Aim: To explore clinical supervisors' perceptions and use of the Fundamentals of Care framework in supervising nursing students in clinical placement in hospital settings.
Design: A qualitative study using focus group interviews. Reported in accordance with Consolidated Criteria for Reporting Qualitative Research.
Methods: Twelve clinical nurse supervisors working in medical, surgical or psychiatric wards in hospitals in Denmark participated in four focus groups conducted from September to November 2020. Data were analysed using thematic analysis.
Results: Clinical supervisor's perceptions and use of the framework are described in three themes: structuring students' clinical learning, supporting tool for learning what nursing care is and developing own supervision practice.
Conclusion: Supervisors perceive the Fundamentals of Care framework positively and use it as a supporting tool to structure and facilitate students' reflection on what nursing is and requires. They perceive that having a shared framework across school and clinical setting contributes to a safe and positive learning environment. Furthermore, using the framework develops their own practice as clinical supervisors.
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http://dx.doi.org/10.1111/jan.15408 | DOI Listing |
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The MetaboliZSm GrouP, Departamento de Biotecnologia Farmacêutica, Faculdade de Farmácia, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
Metabolic alterations are related to tumorigenesis and other age-related diseases that are accelerated by "Westernized" diets. In fact, hypercaloric nutrition is associated with an increased incidence of cancers and faster aging. Conversely, lifespan-extending strategies, such as caloric restriction, impose beneficial effects on both processes.
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Department of Engineering Mechanics, Zhejiang University, Hangzhou 310027, China.
Particle manipulation is a central technique that enhances numerous scientific and medical applications by exploiting micro- and nanoscale control within fluidic environments. In this review, we systematically explore the multifaceted domain of particle manipulation under the influence of various X-force fields, integral to lab-on-a-chip technologies. We dissect the fundamental mechanisms of hydrodynamic, gravitational, optical, magnetic, electrical, and acoustic forces and detail their individual and synergistic applications.
View Article and Find Full Text PDFThe imperative to improve the well-being of graduate medical education (GME) trainees has been well documented. While existing interventions have largely centered on increasing individual trainee resilience, less focus has been on the role of national health policy, economics, and the overall U.S.
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