DESIGN NAME: Smart Rescue
PRIMARY FUNCTION: Emergency Response Platform
INSPIRATION: In emergencies, every second is vital. Research shows that immediate CPR can significantly boost survival rates. Our project, inspired by urbanization, uses technology to quicken emergency responses. We aim to reduce ambulance arrival times and improve emergency room efficiency with real-time tracking and data integration, ensuring rapid assistance citywide. Our approach not only aims to save lives but also offers a cost-effective solution for emergencies, reducing the financial strain on affected families. Through technological innovation, we strive to enhance emergency medical services, proving crucial in saving lives.
UNIQUE PROPERTIES / PROJECT DESCRIPTION: The Smart Emergency Response platform ensures swift emergency coverage citywide, capturing crucial rescue moments. Equipped vehicles and trained drivers provide an economical alternative for minor to moderate incidents, ideal for non-emergency transfers or monitoring. Additionally, it offers instant updates from emergency rooms and displays real-time bed availability, thereby speeding up response times.
OPERATION / FLOW / INTERACTION: Smart Emergency Rescue allows switching between regular ride-hailing and emergency rescue, connecting to the transportation network. In an emergency, it provides drivers and emergency rooms with real-time status, obtaining crucial first aid information through a simple and intuitive interface. This ensures that users can convey more accurate and immediate vital information even under high-pressure emergency situations, making the rescue more efficient.
PROJECT DURATION AND LOCATION: The project began with user research and various analyses in January 2023. After several months of planning and design, it culminated in the completion of the design and its presentation.
FITS BEST INTO CATEGORY: Interface, Interaction and User Experience Design
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PRODUCTION / REALIZATION TECHNOLOGY: Smart Emergency Rescue combines ride-hailing and emergency services, ensuring rapid first aid info sharing in crises through human-computer interaction. It features real-time multimedia messaging, facilitating efficient communication. Utilizing GIS, the platform swiftly locates users, guiding emergency response. This agile-developed dashboard, enhanced by CI/CD, optimizes emergency preparedness and response, providing a quick, effective solution for medical emergencies.
SPECIFICATIONS / TECHNICAL PROPERTIES: Smart Emergency Rescue is designed to enhance the efficiency of medical responses, with support for tablet and smartphone sizes to ensure that healthcare professionals can access critical information seamlessly on any device. The interface is intuitive and easy to navigate, offering functionalities such as real-time bed status, patient details, emergency alerts, and access to medical records. Technical specifications include adaptive design for various screen sizes, from small smartphones (width 360mm) to large tablets (up to a width of 1024mm), ensuring consistency and efficiency in user experience. The system aims to support rapid decision-making and coordination of emergency services by providing instant access to data and communication tools.
TAGS: emergency response, medical assistance, transportation, mobility services, first aid, emergency rescue, seamless integration, technology, efficient response, safety, rapid assistance
RESEARCH ABSTRACT: The precious golden hour for rescue is crucial in emergencies, turning the transportation network into an aid rather than an obstacle. Thus, we use this concept as the framework for brainstorming, aiming to increase the efficiency of emergency medical services by equipping regular passenger vehicles with basic first aid equipment.
CHALLENGE: We transformed a service that originally provided only mobility services to also include emergency medical functions, equipped with basic first aid systems and trained drivers. Besides offering users regular transportation services, it can also switch to assist in emergencies at any time.
ADDED DATE: 2024-02-19 02:08:30
TEAM MEMBERS (1) :
IMAGE CREDITS: Chia Chia Lin, 2023.
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