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An End-to-End Security Architecture to Collect, Process and Share Wearable Medical Device Data

机译:用于收集,处理和共享可穿戴医疗设备数据的端到端安全架构

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Embedded medical devices, such as wearable devices, are becoming increasingly common, but data from these devices is both very private and highly vulnerable to theft. Data needs to be collected from multiple devices to improve the effectiveness of treatment. The medical devices, data processing sites and intended care givers are often geographically distributed, and operate on different time scales with collected data being aggregated for days or months before analysis and usage. Current approaches to data security do not provide a framework for end-to-end protection, where data can always be encrypted but still used effectively. We present a security architecture with end-to-end encryption that supports 1) secure collection of data from embedded medical devices, 2) protected computing on this data in low-cost commodity cloud environment and 3) restricts the delegation of access to this data to designated recipients. The basis of the architecture comes from recent advances in lattice encryption technologies. This approach leverages recent breakthroughs in Homomorphic Encryption (HE) and Proxy Re-Encryption (PRE) that would practically support specific data aggregation, processing and distribution needs of a secure medical data architecture. This architecture lowers health care data system costs by securely outsourcing computation to cloud computing environments while simultaneously reducing vulnerabilities to some of the most problematic security challenges such as insider attacks and enables additional cost savings with lower-cost embedded medical devices.
机译:嵌入式医疗设备(如可穿戴设备)变得越来越普遍,但这些设备的数据既非常私密,易受盗窃。需要从多个设备收集数据以提高治疗的有效性。医疗设备,数据处理站点和预期的护理仪器通常在地理上分布,并在不同的时间尺度上运行,收集的数据在分析和使用前几天或数月聚合。目前数据安全的方法不提供端到端保护的框架,其中数据可以始终加密,但仍然有效使用。我们呈现了一种安全架构,其端到端加密支持1)从嵌入式医疗设备的安全集合,2)在低成本的商品云环境中保护计算,3)限制了对此数据的访问委托指定收件人。该架构的基础来自莱迪思加密技术的最新进展。这种方法利用近期同态加密(HE)和代理重新加密(PRE)的突破,这些方法实际上支持安全医疗数据架构的特定数据聚合,处理和分发需求。这种体系结构通过将计算安全地将计算安全到云计算环境,同时将漏洞减少到一些最有问题的安全挑战,例如内幕攻击等诸如内幕攻击等诸如较低成本的嵌入式医疗设备的额外成本节省的漏洞。

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