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Development of Advanced Mobile Physiological Monitoring and Biofeedback Application
  1. case
  2. Development of Advanced Mobile Physiological Monitoring and Biofeedback Application

Development of Advanced Mobile Physiological Monitoring and Biofeedback Application

gloriumtech.com
Medical

Identifying Challenges in Physiological Monitoring and Biofeedback Mobile Solutions

The client requires an upgraded mobile application to facilitate real-time physiological data collection, analysis, and feedback for users engaged in selfregulation and therapeutic exercises. The current system lacks seamless integration with specialized sensors, user-friendly reporting tools, and engaging interfaces to promote effective self-management and therapy outcomes.

About the Client

A healthcare solution provider specializing in biofeedback, neurofeedback, and physiological monitoring devices for therapeutic and clinical use.

Goals for Enhancing Mobile Physiological Monitoring Apps

  • Integrate support for specialized sensors including biofeedback, neurofeedback, heart rate variability, and electromyography into a mobile platform.
  • Develop user-friendly, accessible reports for diagnostic and progress tracking purposes.
  • Create engaging selfregulation interfaces such as quick evaluation protocols and interactive feedback screens to motivate users during training.
  • Ensure seamless communication between mobile apps and hardware devices via Bluetooth Low Energy (BLE) protocol.
  • Enhance overall user experience to support improved therapeutic outcomes and self-management.

Core Functional Requirements for Physiological Monitoring and Biofeedback Mobile System

  • Support for multiple sensor integrations including biofeedback, neurofeedback, HRV, and electromyography devices via BLE.
  • Quick evaluation protocols for rapid assessment of physiological states.
  • Interactive selfregulation interfaces such as visual and auditory feedback screens.
  • Progress tracking features including daily diaries, results summaries, and customizable calendars (monthly and weekly).
  • Engagement mechanisms like courses, training games, and motivational incentives.
  • Generation of detailed, user-friendly performance reports for diagnostics and progress monitoring.

Preferred Technologies and Architectural Approaches

Kotlin for Android development
iOS Swift for iOS development
Android Room for local data storage
BLE protocol for device communication
Cross-platform development tools where appropriate

Essential External System Integrations

  • Physiological sensor hardware via BLE
  • Data analytics and reporting modules
  • User authentication and secure data storage systems

Key Non-Functional System Requirements

  • High accuracy and sensitivity in physiological data monitoring
  • Real-time data processing with minimal latency
  • Secure handling of sensitive health information in compliance with healthcare data standards
  • Scalable architecture supporting increasing user base
  • Reliable performance ensuring device connectivity stability

Projected Business Benefits and Outcomes

The new mobile physiological monitoring and biofeedback application is expected to significantly improve user engagement, streamline data collection and analysis, and enhance therapeutic outcomes. It aims to support healthcare professionals with accurate diagnostics and promote selfregulation practices, ultimately leading to better health and wellness results for users.

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