Bone marrow adipose tissue is a distinct adipose subtype comprising more than 10% of fat mass in healthy humans. However, the functions and pathophysiological correlates of this tissue are unclear, and its genetic determinants remain unknown. Here, we use deep learning to measure bone marrow adiposity in the femoral head, total hip, femoral diaphysis, and spine from MRI scans of approximately 47,000 UK Biobank participants, including over 41,000 white and over 6300 non-white participants.
View Article and Find Full Text PDFThe design of fast, endurant, and biocompatible porous frameworks with solvatochromism, aimed to addressing the multiple visual sensing of chemicals, still remains a challenge. Here, we report on a solvatochromic metal-organic framework (MOF) based on cobalt and trimesic acid. We examined its solvatochromism through the solvent exchange and revealed high selectivity to water/dimethylformamide combination.
View Article and Find Full Text PDFIntroduction: The aim of this study was to pilot test a question prompt list (QPL) about cardiovascular disease (CVD) risk reduction after hypertensive pregnancy (HDP).
Methods: In a prospective cohort study of adult women who had HDP given the QPL before and surveyed after a physician visit, we assessed perceived person-centred care, self-efficacy for self-management, perceived self-management and QPL feasibility.
Results: Twenty-three women participated: 57% of diverse ethno-cultural groups, 65% < 40 years of age and 48% immigrants.
The synthesis of bioinspired metal-organic frameworks (MOFs) performed in mild conditions with a high quality is greatly demanded. Moreover, the influence of the morphology and structure of bio-MOFs on the cell interaction and toxicity is important to determine. In this work, we developed an ultrasound (US)-assisted synthesis of HKUST-1 MOFs under mild conditions and investigated the influence of the parameters of synthesis on the morphology, structure, and biological properties of the developed MOFs.
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