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CONTEXT: Asthma control is suboptimal in the Middle East and North Africa (MENA). AIMS: The aim of this study is to assess the level of asthma control in Saudi patients as per the Global Initiative for Asthma 2012 classification and explore its potential predictive factors. SETTINGS AND DESIGN: Epidemiological Study on the Management of Asthma in Asthmatic Middle East Adult Population (ESMAA) is a multicentric, descriptive, epidemiological study assessing asthma management in the MENA region. In this article, we report the results of patients from Saudi Arabia included in the ESMAA study. METHODS: Adult patients diagnosed with asthma at least 1 year before study entry were considered for inclusion. Asthma control level and its predictive factors were explored. Treatment adherence and quality of life (QoL) were assessed by MMAS-4© and Short Form 8 Health Survey QoL questionnaires, respectively. STATISTICAL ANALYSIS USED: Descriptive statistics were done considering two-sided 95% confidence intervals. Logistic regression was used to explore the potential predictive factors of asthma control. All statistical tests were two-sided, and P < 0.05 was considered statistically significant. RESULTS: Data of 1009 patients from Saudi Arabia were analyzed. Less than one-third of patients (30.1%) were found to have controlled asthma with significantly higher QoL. High level of asthma control was reported among male patients and those with high educational level, while age, body mass index, and adherence to treatment were found to have no effect on asthma control. CONCLUSIONS: Asthma control remains suboptimal among Saudi population. This needs huge efforts to achieve acceptable levels of control and better QoL for asthma patients. Further studies are still needed in Saudi Arabia and the Middle East region.
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Some thoughts on the development of theoretical fluid dynamics in this century and some reflections on the developments of the past century were provided as an introduction to a broad-ranging conference. A written synopsis of these remarks is provided here.
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A rationale for the empirically observed Strouhal-Reynolds number relation for vortex shedding in the wake of a cylinder is provided. This rationale derives from a mechanism of vortex formation observed in numerical simulations of two-dimensional vortex shedding coupled with an order of magnitude estimate of the terms in the vorticity transport equation based on this mechanism.
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Chaotic advection can play an important role in efficient microfluidic mixers. We discuss a design paradigm that exploits chaotic advection and illustrate by two recent examples, namely enhancing gene expression profiling and constructing an in-line microfluidic mixing channel, how application of this paradigm has led to successful micromixers. We suggest that 'designing for chaos', that is, basing practical mixer design on chaotic advection analysis, is a promising approach to adopt in this developing field which otherwise has little to guide it and is constrained by issues of scale and manufacturability.