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[Purpose] To evaluate the association between foot sole two-point discrimination and dynamic standing balance. [Participants and Methods] This cross-sectional, observational study included 50 healthy adults. Participants were made to stand on a firm or foam surface with eyes open or closed, and the center of pressure length was measured for static standing balance and limits of stability for dynamic standing balance. Two-point discrimination and muscle strength were assessed using the two-point discrimination test and toe grip strength, respectively. We then analyzed the association with sensory-motor assessment and standing balance. [Results] Significant differences were observed for almost all factors between static and dynamic standing balance. Two-point discrimination was associated with static standing balance, and muscle strength was associated with dynamic standing balance on a firm floor. There was no significant association between two-point discrimination and dynamic standing balance. [Conclusion] These results indicate that foot sole two-point discrimination is not directly associated with dynamic standing balance in healthy adults. Therefore, postural stability must be evaluated considering the specific floor surfaces and sensory conditions in clinical situations, and assessment of dynamic standing balance based only on two-point discrimination should be avoided.
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http://dx.doi.org/10.1589/jpts.37.134 | DOI Listing |
Prog Rehabil Med
September 2025
Department of Orthopaedics, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, Kyoto, Japan.
Objectives: : This study aimed to assess the qualitative effects of locomotion training (LT) on articular cartilage using magnetic resonance imaging T1ρ mapping.
Methods: : Fifteen patients with early knee osteoarthritis participated in the study. They performed a series of exercises, including one-leg stands, squats, heel raises, and front lunges, on a daily basis for 12 weeks.
J Exerc Rehabil
August 2025
Faculty of Care and Rehabilitation, Seijoh University, Toukai, Japan.
Load asymmetry in the lower limbs of patients with hip fracture is associated with decreased gait ability, impaired balance, and increased risk of fall. The modified sit-to-stand (STS), which combines positioning the foot behind with chair seat elevation, facilitates loading on the affected limb. This study aimed to investigate lower limb load asymmetry during STS and walking in patients with hip fracture after modified STS training.
View Article and Find Full Text PDFJ Egypt Natl Canc Inst
September 2025
National Cancer Institute of Cairo University, Giza, Egypt.
Objectives: To balance the extended functional urinary voiding and morbidity outcomes amid Ileal W and Y-shaped contrasted to spherical ileocoecal (IC) orthotopic bladders subsequent prostate-sparing radical cystectomy (PRC) versus standard radical cystoprostatectomy (RC).
Material And Methods: Two hundred eight male bladder cancer patients were grouped into 98 RC followed by 43-W, 31-Y, and 23-IC in comparison to 110 PRC followed by 35-W, 37-Y, and 38-IC. The functional voiding outcomes were determined by detailed patients' interview and urodynamic studies (UDS).
Nurs Open
September 2025
Department of Pharmacy Practice and Administration, Rutgers University, Ernest Mario School of Pharmacy, New Brunswick, New Jersey, USA.
Aim: To identify individuals at risk of falls and the factors contributing to their risk, we screened community-dwelling older adults using the Centers for Disease Control and Prevention's Stopping Elderly Accidents, Deaths, and Injuries (STEADI) Assessments.
Design: A descriptive correlational study design.
Methods: Fall risk screenings with community-dwelling older adults aged 65 or older were conducted during a virtual interprofessional education event (IPE) for fall risk screening.
J Appl Physiol (1985)
September 2025
Department of Neuroscience, Erasmus MC, University Medical Center Rotterdam, Rotterdam, The Netherlands.
This study aimed to characterize motor noise in human standing balance and uncover mechanisms that enable the nervous system to robustly sense and control upright posture despite this variability. We conducted three experiments using a robotic balance simulator. First, we quantified the natural variability of ankle torques, revealing that torque variability was stable within preferred postures and increased only at more extreme orientations.
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