增强医学图像传输安全性的软计算驱动框架

IF 1.2 4区 综合性期刊 Q3 MULTIDISCIPLINARY SCIENCES
Satish Kumar, Masood Ahmad, Satish Kumar Maurya, Raghvendra Pratap, Pawan Kumar Chaurasia, Raees Ahmad Khan
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引用次数: 0

摘要

确保医学图像传输(SoMIT)的安全性在医疗保健环境中至关重要,因为它可以保护敏感的患者和医疗保健数据,使医生能够提供准确有效的治疗和最佳护理。本研究的重点是利用多标准群决策(MCGDM)技术中的软计算驱动框架(混合模糊- ahp)方法增强医院通信网络上的SoMIT。混合模糊- ahp方法考虑了五个关键的医学图像安全(MIS)参数:完整性[MS1]、身份验证[MS2]、机密性[MS3]、访问控制[MS4]和可用性[MS5]。此外,这种软计算技术为每个MIS参数分配加权优先级,表明完整性的影响最大,其次是身份验证、机密性、访问控制和可用性。根据三角模糊数(TFN)尺度,MIS优化结果为0.8075表示具有鲁棒安全性。使用GNU Octave和MATLAB工具验证了这些MIS安全性结果。此外,将所提出的混合模糊层次分析法与各种MCGDM技术进行了比较,表明所提出的方法优于其他MCGDM技术。该研究对安全高效的医学图像传输系统的开发具有重要意义。本研究的发现对医疗保健提供者具有重要意义,可以增强MIT的安全性和效率,同时提高患者治疗的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Soft Computing-Driven Framework for Enhanced Security in Medical Image Transmission

Soft Computing-Driven Framework for Enhanced Security in Medical Image Transmission

Ensuring the security of medical image transmission (SoMIT) is vital in healthcare settings, as it protects sensitive patient and healthcare data, enabling doctors to provide accurate and efficient treatment and optimal care. This research focuses on enhancing SoMIT over hospital communication networks using a soft computing-driven framework (Hybrid Fuzzy-AHP) method within the Multiple-Criteria Group Decision Making (MCGDM) technique. The Hybrid Fuzzy-AHP method considers five critical medical image security (MIS) parameters: integrity [MS1], authentication [MS2], confidentiality [MS3], access control [MS4], and availability [MS5]. Furthermore, this soft computing technique assigns weighted prioritization to each MIS parameter, indicating that integrity holds the highest impact, followed by authentication, confidentiality, access control, and availability. The MIS optimization outcome of 0.8075 signifies robust security according to the triangular fuzzy number (TFN) scale. These MIS security outcomes were validated using GNU Octave and MATLAB tools. Additionally, a comparison between the proposed Hybrid Fuzzy-AHP method and various MCGDM techniques shows that the proposed method outperforms other MCGDM techniques. This research significantly contributes to the development of secure and efficient medical image transmission (MIT) systems. The findings of this research have important implications for healthcare providers, enhancing the security and efficiency of MIT while improving the accuracy of patient treatments.

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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
37
审稿时长
>12 weeks
期刊介绍: To promote research in all the branches of Science & Technology; and disseminate the knowledge and advancements in Science & Technology
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