MicroPubl Biol
December 2024
The heart of larval serves as a model preparation in addressing cardiac function, as known genetic mutations can be mimicked to examine therapies. Pharmacological agents and function of proteins, like TRPA1, which affect ionic transport and ion concentrations can be investigated for their action on cardiac function in this model. To maintain function, the larval heart tube needs to remain viable; thus, a physiological saline is required.
View Article and Find Full Text PDFAim: Clown doctors have a unique skill set and role, particularly in paediatric settings. Yet, there is limited research on whether clown doctors themselves could play a role in sharing these skills with health professionals. Acknowledging uncertainty in what our intervention should be, we used a design-based research (DBR) approach with the aim of (i) shaping the educational design and content of communication skills-based workshops for clinicians and (ii) understanding the educational impact on participants.
View Article and Find Full Text PDFX-ray nanotomography is a powerful tool for the characterization of nanoscale materials and structures, but it is difficult to implement due to the competing requirements of X-ray flux and spot size. Due to this constraint, state-of-the-art nanotomography is predominantly performed at large synchrotron facilities. We present a laboratory-scale nanotomography instrument that achieves nanoscale spatial resolution while addressing the limitations of conventional tomography tools.
View Article and Find Full Text PDFCare must be taken to mitigate the effect of cognitive bias in times of frequent common presentations. The etiology of bicytopenias and pancytopenias must always be carefully investigated. Blast cells in low count B ALL may not be seen on a peripheral smear and diagnosis often requires confirmational bone marrow aspirate with flow cytometry and molecular typing.
View Article and Find Full Text PDFPolymer models describing the statistics of biomolecules under confinement have applications to a wide range of single-molecule experimental techniques and give insight into biologically relevant processes in vivo. In this paper, we determine the transverse position and bending correlation functions for a wormlike chain confined within slits and cylinders (with one and two confined dimensions, respectively) using a mean-field approach that enforces rigid constraints on average. We show the theoretical predictions accurately capture the statistics of a wormlike chain from Monte Carlo simulations in both confining geometries for both weak and strong confinement.
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