Advanced Neuroplasticity Paradigms and Technological Innovations in Cerebrovascular Accident Rehabilitation: A Contemporary Review of Evidence-Based Clinical Frameworks
Abstract: Background: Traditional rehabilitation protocols following a Cerebrovascular Accident (CVA) often fall short of the physiological dosage required to induce robust neuroplastic changes. The integration of advanced technological modalities offers a scalable solution to maximize motor and cognitive recovery. Objective: This comprehensive review synthesizes emerging paradigms in post-stroke rehabilitation, evaluating the clinical efficacy of robotic systems, immersive sensory environments, and non-invasive cortical stimulation, while outlining a structured framework for modern clinical application. Methods: A granular analysis of contemporary medical literature, high-level clinical trials, and progressive neurological guidelines published up to 2026 was performed to isolate high-impact therapeutic variables. Results: Combining target-driven robotic exoskeletons with immersive virtual environments establishes an optimal sensory-motor feedback loop that accelerates functional remodelling. When paired with timely metabolic stabilization and digital telerehabilitation platforms, these interventions sustain long-term independent recovery profiles. Conclusion: Modern CVA care requires a shift from passive assistance to technology-driven, high-dose cortical engagement. Integrating these systems effectively requires multidisciplinary nursing leaders to design, execute, and monitor standardized clinical workflows.
Keywords: Cerebrovascular Accident; Neuroplastic Remodeling; Exoskeleton Therapy; Immersive Sensory Feedback; Digital Health Infrastructure; Clinical Care Coordination
How to Cite?: Neetha Dalvi S, D N Renukadevi, "Advanced Neuroplasticity Paradigms and Technological Innovations in Cerebrovascular Accident Rehabilitation: A Contemporary Review of Evidence-Based Clinical Frameworks", Volume 15 Issue 10, October 2026, International Journal of Science and Research (IJSR), Pages: 293-295, https://www.ijsr.net/getabstract.php?paperid=SR261003133554, DOI: https://dx.doi.org/10.21275/SR261003133554