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This partnership with SE-Recycling is developing sustainable bioleaching-based processes to recycle metals from Lithium-based batteries. This sustainable technology delivers a solution that retains precious metals in UK industry, with wider economic benefits including skills development and job creation.
In 2015 the UK Government gave Sport England a new remit to support children aged 5-14 years. SE commissioned Duncan, Eyre and colleagues to undertake a review (completed in March 2017) to inform the body’s response to this.
The aim of this study was to investigate whether sex differences exist with regard to 5 km cycling time trial performance and affective responses following the ingestion of 300 ml caffeinated coffee, a placebo (coffee flavoured solution) and a control (no fluid).
This project examined if a badminton based intervention is effective in enhancing fundamental movement skills, physical activity, motivation to undertake physical activity, fitness and health in children aged 7-9 years.
The aim of this project is to commercialise our unique, newly developed, micronutrient delivery platform (MDP) for iron absorption, for safe, cost-effective and efficient iron delivery.
This work project aims to place value on the importance of physical activity in policy solutions in the medium - long term, as well as develop and validate short-term interventions in delivering health and economic outcomes to individuals and the Midlands economy.
Contractome-AI’s combination of novel assay and computational methods improves early detection of heart contractility issues, helping avoid expensive downstream problems.
The aim of the project is to develop a framework and valid tools that support the delivery of physical activity pathways across England. Physical activity pathways support people with/at risk of health conditions to become more active.
The goal of the project is to identify and subsequently characterise the dsRNA dimension of the animal gut microflora (both the differential presence of antisense bound to mRNA and phage dsRNAs containing novel genetic information in response to AB pressure). Identification of novel functional dsRNAs (asRNA bound to its target and phage dsRNAs involved in AR) will mark a paradigm shift in our understanding of the development of AR and future approaches to treating infections.
This project is a pilot of a teacher training intervention to deliver student-centred motor learning pedagogical approaches and improve primary school children’s motor competence and motivation in physical education
This study aims to characterise the molecular mechanisms and functions of a novel APT, ABHD16A.
The aim of the project is to assess heart rate variability using novel disposable ECG leads in healthy subjects, and to assess the agreement between heart rate variability measures obtained using disposable and reusable electrocardiography leads.