Category: Technology
Objective: To design a dual-portal Software-as-a-Service (SaaS) platform to facilitate asynchronous monitoring, enhance ecological momentary assessment, and visualize multidisciplinary neurorestorative protocols in movement disorder patients.
Background: Movement disorder management is evolving toward holistic, neurorestorative approaches requiring adherence to metabolic support, sleep optimization, and physical rehabilitation. However, a “data blind spot” exists between scheduled clinical visits, forcing reliance on subjective, retrospective patient recall. A centralized digital infrastructure is urgently needed to provide continuous lifestyle tracking without increasing physician cognitive burden.
Method: A web application was developed using open-source frameworks. Per COPE guidelines, the codebase and architecture were prototyped using AI models (Antigravity, Claude Opus, Gemini) under neurologist supervision. The system features a clinician dashboard for designing recovery roadmaps and a patient Progressive Web App for daily micro-assessments. Tracked parameters bypass proprietary scales, focusing on self-reported ON/OFF time, sleep, and nutrition. Architecture was evaluated via standard load-testing with non-clinical dummy variables.
Results: The prototype deployed a relational database structuring complex daily parameters. Automated load-testing with non-clinical data confirmed stability, demonstrating zero data loss and <200ms rendering latency when querying 90-day continuous logs. The backend algorithm aggregated daily inputs into a Protocol Adherence Score, dynamically updating a visual timeline on the clinician dashboard for objective compliance tracking.
Conclusion: The “Neuro-Recovery Roadmap” establishes the structural viability of utilizing cloud-based SaaS architecture to asynchronously track complex neurorestorative protocols. By decoupling clinical protocol design from continuous data entry, the platform offers a scalable digital framework to support personalized care. Future phases require clinical validation with human subjects to evaluate real-world efficacy.
Clinician Dashboard (Patient Data)
Clinician Dashboard (Roadmap)
Patient Mobile App Interface (Home)
Patient Mobile App Interface (Record Daily Log)
Patient Mobile App Interface (History)
To cite this abstract in AMA style:
N. Megayasa. Development of a Web Based Neuro Recovery Roadmap Prototype for Visualizing and Tracking Multidisciplinary Rehabilitation in Movement Disorders [abstract]. Mov Disord. 2026; 41 (suppl 1). https://www.mdsabstracts.org/abstract/development-of-a-web-based-neuro-recovery-roadmap-prototype-for-visualizing-and-tracking-multidisciplinary-rehabilitation-in-movement-disorders/. Accessed October 1, 2026.« Back to 2026 International Congress
MDS Abstracts - https://www.mdsabstracts.org/abstract/development-of-a-web-based-neuro-recovery-roadmap-prototype-for-visualizing-and-tracking-multidisciplinary-rehabilitation-in-movement-disorders/





