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Deep Learning-Empowered Clinical Big Data Analytics in Healthcare Digital Twins.

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    This summary is machine-generated.

    This study introduces an intelligent medical service platform using deep learning and the improved Random Forest algorithm for disease recognition. The platform achieves high accuracy in identifying sepsis, addressing limited medical resource challenges.

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    Area of Science:

    • Medical Informatics
    • Artificial Intelligence in Healthcare
    • Data Science

    Background:

    • Information technology advancements are transforming data management and analysis across industries.
    • Deep learning algorithms offer potential for enhancing disease recognition accuracy in medicine.
    • Limited medical resources necessitate innovative solutions for equitable healthcare access.

    Purpose of the Study:

    • To develop an intelligent medical service platform for resource sharing and improved disease diagnosis.
    • To leverage deep learning and advanced algorithms for accurate medical data analysis and auxiliary diagnosis.
    • To address the challenge of scarce medical resources through technological solutions.

    Main Methods:

    • Utilized Digital Twins module within Deep Learning for medical care and auxiliary diagnosis models.
    • Employed Internet of Things (IoT) technology for digital visualization and data collection (client/server).
    • Implemented an improved Random Forest algorithm (RW-RF) for demand analysis, target function design, and system development.

    Main Results:

    • The intelligent medical service platform effectively collects and analyzes clinical trial data.
    • The improved ReliefF & Wrapper Random Forest (RW-RF) algorithm achieved approximately 98% accuracy for sepsis recognition.
    • The developed algorithm demonstrated over 80% accuracy for general disease recognition.

    Conclusions:

    • The intelligent medical service platform provides robust technical support for disease recognition and medical care.
    • The study offers a practical solution and experimental reference for overcoming medical resource scarcity.
    • The findings highlight the potential of AI-driven platforms to enhance healthcare delivery and accessibility.