a teacher) were investigated using CFD. A 3D turbulence model was used to simulate the airflow in the classroom, and a Lagrangian particle trajectory analysis method was used to track the droplets. The numerical model was validated and was used to study the effects of ventilation airflow speeds of 3, 5, and 7 m/s on the dispersion of droplets of different sizes. In particular, the effect of installing transparent barriers in front of the seats on reducing the average droplet concentration was examined. The results showed that using the seat partitions for individuals can prevent the infection to a certain extent. An increase in the ventilation air velocity increased the droplets’ velocities in the airflow direction, simultaneously reducing the trapping time of the droplets by solid barriers. As expected, in the absence of partitions, the closest seats to the infected person had the highest average droplet concentration (3.80 × 10−8 kg/m3 for the case of 3 m/s)

    On sets of irreducible polynomials closed by composition

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    Let S\mathcal S be a set of monic degree 22 polynomials over a finite field and let CC be the compositional semigroup generated by S\mathcal S. In this paper we establish a necessary and sufficient condition for CC to be consisting entirely of irreducible polynomials. The condition we deduce depends on the finite data encoded in a certain graph uniquely determined by the generating set S\mathcal S. Using this machinery we are able both to show examples of semigroups of irreducible polynomials generated by two degree 22 polynomials and to give some non-existence results for some of these sets in infinitely many prime fields satisfying certain arithmetic conditions
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