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Finger-to-Heart (F2H): Authentication for Wireless Implantable Medical Devices.

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    This study introduces a finger-to-heart (F2H) authentication scheme for implantable medical devices (IMDs). It enhances security and accessibility for doctors during emergencies using fingerprint biometrics, improving device efficiency.

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    Area of Science:

    • Biomedical Engineering
    • Cybersecurity
    • Medical Device Security

    Background:

    • Implantable medical devices (IMDs) require robust security measures.
    • Balancing security with emergency access for medical professionals is a critical challenge.
    • Existing authentication methods for IMDs often compromise accessibility or device resources.

    Purpose of the Study:

    • To propose a novel authentication scheme for IMDs that addresses the security-accessibility trade-off.
    • To enhance the security of cardiac pacemakers and defibrillators.
    • To improve the efficiency and sustainability of IMD security protocols.

    Main Methods:

    • Development of a finger-to-heart (F2H) IMD authentication scheme.
    • Utilization of an improved minutia-cylinder-code-based fingerprint authentication algorithm.
    • Reduction in feature vector length and query feature vectors for enhanced processing.

    Main Results:

    • The F2H scheme effectively balances security and accessibility for IMD access.
    • The improved fingerprint algorithm significantly reduces message transmission size and computational overhead.
    • The scheme conserves scarce IMD resources by pre-storing fingerprint templates, unlike ECG-based methods.

    Conclusions:

    • The proposed F2H authentication scheme offers a viable solution for securing IMDs.
    • The fingerprint-based approach enhances emergency access for medical personnel.
    • The F2H scheme is energy-efficient and sustainable for resource-constrained IMDs.