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A randomized, controlled, double-blind crossover study on the effects of isoeffective and isovolumetric intravenous crystalloid and gelatin on blood volume, and renal and cardiac hemodynamics (2019)
Journal Article
Bradley, C. R., Bragg, D. D., Cox, E. F., El-Sharkawy, A. M., Buchanan, C. E., Chowdhury, A. H., …Lobo, D. N. (2020). A randomized, controlled, double-blind crossover study on the effects of isoeffective and isovolumetric intravenous crystalloid and gelatin on blood volume, and renal and cardiac hemodynamics. Clinical Nutrition, 39(7), 2070-2079. https://doi.org/10.1016/j.clnu.2019.09.011

Background & aims Blood volume expanding properties of colloids are superior to crystalloids. In addition to oncotic/osmotic properties, the electrolyte composition of infusions may have important effects on visceral perfusion, with infusions contai... Read More about A randomized, controlled, double-blind crossover study on the effects of isoeffective and isovolumetric intravenous crystalloid and gelatin on blood volume, and renal and cardiac hemodynamics.

Abnormal task driven neural oscillations in multiple sclerosis: a visuomotor MEG study (2017)
Journal Article
Barratt, E. L., Tewarie, P. K., Clarke, M. A., Hall, E. L., Gowland, P. A., Morris, P. G., …Brookes, M. J. (2017). Abnormal task driven neural oscillations in multiple sclerosis: a visuomotor MEG study. Human Brain Mapping, 38(5), 2441-2453. https://doi.org/10.1002/hbm.23531

Multiple sclerosis (MS) is a debilitating disease commonly attributed to degradation of white matter myelin. Symptoms include fatigue, as well as problems associated with vision and movement. Although areas of demyelination in white matter are observ... Read More about Abnormal task driven neural oscillations in multiple sclerosis: a visuomotor MEG study.

Non-invasive assessment of portal hypertension using quantitative magnetic resonance imaging (2016)
Journal Article
Palaniyappan, N., Cox, E., Bradley, C., Scott, R., Austin, A., O’Neill, R., …Aithal, G. P. (2016). Non-invasive assessment of portal hypertension using quantitative magnetic resonance imaging. Journal of Hepatology, 65(6), 1131-1139. https://doi.org/10.1016/j.jhep.2016.07.021

Background & Aims Hepatic venous pressure gradient (HVPG) measurement is currently the only validated technique to accurately evaluate changes in portal pressure. In this study, we evaluate the use of non-contrast quantitative magnetic resonance i... Read More about Non-invasive assessment of portal hypertension using quantitative magnetic resonance imaging.