98%
921
2 minutes
20
Background: Despite the promise wearable technology offers through detailed insight into mobility and fall risk, timely identification of high risk, assessment of risk severity, evaluation of clinical interventions, and potential to redefine the assessment of behaviours which influence health, they are not routinely used in clinical practice.
Objective: Establish consensus on how wearable technology can be applied to support clinical care for people aged 50 and over experiencing changes to mobility and/or who are at increased risk of falling.
Methods: A Delphi study was conducted among 17 hospital-based health professionals. Over three rounds, experts were asked about fall prevention, mobility assessment, the potential role of wearable sensors, and clinical considerations for implementing wearable technology into practice. Consensus was defined as 75% agreement. Data were analysed using qualitative and quantitative methods.
Results: Experts found that wearable technology has short and long-term clinical utility, data should be shared with general practitioners to improve long-term health outcomes, and devices would need to fit all individuals with a preference for wrist or pendant-worn locations. Technological literacy was not a perceived barrier. However, cost and data accuracy were important for successful implementation.
Conclusion: This study provides a group consensus statement and guidance on the clinical implementation of wearable technology to support care for people aged 50 and over experiencing changes to mobility and/or who are at increased risk of falling. Health professionals are receptive to using wearable technologies to advance fall risk and mobility assessment and believe wearable technology has a role in clinical practice.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1519/JPT.0000000000000434 | DOI Listing |
ACS Appl Mater Interfaces
September 2025
College of Chemistry and Chemical Engineering, Instrumental Analysis Center of Qingdao University, Qingdao Application Technology Innovation Center of Photoelectric Biosensing for Clinical Diagnosis and Treatment, Shandong Sino-Japanese Center for Collaborative Research of Carbon Nanomaterials, Qing
Silk fibroin (SF)-based flexible electronic/photonic materials have gained great attention in wearable devices and soft sensors. However, it remains challenging to understand the molecular interaction mechanisms and subsequently fabricate SF-based flexible materials that exhibit fluorescence, humidity sensitivity, and conductivity properties. In this study, by incorporating lanthanide europium ion (Eu), the design and fabrication of a flexible, fluorescent, and conductive SF membrane was proposed.
View Article and Find Full Text PDFMacromol Rapid Commun
September 2025
Key Laboratory of Bio-based Material Science and Technology of Ministry of Education, Northeast Forestry University, Harbin, P. R. China.
Rapid advancement of flexible electronics has generated a demand for sustainable materials. Cellulose, a renewable biopolymer, exhibits exceptional mechanical strength, customizable properties, biodegradability, and biocompatibility. These attributes are largely due to its hierarchical nanostructures and modifiable surface chemistry.
View Article and Find Full Text PDFJ Invest Dermatol
September 2025
Department of Dermatology, Northwestern University Feinberg School of Medicine, Chicago, Illinois, USA; Sibel Health, Chicago, Illinois, USA; Querrey Simpson Institute for Bioelectronics, Northwestern University, Evanston, Illinois, USA. Electronic address:
The integration of wearable medical devices and digital health technologies (DHTs) in health care has grown significantly during the past 2 decades, particularly in dermatology, in which objective measurement of symptoms such as itch remains challenging. This review examines the evolution of DHTs in dermatology, focusing on the validation frameworks necessary for their implementation in clinical trials and research. We discuss the key stages of validation: hardware validation to ensure device reliability, analytical validation to transform raw sensor data into meaningful metrics, and clinical validation to demonstrate utility in specific patient populations.
View Article and Find Full Text PDFJ Acoust Soc Am
September 2025
Medizinische Physik and Cluster of Excellence "Hearing4all, " Carl von Ossietzky Universität Oldenburg, Oldenburg, Germany.
Processing delays can negatively affect listening experience, especially in cases where the (processed) delayed sound interferes with an un-delayed (or direct) sound component, as it is the case for (open-fit) hearing devices. In this study, psychometric functions for delay perception in individual frequency bands were measured. Also, it was assessed how noticeability adds up across frequency bands for frequency-dependent processing delays.
View Article and Find Full Text PDFIEEE Internet Things J
August 2025
Geometric Media Lab, School of Arts, Media and Engineering and School of Electrical, Computer and Energy Engineering, Arizona State University, Tempe, AZ 85281 USA.
Human gait analysis with wearable sensors has been widely used in various applications, such as daily life healthcare, rehabilitation, physical therapy, and clinical diagnostics and monitoring. In particular, ground reaction force (GRF) provides critical information about how the body interacts with the ground during locomotion. Although instrumented treadmills have been widely used as the gold standard for measuring GRF during walking, their lack of portability and high cost make them impractical for many applications.
View Article and Find Full Text PDF