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This study aimed to investigate the effects of upper limb control exercises on upper limb function, respiration, balance, and activities of daily living in patients with stroke. The 28 patients who met the selection criteria were randomly assigned to two groups of 14 patients each. Subsequently, upper limb control exercises using real-time feedback were applied. The same interventional exercise was applied to both the less-affected and affected limbs of the study participants, who were classified into a less-affected side upper limb control group and an affected side upper limb control exercise group. Interventional exercises, 30 min each, were performed five times weekly for 4 weeks, and follow-up examinations were performed 2 weeks after the end of exercise. Electronic muscle strength measurements and an electronic goniometer were used to evaluate upper limb function. A spirometer was used to measure respiration. Balance ability was evaluated using a force plate pressure distribution measuring system with a sensor that detects the movement of the body center on the ground. Daily life movements were evaluated using the Korean version of the modified Barthel index. When examining the results, the upper limb function on the paralyzed side showed an increase in the electromyographic strength of shoulder joint depression and flexion angle. Improvements were also observed in respiration (forced vital capacity [L] and forced expiratory volume in 1 s [L]), balance (95% confidence ellipse area [mm] and center of pressure displacement [mm]), and daily life activities, all of which showed statistically significant differences in the time × group interaction effect ( < 0.05). Thus, it was found that the upper limb control exercise on the less-affected side had a significant effect when the exercise was performed together with treatment on the affected side in patients with stroke. It is anticipated that this study will provide basic data for evaluating both the trunk and upper limbs of the less-affected and affected sides.
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http://dx.doi.org/10.3390/medicina60060937 | DOI Listing |
J Vis Exp
August 2025
Department of Breast and Thyroid Surgery, Daping Hospital, Army Medical University; Key Laboratory of Chongqing Health Commission for Minimally Invasive and Precise Diagnosis and Treatment of Breast Cancer;
The integration of robotic platforms in breast oncology has witnessed substantial expansion, fueled by their inherent advantages in minimally invasive access and enhanced intraoperative maneuverability. Most of the robotic-assisted breast surgery has been performed using multi-arm robots. However, the implementation of single-port robotic (SPr) systems in mammary interventions continues to undergo rigorous clinical evaluation, particularly regarding long-term oncological safety and cost-effectiveness metrics.
View Article and Find Full Text PDFJ Neurosurg Anesthesiol
October 2025
Department of Anesthesia and Perioperative Medicine, Western University.
Introduction: Current commercial cerebral oximeters only monitor the frontal lobes, however, some cerebrovascular territories may experience ischemia while others remain well perfused. This pilot study used a novel, high-density, dual-wavelength, time-resolved functional cerebral oximeter (Kernel Flow) with 2000 channels to assess the regional differences of cerebral oxygenation (StO2) in response to hypotension across different vascular territories during shoulder surgery in the beach chair position.
Methods: Twenty-seven adult patients were monitored, recording blood pressure, heart rate, regional cerebral oxygen saturation, and other vital parameters.
J Hand Surg Am
September 2025
Department of Orthopaedic Surgery, Washington University School of Medicine, Saint Louis, MO.
Purpose: Phocomelia is an intercalary segmental dysplasia of the upper limb, a distinct entity from longitudinal deficiencies. Nearly 20 years ago, more severely dysplastic limbs initially thought to be phocomelia were able to be reclassified as more severe forms of longitudinal dysplasia. This study sought to evaluate current phocomelia cases to identify if these represented true phocomelia.
View Article and Find Full Text PDFPaediatr Anaesth
October 2025
Human Anatomy and Embryology Unit, Faculty of Medicine and Health Sciences, Universitat of Barcelona, Barcelona, Spain.
The costoclavicular brachial plexus block has gained relevance as a safe and effective regional anesthesia technique for upper limb orthopedic surgery in adults, but data in pediatric populations remain limited. This study aimed to evaluate the incidence of phrenic nerve palsy associated with CBPB in pediatric patients. We conducted a descriptive observational study in 30 children undergoing upper limb orthopedic surgery.
View Article and Find Full Text PDFJ Rehabil Assist Technol Eng
September 2025
Department of Rehabilitation Science and Technology, University of Pittsburgh, Pittsburgh, PA, USA.
Minimizing repetitive strain (RS) is a key recommendation from clinical practice guidelines for preservation of upper limb. Propulsion force, which is required to overcome wheel rolling resistance (RR), is a major source of RS. A drum-based RR test method has been developed but has not been directly validated against propulsion forces.
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