Serebral Palside Giyilebilir Cihazların Klinik Etkileri
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| Format: | Recurso digital |
| Sprache: | Türkisch |
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Zenodo
2026
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| _version_ | 1866901708069666816 |
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| author | Beceni, Esra Erdoğmuş, Server |
| author_facet | Beceni, Esra Erdoğmuş, Server |
| contents | <p><span>Aim:</span><span>Cerebral Palsy (CP) is one of the most common neurodevelopmental disorders of childhood, leading to significant limitations in motor function, balance, gait, and upper extremity use. In recent years, the integration of wearable technologies into CP rehabilitation has introduced a novel approach in both clinical assessment and intervention. <span>Method:</span>The literature demonstrates that robotic exoskeletons, Functional Eletrical Stimulation (FES), Neuromuscular Electrical Stimulation (NMES), Virtual Reality (VR)-based systems, and sensor-supported </span></p> <p><span>devices such as accelerometers and gyroscopes can enhance motor learning and neuroplasticity, thereby improving gait, balance, upper extremity functions, and participation in daily life activities in individuals with CP. <span>Results:</span>However, limitations such as device cost, weight, usability, and long-term sustainability remain. Moreover, most existing studies have small sample sizes and short follow-up durations, with limited data on long-term effectiveness.<span>Conclusion: </span>In conclusion, wearable technologies represent promising tools in CP rehabilitation; nevertheless, stronger clinical evidence focusing on individualized application, user acceptance, and long-term outcomes is needed to support their effective integration into practice.</span></p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18442175 |
| institution | Zenodo |
| language | tur |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Serebral Palside Giyilebilir Cihazların Klinik Etkileri Beceni, Esra Erdoğmuş, Server <p><span>Aim:</span><span>Cerebral Palsy (CP) is one of the most common neurodevelopmental disorders of childhood, leading to significant limitations in motor function, balance, gait, and upper extremity use. In recent years, the integration of wearable technologies into CP rehabilitation has introduced a novel approach in both clinical assessment and intervention. <span>Method:</span>The literature demonstrates that robotic exoskeletons, Functional Eletrical Stimulation (FES), Neuromuscular Electrical Stimulation (NMES), Virtual Reality (VR)-based systems, and sensor-supported </span></p> <p><span>devices such as accelerometers and gyroscopes can enhance motor learning and neuroplasticity, thereby improving gait, balance, upper extremity functions, and participation in daily life activities in individuals with CP. <span>Results:</span>However, limitations such as device cost, weight, usability, and long-term sustainability remain. Moreover, most existing studies have small sample sizes and short follow-up durations, with limited data on long-term effectiveness.<span>Conclusion: </span>In conclusion, wearable technologies represent promising tools in CP rehabilitation; nevertheless, stronger clinical evidence focusing on individualized application, user acceptance, and long-term outcomes is needed to support their effective integration into practice.</span></p> |
| title | Serebral Palside Giyilebilir Cihazların Klinik Etkileri |
| url | https://doi.org/10.5281/zenodo.18442175 |