79 research outputs found

    Perspectives of socioeconomically disadvantaged parents on their children's coping during COVID-19: Implications for practice

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    Disruptions caused by COVID-19 have the potential to create long-term negative impacts on children's well-being and development, especially among socioeconomically disadvantaged children. However, we know little about how socioeconomically disadvantaged families are coping with the pandemic, nor the types of support needed. This study presents qualitative analysis of responses to an open-ended question asking parents how children are coping with the restrictions associated with COVID-19, to identify areas in which these cohorts can be supported. Four main themes were identified: health concerns, schooling difficulties, social isolation and adjustment to restrictions. Health concerns included exacerbation of pre-existing health conditions, fear about the virus, difficulty getting children to understand the pandemic and increased sedentary behaviour. Schooling difficulties referred to the challenges of home schooling, which were behavioural (e.g. difficulty concentrating) and logistical (e.g. technology). Social isolation, expressed as missing friends, family and/or institutions was common. Finally, parents expressed that children experienced both positive adjustments to restrictions, such as spending more time with family, and negative adjustments such as increased screen time. Many responses from parents touched on topics across multiple themes, indicating a need for comprehensive, holistic assessment of children's and families' needs in the provision of support services. The content of the themes supports calls for resources to support children and families including increased financial and practical accessibility of social services, physical health and exercise support, mental health support and COVID-19 communication guides

    Food insecurity and socioeconomic disadvantage in Australia

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    Research on food insecurity in Australia has typically relied on a single-item measure and finds that approximately 5% of the population experiences food insecurity. This research also finds that demographic characteristics such as household composition and marital status affect levels of food insecurity, independent of income level. The present study examines the prevalence and correlates of food insecurity in a cohort (n = 400) of people experiencing entrenched disadvantage in Perth, Western Australia. Using the US Department of Agriculture Household Food Security Survey Module, we find that food insecurity at the household, adult, and child level is at sharply elevated levels, with 82.8% of the sample reporting household food insecurity, 80.8% and 58.3% experiencing food insecurity among adults and children, respectively. Demographic characteristics do not significantly affect levels of food insecurity, and food insecurity is associated with negative physical and mental health outcomes. Food insecurity is positively correlated with access to food emergency relief services, indicating that these services are being used by those most in need, but do not address the root causes of food insecurity. Policy and practice should focus on increasing stable access to adequate quantities and quality of food and addressing the structural causes of food insecurity

    The evolution of multiple active site configurations in a designed enzyme

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    Developments in computational chemistry, bioinformatics, and laboratory evolution have facilitated the de novo design and catalytic optimization of enzymes. Besides creating useful catalysts, the generation and iterative improvement of designed enzymes can provide valuable insight into the interplay between the many phenomena that have been suggested to contribute to catalysis. In this work, we follow changes in conformational sampling, electrostatic preorganization, and quantum tunneling along the evolutionary trajectory of a designed Kemp eliminase. We observe that in the Kemp Eliminase KE07, instability of the designed active site leads to the emergence of two additional active site configurations. Evolutionary conformational selection then gradually stabilizes the most efficient configuration, leading to an improved enzyme. This work exemplifies the link between conformational plasticity and evolvability and demonstrates that residues remote from the active sites of enzymes play crucial roles in controlling and shaping the active site for efficient catalysis

    Heavy and light roles: myosin in the morphogenesis of the heart

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    Myosin is an essential component of cardiac muscle, from the onset of cardiogenesis through to the adult heart. Although traditionally known for its role in energy transduction and force development, recent studies suggest that both myosin heavy-chain and myosin lightchain proteins are required for a correctly formed heart. Myosins are structural proteins that are not only expressed from early stages of heart development, but when mutated in humans they may give rise to congenital heart defects. This review will discuss the roles of myosin, specifically with regards to the developing heart. The expression of each myosin protein will be described, and the effects that altering expression has on the heart in embryogenesis in different animal models will be discussed. The human molecular genetics of the myosins will also be reviewed

    In silico analysis of phytohormone metabolism and communication pathways in citrus transcriptome

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    The Human Powered Submarine Team of Virginia Tech Propulsion System Design Final Report

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    The Human Powered Submarine Team has been in existence at Virginia Tech since its conception in 1993. Since then, it has served as a way for engineering students from many different disciplines to implement design conception and realization. The first submarine built was Phantom 1, a two-man submarine made of fiberglass. After construction was complete, Phantom 1 was ready for racing, but, unfortunately, suffered fatal problems come race time. The submarine team slowed down a bit after experiencing racing problems, but was revived in 1995 when design efforts for a new two-man submarine, the Phantom 2 commence. The propulsion system consisted of a chain and gear drive system using an ultra-light helicopter tail rotor for a propeller. Although the team learned valuable lessons as a result of Phantom 1's problems, Phantom 2 still experiences problems at races. After various parts of Phantom 2 are redesigned, it is once again ready for racing and proves that the redesign was well worth the time and effort. In 1997, Phantom 2 not only finishes its first race, held in San Diego, California, but comes in third. This success sparks yet another revival of the submarine team and design for the team's current project, the Phantom 3, a one-man submarine, is started. In 1998, the plug for Phantom 3 is built and the hull is constructed. With so many past problems from which to learn, Phantom 3 promises to be the fastest and best-designed submarine the team has developed thus far. The current speed world-record is 7 knots
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