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Innovative teaching and learning strategies in pediatric clinical education are needed to ensure that learning outcomes are achieved efficiently and to improve students' satisfaction with the learning process. We developed a mobile application to enhance the clinical learning of nursing students during pediatric clinical practice and explored the participants' perceptions of the learning method. A mixed-method design and an online survey were used to assess participants' perceived achievement of learning objectives and satisfaction with the clinical practicum. Focus groups explored the participants' experience of using the application. The overall achievement of learning outcomes was 4.1 out of 5, and participants reported high satisfaction with the clinical practicum using the mobile application. Qualitative analysis of the transcripts revealed four major themes: (1) facilitation of collaborative learning through real-time interactions and communication; (2) engagement in active learning through an application; (3) a useful tool for enhancing critical thinking; and (4) the "curate's egg" nature of the application. The mobile application can be incorporated into the clinical education of nursing students to promote self-regulated learning and collaboration with faculty. Clear guidance on how to use the application in a clinical environment should be provided to students and preceptors to achieve better learning outcomes.
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http://dx.doi.org/10.1097/CIN.0000000000000918 | DOI Listing |
JMIR Hum Factors
September 2025
Seidenberg School of Computer Science and Information Systems, Pace University, New York City, NY, United States.
Background: As information and communication technologies and artificial intelligence (AI) become deeply integrated into daily life, the focus on users' digital well-being has grown across academic and industrial fields. However, fragmented perspectives and approaches to digital well-being in AI-powered systems hinder a holistic understanding, leaving researchers and practitioners struggling to design truly human-centered AI systems.
Objective: This paper aims to address the fragmentation by synthesizing diverse perspectives and approaches to digital well-being through a systematic literature review.
mBio
September 2025
APC Microbiome Ireland, Biosciences Institute, Biosciences Research Institute, University College, Cork, Ireland.
Bacteriocins are antimicrobial peptides/proteins that can have narrow or broad inhibitory spectra and remarkable potency against clinically relevant pathogens. One such bacteriocin that is extensively used in the food industry and with potential for biotherapeutic application is the post-translationally modified peptide, nisin. Recent studies have shown the impact of nisin on the gastrointestinal microbiome, but relatively little is known of how abundant nisin production is in nature, the breadth of existing variants, and their antimicrobial potency.
View Article and Find Full Text PDFJ Eval Clin Pract
September 2025
Pediatric Allergy and Immunology Department, Akdeniz University Hospital, Akdeniz University, Antalya, Türkiye.
Aims And Objectives: To evaluate the efficacy of YoungAsthma, a nurse-led, web-based mHealth intervention on asthma control and self-efficacy among adolescents with asthma utilizing decision tree analysis.
Background: Asthma is a prevalent chronic condition in pediatric populations, necessitating sustained management for optimal disease control.
Design: A randomized controlled clinical trial.
Analyst
September 2025
Tyndall National Institute, University College Cork, Cork, Ireland.
Correction for 'Mobile multi-configuration clinical translational Raman system for oral cancer application' by Siddra Maryam , , 2023, , 1514-1523, https://doi.org/10.1039/D2AN01921C.
View Article and Find Full Text PDFACS Appl Mater Interfaces
September 2025
University of Science and Technology of China, Hefei, Anhui 230027, People's Republic of China.
The development of ultrablack coatings with exceptional absorption (>98%) has historically faced significant scientific and engineering challenges, primarily due to limitations in material selection, structural design, and practical durability. Considering the difficulties in practical applications of ultrablack materials with micro/nano structures and the limitations of planar ultrablack coatings in optical performance, we introduce an innovative integration of conventional planar ultrablack coatings with a specifically engineered trilayer antireflection architecture. This hybrid system incorporates a refractive index distribution (1.
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