Smartphones provide a widely available platform for multidimensional mobility sensing, but the mapped evidence largely concerns feasibility, technical validation, or associations with clinical status and outcomes, which will require standardized acquisition and reporting, cross-device and cross-platform validation, context-aware analysis, privacy-preserving data governance, and prospective evidence that implementation improves clinical decisions or patient-relevant outcomes.
Abstract
Mobility is an informative marker of neurological function, physiological reserve, and functional independence. Laboratory gait analysis requires costly specialized equipment, while research wearables can impose sustained-use burdens. Smartphone inertial measurement units (IMUs) offer a widely available platform for longitudinal assessment within a patient’s natural environment. Following PRISMA-ScR guidelines, PubMed, Embase, and Scopus were searched for peer-reviewed studies using internal smartphone sensors to map reported clinical applications, methodological implementation, validation approaches, and translational barriers. Eighty-four studies met the inclusion criteria. Neurology was the most frequently represented clinical domain (36.9%), with additional applications in geriatrics (14.3%) and orthopedics (13.1%). 10.7% (n=9) were classified as validation-focused; the remainder had diagnostic (36.9%), prognostic (38.1%), or longitudinal monitoring (14.3%) aims. Most assessments remained controlled (54.8%), supervised (67.9%), and dependent on active testing protocol (73.8%), whereas only 23.8% captured passive, free-living mobility. Implementation was heterogeneous: 71.4% of protocols required fixed device placements, 82.1% used custom software, and 7.1% integrated with native platforms. The extracted measures included activity volume, gait-quality metrics, and machine-learning features derived from raw inertial data. Smartphones provide a widely available platform for multidimensional mobility sensing, but the mapped evidence largely concerns feasibility, technical validation, or associations with clinical status and outcomes. Routine clinical utility has not been established. Translation will require standardized acquisition and reporting, cross-device and cross-platform validation, context-aware analysis, privacy-preserving data governance, and prospective evidence that implementation improves clinical decisions or patient-relevant outcomes. Passive monitoring may complement standardized assessment by providing longitudinal measures of real-world performance.
BackgroundAccurate sagittal spinal assessment is crucial in physiotherapy, but current methods strike a balance between precision and practicality. Radiographic measures are valid but impractical for repeated use, whereas observational tools, such as the Selective Functional Movement Assessment (SFMA), are subjective....
Lea Overmann, R. Schleip, L. Barr et al.· Journal of Back and Musculos...· 0 citations
PURPOSE
This study aimed to clarify research and development trends in assistive technologies (ATs) designed to maintain and improve physical function during the community-living phase, using a scoping review approach.
MATERIALS AND METHODS
A comprehensive search of Web of Science, PubMed, and IEEE Xplore was conduct...
Asuka Mano, Megumi Kawasaki, Takazumi Ono et al.· Disability and Rehabilitatio...· 0 citations
Preserving mobility is fundamental to healthy ageing, as it determines functional independence; however, standard clinical gait speed tests measure capacity in a controlled setting and may not reflect adaptive performance in daily life. To quantify this "Ecological Gap", we analysed gait in 3,424 older adults using wea...
K. Tan, Y. K. Kim, K. Goh et al.· medRxiv· 0 citations
PURPOSE
In older adults, mobility limitations cause functional decline, loss of independence, and reduced quality of life. Many mobility devices, walking aids, wheelchairs, wearables, and robotic technologies are designed to improve access, aid mobility, and enhance quality of life. This systematic review aims to syste...
Henali Parikh, Nidhi Ved· Disability and Rehabilitatio...· 0 citations
Objective: To systematically analyze the spatiotemporal, kinematic, and electromyographic gait movement disorders in patients with partial SCI for targeted rehabilitation strategies. Background: Spinal cord injury (SCI) is a life-changing event that pro-foundly affects an individual ’ s motor, sensory, and autonomic fu...
M. Gupta, B. Garg, S. Lee et al.· Movement Disorders· 0 citations
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