Background: Drug discovery efforts in neurological diseases, such as Alzheimer's disease (AD), have had particularly poor outcomes due to the lack of models that capture the cerebral vasculature. There is an unmet need to develop models that capture the physiological challenge of overcoming the blood-brain barrier (BBB) and impacts of blood flow-induced shear stress. In this work, we use a microfluidic platform to model the cerebral vasculature in familial AD (fAD) using patient-derived brain endothelial-like cells (BECs) and neurons.
View Article and Find Full Text PDFBackground: Fresh whole blood (FWB) is essential for hemorrhagic shock resuscitation, but little literature evaluates medics ability to obtain intravenous (IV) access. Options for IV access include a 16-gauge hypodermic needle attached to the FWB collection bag (straight stick technique [SST]) and an 18-gauge angiocatheter with a saline lock (saline lock technique [SLT]), which may improve access given its confirmatory flash chamber and medic familiarity.
Methods: In a prospective, randomized, crossover study, a convenience sample of U.
Curr Oncol
October 2024
Human epidermal growth factor receptor 2-positive (HER2+) breast cancer is an aggressive subtype of breast cancer associated with a poor prognosis when sub-optimally treated. Recent advances include new and effective targeted therapies that have significantly improved outcomes for patients. Despite these advances, there are significant gaps across Canada, underscoring the need for evidence-based consensus guidance to inform treatment decisions.
View Article and Find Full Text PDFRelease of Aedes aegypti mosquitoes infected with Wolbachia pipientis (wMel strain) is a biocontrol approach against Ae. aegypti-transmitted arboviruses. The Applying Wolbachia to Eliminate Dengue (AWED) cluster-randomised trial was conducted in Yogyakarta, Indonesia in 2018-2020 and provided pivotal evidence for the efficacy of wMel-Ae.
View Article and Find Full Text PDFSatellite and aerial platforms are critical in the deployment of global quantum communications networks. Currently, there remain significant challenges including operation during daytime and robustness to visibility limiting conditions. In this work we investigate, through simulation, the impact of visibility limiting conditions on low-Earth orbit CubeSat dimensioned satellites, small satellites and high-altitude platform implementations.
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