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Chaos-based robust method of zero-watermarking for medical signals

机译:基于混沌的医学信号零水印鲁棒方法

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The growing use of wireless health data transmission via Internet of Things is significantly beneficial to the healthcare industry for optimal usage of health-related facilities. However, at the same time, the use raises concern of privacy protection. Health-related data are private and should be suitably protected. Several pathologies, such as vocal fold disorders, indicate high risks of prevalence in individuals with voice-related occupations, such as teachers, singers, and lawyers. Approximately, one-third of the world population suffers from the voice-related problems during the life span and unauthorized access to their data can create unavoidable circumstances in their personal and professional lives. In this study, a zero-watermarking method is proposed and implemented to protect the identity of patients who suffer from vocal fold disorders. In the proposed method, an image for a patient’s identity is generated and inserted into secret keys instead of a host medical signal. Consequently, imperceptibility is naturally achieved. The locations for the insertion of the watermark are determined by a computation of local binary patterns from the time–frequency spectrum. The spectrum is calculated for low frequencies such that it may not be affected by noise attacks. The experimental results suggest that the proposed method has good performance and robustness against noise, and it is reliable in the recovery of an individual’s identity.
机译:通过物联网的无线健康数据传输的日益增长的使用,对于医疗行业实现与健康相关的设施的最佳利用,将极大地受益。然而,与此同时,这种使用引起了对隐私保护的关注。与健康相关的数据是私人数据,应受到适当保护。几种疾病(例如声带失调)表明,与语音相关的职业(例如老师,歌手和律师)的患病风险很高。大约三分之一的世界人口在一生中都遭受与语音有关的问题,未经授权访问其数据可能会在其个人和职业生活中造成不可避免的情况。在这项研究中,提出并实施了一种零水印方法来保护患有声带障碍的患者的身份。在提出的方法中,将生成用于患者身份的图像,并将其插入秘密密钥中,而不是插入主机医疗信号中。因此,自然地实现了不可感知性。水印插入的位置由时频谱计算局部二进制模式确定。频谱是针对低频计算的,因此它可能不受噪声攻击的影响。实验结果表明,该方法具有良好的性能和抗噪声能力,并且在恢复个人身份方面是可靠的。

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