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首页> 外文期刊>Biomedical and Health Informatics, IEEE Journal of >Reversible Biosignal Steganography Approach for Authenticating Biosignals Using Extended Binary Golay Code
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Reversible Biosignal Steganography Approach for Authenticating Biosignals Using Extended Binary Golay Code

机译:使用扩展二进制Golay代码来验证生物资料的可逆生物标记术方法

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We present a reversible biosignal steganography method to authenticate the source of biosignal in this paper. Cloud is being a popular platform for storing a large volume of biosignals such as an electrocardiogram (ECG), electroencephalogram (EEG), and photoplethysmogram (PPG). However, outsourcing biosignals to the cloud may introduce authenticity issues. For instance, patient data can be altered, or fake patient data can be inserted by the dishonest cloud service provider or attacker for giving benefits to business organizations such as insurance service providers. Steganography approaches can be used to hide data source's identification data before outsourcing to the cloud for maintaining authenticity. Existing biosignal steganography approaches fail to reconstruct original biosignal after applying a reverse data hiding technique. In other words, current biosignal steganography approaches are irreversible. Reversible biosignal steganography method is required for protecting biosignal data from deterioration and efficient use by its stakeholders. In this work, we develop a reversible biosignal steganography approach using the Extended Binary Golay Code based error correction method. Our proposed method embeds secret authentication message as an error within different types of biosignals such as ECG, PPG, and EEG. Extended Binary Golay Code based error correction method is used to extract the secret message, and reconstruct original biosignal. We conduct a set of experiments for evaluating the performance of our proposed method.
机译:我们介绍了一种可逆的生物标签方法,以验证本文的生物信号源。云是一种流行的平台,用于存储大量的生物信息,例如心电图(ECG),脑电图(EEG)和光学肉谱(PPG)。但是,将生物关像尔的外包生物有关可能引入真实性问题。例如,可以改变患者数据,或者可以由不诚实的云服务提供商或攻击者插入假患者数据,以便为保险服务提供商等业务组织提供利益。隐写术方法可用于隐藏数据源的识别数据,然后在外包到云之前用于维护真实性。在应用反向数据隐藏技术之后,现有的生物证实隐写术方法未能重建原始生物功能。换句话说,目前的生物生物保存方法是不可逆转的。可逆生物标签方法是保护生物资料数据免受恶化和有效的利用的劣化。在这项工作中,我们使用基于扩展的二元古代码码校正方法开发了一种可逆的生物数据库隐写法方法。我们所提出的方法将秘密身份验证消息嵌入为不同类型的生物信息中的错误,例如ECG,PPG和EEG。基于扩展的二进制Golay码基于纠错方法用于提取秘密消息,并重建原始生物功能。我们开展一系列实验,以评估我们提出的方法的性能。

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