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首页> 外文期刊>Journal of applied mathematics >Sharing Privacy Protected and Statistically Sound Clinical Research Data Using Outsourced Data Storage
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Sharing Privacy Protected and Statistically Sound Clinical Research Data Using Outsourced Data Storage

机译:使用外包数据存储共享受隐私保护和统计合理的临床研究数据

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It is critical to scientific progress to share clinical research data stored in outsourced generally available cloud computing services. Researchers are able to obtain valuable information that they would not otherwise be able to access; however, privacy concerns arise when sharing clinical data in these outsourced publicly available data storage services. HIPAA requires researchers to deidentify private information when disclosing clinical data for research purposes and describes two available methods for doing so. Unfortunately, both techniques degrade statistical accuracy. Therefore, the need to protect privacy presents a significant problem for data sharing between hospitals and researchers. In this paper, we propose a controlled secure aggregation protocol to secure both privacy and accuracy when researchers outsource their clinical research data for sharing. Since clinical data must remain private beyond a patient’s lifetime, we take advantage of lattice-based homomorphic encryption to guarantee long-term security against quantum computing attacks. Using lattice-based homomorphic encryption, we design an aggregation protocol that aggregates outsourced ciphertexts under distinct public keys. It enables researchers to get aggregated results from outsourced ciphertexts of distinct researchers. To the best of our knowledge, our protocol is the first aggregation protocol which can aggregate ciphertexts which are encrypted with distinct public keys.
机译:共享存储在外包的通用云计算服务中的临床研究数据对于科学进步至关重要。研究人员能够获得有价值的信息,否则他们将无法获得这些信息。但是,在这些外包的公共可用数据存储服务中共享临床数据时,会引起隐私问题。 HIPAA要求研究人员在披露用于研究目的的临床数据时,要对私人信息进行身份识别,并描述了两种可用的方法。不幸的是,这两种技术都会降低统计准确性。因此,保护​​隐私的需求为医院和研究人员之间的数据共享提出了重大问题。在本文中,我们提出了一种受控的安全聚合协议,当研究人员将其临床研究数据外包以共享时,可以保护隐私和准确性。由于临床数据必须在患者的生命周期内保持私密,因此我们利用基于晶格的同态加密来保证针对量子计算攻击的长期安全性。使用基于晶格的同态加密,我们设计了一种聚合协议,该协议可以在不同的公共密钥下聚合外包密文。它使研究人员能够从不同研究人员的外包密文中获得汇总结果。据我们所知,我们的协议是第一个聚合协议,它可以聚合使用不同公钥加密的密文。

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