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Unlabelled: Purpose State: An innovative mobile health system called iMHere (interactive Mobile Health and Rehabilitation) has been developed at the University of Pittsburgh to support self-care and adherence to self-care regimens for patients with chronic conditions. The goal of this study is to explore and to identify the accessibility needs and preferences of individuals with dexterity impairments when they use the iMHere system.
Method: Participants were asked to perform tasks after a one-week field trial. The time for a participant to complete each task, the number of possible errors a participant made and the number of errors a participant was able to self-correct were recorded and analyzed. The Telehealth Usability Questionnaire was collected to rate participants' experiences.
Results: Nine participants with various levels of dexterity abilities were included in the study. A statistically significant negative correlation was identified between participants' dexterity levels and their error ratios by using a Pearson product-moment correlation (r = -0.434, n = 36, p = 0.004). Approximately 51% of errors detected was self-corrected without any help, but other errors called for resolution from a researcher.
Conclusions: Due to the diversity of participants' dexterity impairments, their needs and preferences differ one from another. Personalized design may be the key to approaching these challenges in improving accessibility. Implications for Rehabilitation An innovative mobile health system called iMHere has been developed to support self-care and adherence to self-care regimens as part of rehabilitation for patients with chronic conditions. Before populations with these limitations can harness the potential of mHealth, accessibility of mHealth has to be addressed to ensure its quality and value. Dexterity limitations are commonly associated with chronic disease, accidents or aging. The study presented here identified the potential issues and barriers to accessibility related to user interface components for persons with dexterity impairments. The findings should be of interest for those working with mobile health, accessibility, smartphone apps, wellness and self-care.
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http://dx.doi.org/10.3109/17483107.2015.1063171 | DOI Listing |
J Intensive Care
September 2025
German Center for Vertigo and Balance Disorders, Ludwig-Maximilians-Universitat (LMU), University Hospital Grosshadern, Munich, Germany.
Background: Survivors of critical illness frequently face physical, cognitive and psychological impairments after intensive care. Sensorimotor impairments potentially have a negative impact on participation. However, comprehensive understanding of sensorimotor recovery and participation in survivors of critical illness is limited.
View Article and Find Full Text PDFJBJS Essent Surg Tech
September 2025
Division of Hand and Reconstructive Microsurgery, Department of Orthopedics, Olympia Hospital & Research Centre, Trichy, Tamilnadu, India.
Background: Extensor indicis proprius (EIP) transfer augmented with proximal extensor pollicis longus (EPL) stump lengthening restores thumb extension and optimizes function in cases of chronic EPL tendon ruptures, which impair hand dexterity and fine motor skills. Traditional EIP-to-EPL transfers often disrupt the natural oblique course of the EPL around the Lister tubercle, leading to functional deficits. This dual-tendon transfer preserves anatomical alignment and improves thumb biomechanics, enhancing extension strength and the adduction moment arm at the carpometacarpal (CMC) joint.
View Article and Find Full Text PDFBiol Cybern
September 2025
Department of Electrical Engineering, Bahria University, H-11, 44000, Islamabad, Pakistan.
The dexterity of the human hand is largely due to its multiple degrees of freedom. However, coordinating the movements of the ring and little fingers independently can be challenging because of the biomechanical and neurological interdependencies between them. This research presents a cascade control system based on fuzzy logic to manage the dynamic movements of these fingers within a simulated biomechanical model of a human hand.
View Article and Find Full Text PDFPLoS One
September 2025
Scientific Institute, IRCCS E. Medea, Bosisio Parini (LC), Italy.
Background: Children with cerebral palsy (CP) commonly face gross motor function impairments and manual dexterity deficits, significantly affecting their activity level and independence and, ultimately, quality of life. Rehabilitation often targets improving manual dexterity and activity levels, but standard therapies have limited efficacy. Hence, exploring novel methods to enhance upper limb functionality is crucial.
View Article and Find Full Text PDFN Am Spine Soc J
September 2025
Department of Neurosurgery, College of Medicine, University of Kentucky, 780 Rose St William R. Williard, Lexington, Kentucky, 40536, United States.
Background Context: Degenerative cervical myelopathy (DCM) is characterized by spinal cord compression, which can present with limb weakness and numbness, loss of fine motor skills, gait disturbance, and bladder dysfunction. The modified Japanese Orthopedic Association (mJOA) and Graded Redefined Assessment of Strength, Sensibility, and Prehension Version Myelopathy (GRASSP-M) scores evaluate distinct aspects to assess the severity of upper and lower extremity dysfunction. Our study aims to develop an integrative, multidimensional Dexterity, Cutaneous, and Muscle (DCM-72) scoring system to provide a more comprehensive and objective evaluation of upper extremity functional impairment.
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