86 research outputs found
Study of pulsatile pressure-driven electroosmotic flows through an elliptic cylindrical microchannel with the Navier slip condition
This paper aims to study an unsteady electric field-driven and pulsatile pressure-driven flow of a Newtonian fluid in an elliptic cylindrical microchannel with Navier boundary wall slip. The governing equations of the slip flow and distributions of electric potential and charge densities are the modified Navier-Stokes equations, the Poisson equation and the Nernst-Planck equations, respectively. Analytical and numerical analyses based on the Mathieu and modified Mathieu equations are performed to investigate the interplaying effects of pulsatile pressure gradients and the slip lengths on the electroosmotic flow
Learning CAD at university through summaries of the rules of design intent
The ease with which 3D CAD models may be modified and reused are two
key aspects that improve the design-intent variable and that can significantly shorten
the development timelines of a product. A set of rules are gathered from various
authors that take different 3D modelling strategies into account. These rules are then
applied to CAD strategic-knowledge learning methodology and included in 3D CAD
modelling exercises for students following the degree in mechanical engineering at the
University of Burgos (Spain). The experiment was conducted in two groups with a total
of 75 students. The design-intent rules were introduced in the different exercises that
the teacher explained in both the theoretical and the practical classes. In addition, a
summary of the different design rules in each of the practical exercises was explained
in the practical classes in only one of the groups. The experimental results, reported in
this paper, tested the influence of these summaries on overall improvements in 3D
modelling and on the design-intent variable, which is subdivided into four sections:
skeleton, structures, alterations and constraints. The use of the summaries of the design
intent rules led to statistically significant improvements in 3D modelling in the
experimental group, in comparison with the group of students to whom those summaries
were not explained
Screening out irrelevant cell-based models of disease
The common and persistent failures to translate promising preclinical drug candidates into clinical success highlight the limited effectiveness of disease models currently used in drug discovery. An apparent reluctance to explore and adopt alternative cell-and tissue-based model systems, coupled with a detachment from clinical practice during assay validation, contributes to ineffective translational research. To help address these issues and stimulate debate, here we propose a set of principles to facilitate the definition and development of disease-relevant assays, and we discuss new opportunities for exploiting the latest advances in cell-based assay technologies in drug discovery, including induced pluripotent stem cells, three-dimensional (3D) co-culture and organ-on-a-chip systems, complemented by advances in single-cell imaging and gene editing technologies. Funding to support precompetitive, multidisciplinary collaborations to develop novel preclinical models and cell-based screening technologies could have a key role in improving their clinical relevance, and ultimately increase clinical success rates
Global burden of cardiovascular diseases and risk factors, 1990â2019: update from the GBD 2019 study
Cardiovascular diseases (CVDs), principally ischemic heart disease (IHD) and stroke, are the leading cause of global mortality and a major contributor to disability. This paper reviews the magnitude of total CVD burden, including 13 underlying causes of cardiovascular death and 9 related risk factors, using estimates from the Global Burden of Disease (GBD) Study 2019. GBD, an ongoing multinational collaboration to provide comparable and consistent estimates of population health over time, used all available population-level data sources on incidence, prevalence, case fatality, mortality, and health risks to produce estimates for 204 countries and territories from 1990 to 2019.
Prevalent cases of total CVD nearly doubled from 271 million (95% uncertainty interval [UI]: 257 to 285 million) in 1990 to 523 million (95% UI: 497 to 550 million) in 2019, and the number of CVD deaths steadily increased from 12.1 million (95% UI:11.4 to 12.6 million) in 1990, reaching 18.6 million (95% UI: 17.1 to 19.7 million) in 2019. The global trends for disability-adjusted life years (DALYs) and years of life lost also increased significantly, and years lived with disability doubled from 17.7 million (95% UI: 12.9 to 22.5 million) to 34.4 million (95% UI:24.9 to 43.6 million) over that period. The total number of DALYs due to IHD has risen steadily since 1990, reaching 182 million (95% UI: 170 to 194 million) DALYs, 9.14 million (95% UI: 8.40 to 9.74 million) deaths in the year 2019, and 197 million (95% UI: 178 to 220 million) prevalent cases of IHD in 2019. The total number of DALYs due to stroke has risen steadily since 1990, reaching 143 million (95% UI: 133 to 153 million) DALYs, 6.55 million (95% UI: 6.00 to 7.02 million) deaths in the year 2019, and 101 million (95% UI: 93.2 to 111 million) prevalent cases of stroke in 2019.
Cardiovascular diseases remain the leading cause of disease burden in the world. CVD burden continues its decades-long rise for almost all countries outside high-income countries, and alarmingly, the age-standardized rate of CVD has begun to rise in some locations where it was previously declining in high-income countries. There is an urgent need to focus on implementing existing cost-effective policies and interventions if the world is to meet the targets for Sustainable Development Goal 3 and achieve a 30% reduction in premature mortality due to noncommunicable diseases
Surface shadowingâs effects on the scattering from rough surfaces
In the wave scattering from rough surfaces investigated by using the surface morphology and the vertical AFM, in general the correct and complete results cannot be obtained. If the roughness with respect to the wavelength is more than a critical limit, the theoretical calculation is not the same as the experimental data, and this inequality cannot be corrected without considering the shadowing effect. In this paper, instead of direct considering of the shadowing effect on scattering equations, we investigated its effect on the surface characteristics. If the shadowing exists, some parts of the surface cannot be seen depending on the incident angle and the wavelength. In this study, the effects of the shadowing on the surface characteristics of a self-affine experimental sample were investigated under the Born approximation
The Protective and Therapeutic Roles of Hexamethylenetetramine and N-Acetyl-Cysteine on Sulfur Mustard-Induced Oxidative Stress in Rat Serum
Introduction: Sulfur mustard(SM) is a strong alkylating agent that increases the formation of free radicals. Therefore, this study aimed to evaluate the protective and therapeutic roles of hexamethylenetetramine (HMT) and N-acetyl-cysteine(NAC) in reduction of SM-induced oxidative stress in rat serum.
Methods: In the present experimental study, male Wistar rats were randomly divided into eight groups including: control group, SM group (an endotracheal injection of SM 0.5%/kg only once), HMT group (7.5mg/kg), NAC group (0.5mg/kg), HMT-SM group, NAC-SM group, SM-HMT group and SM-NAC group. HMT and NAC were received daily an hour before and after receiving SM by intraperitoneal injection for 14 days. After 14 days, the rats were anesthetized by ether, their blood was collected by cardiac puncture and the serum was obtained. Then, superoxide dismutase(SOD), catalase(CAT) and glutathione S-transferase(GST) activities, as well as glutathione(GSH) and malondialdehyde(MDA) levels were determined by biochemical methods.
Results: SM decreased serum SOD (p<0.001) and CAT (p<0.05) activities as well as GSH level (p<0.01), whereas it increased GST activity (p<0.01) and MDA level (p<0.01). HMT and NAC pre- and post-treated animals showed a difference in these biochemical parameters as compared to SM-treated rats.
Conclusion: The study findings revealed that SM induces oxidative stress in rat serum. HMT and NAC can ameliorate SM-induced oxidative stress by altering antioxidant defense system in serum. The protective effect of HMT against the toxicity of SM is higher than NAC
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