Objective/goals: Cognitive decline is intricately linked to various factors such as obesity, stress, poor sleep, and circadian rhythm misalignment, which are interrelated in their impact on cognitive health. Irregular food-intake timing further compounds these issues. The practice of prolonged nightly fasting (PNF) may help synchronize food intake with circadian rhythms, potentially mitigating adverse effects of cognitive decline and associated factors.
View Article and Find Full Text PDFConventionally, the size, shape, and biomechanics of cartilages are determined by their voluminous extracellular matrix. By contrast, we found that multiple murine cartilages consist of lipid-filled cells called lipochondrocytes. Despite resembling adipocytes, lipochondrocytes were molecularly distinct and produced lipids exclusively through de novo lipogenesis.
View Article and Find Full Text PDFIntroduction: Emotional intelligence (EI) is described as the ability to recognise and understand one's own emotions and the emotions of others, and empathically manage emotional responses. While historically not emphasised in undergraduate allied health sciences training, it is increasingly considered an essential graduate trait. This scoping review synthesises existing research on EI outcomes, specifically in undergraduate allied health professions students.
View Article and Find Full Text PDFObjectives: To examine how embedding an illustrator in the process of co-producing resources to support shared decision-making (SDM) can enhance communication between patients and healthcare professionals (HCPs).
Methods: Three case studies were identified involving high-risk medications where the utility of effective visual communication resources is key to SDM due to the risk of information being misinterpreted leading to potential serious adverse effects. An iterative approach was adopted to the phases of co-production, where the Illustrator acted as a conduit between patients and specialist knowledge of the clinical team.
Time-resolved serial crystallography at X-ray Free Electron Lasers offers the opportunity to observe ultrafast photochemical reactions at the atomic level. The technique has yielded exciting molecular insights into various biological processes including light sensing and photochemical energy conversion. However, to achieve sufficient levels of activation within an optically dense crystal, high laser power densities are often used, which has led to an ongoing debate to which extent photodamage may compromise interpretation of the results.
View Article and Find Full Text PDF