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Description: In July 2024, the U.S. Department of Veterans Affairs (VA) and U.

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There have been significant advances in robotics, conversational AI, and spoken dialogue systems (SDSs) over the past few years, but we still do not find social robots in public spaces such as train stations, shopping malls, or hospital waiting rooms. In this paper, we argue that early-stage collaboration between robot designers and SDS researchers is crucial for creating social robots that can legitimately be used in real-world environments. We draw from our experiences running experiments with social robots, and the surrounding literature, to highlight recurring issues.

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Objective: This study aims to investigate the prevalence of smartphone addiction, physical activity levels, and depressive symptoms among secondary school students, and to analyze the combined impact of smartphone addiction and physical activity on depressive symptoms.

Methods: A cluster sampling method was employed in two secondary schools in the Jing'an District of Shanghai, China. Univariate analysis was used to compare the prevalence of depressive symptoms across different demographic characteristics.

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Why is it so hard to reduce harm from medicines?

Future Healthc J

December 2024

Consultant Gastroenterologist, Royal Free London NHS Foundation Trust, Improvement Clinical Director, Royal College of Physicians, Chair, Royal Colleges Medicines Safety Joint Working Group, Care Quality Improvement Directorate, 11 St Andrews Place, Regent's Park, London, NW1 4LE, UK.

Pharmacotherapy is the most common therapeutic intervention in healthcare, but more than 200 million medication errors occur every year in England alone. This may in part reflect greater awareness and better reporting; however, the incidence of patient harm from medication has remained broadly unchanged for decades, despite concerted national campaigns and global safety initiatives. Rapid technological and therapeutic advances together with the complexity of modern healthcare make reducing harm from medicines more challenging than ever.

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High-voltage lithium-metal batteries (HVLMBs) are appealing candidates for next-generation high-energy rechargeable batteries, but their practical applications are still limited by the severe capacity degradation, attributed to the poor interfacial stability and compatibility between the electrode and the electrolyte. In this work, a 2D conjugated phthalocyanine framework (CPF) containing single atoms (SAs) of cobalt (CoSAs-CPF) is developed as a novel artificial solid-electrolyte interphase (SEI) in which a large amount of charge is transferred to the CPF skeleton due to the Lewis acid activity of the Co metal sites and the strong electron-absorbing property of the cyano group (-CN), greatly enhancing the adsorption of the Li and regulating the Li distribution toward dendrite-free LMBs, which are superior to most of the reported SEI membranes. As a result, the Li||Li symmetrical cell with CoSAs-CPF-modified Li anodes (CoSAs-CPF@Li) exhibits a low polarization with an area capacity of 1.

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