论文标题
尖峰:对肾脏交换问题的安全和私人调查
SPIKE: Secure and Private Investigation of the Kidney Exchange problem
论文作者
论文摘要
背景:肾脏交换问题(KEP)解决了需要替换器官与兼容的活捐赠者的匹配。理想情况下,许多医疗机构应该参加匹配计划,以增加成功比赛的机会。但是,为了满足法律要求,当前系统使用复杂的基于政策的数据保护机制,这些机制有效地排除了较小的医疗设施的参与。采用安全的多方计算(MPC)技术提供了一种技术方法,可以满足高度敏感的个人健康信息的数据保护要求,同时减轻监管负担。 结果:我们设计,实现和基准测试的Spike是一种基于安全的MPC的隐私保护KEP,它通过在图形结构中找到匹配的供体 - 重点对来计算解决方案。 Spike在不到4分钟的时间内与长度为2的周期中的40对匹配,并且在运行时的效果超过了先前的最先进协议,同时提供了医学上更强大的解决方案。 结论:我们展示了如何以强大而保密的方式来实现实际绩效来解决KEP。 MPC技术的使用符合技术水平上的许多数据保护要求,使较小的医疗保健提供者可以直接参与以减少法律流程的肾脏交换。
Background: The kidney exchange problem (KEP) addresses the matching of patients in need for a replacement organ with compatible living donors. Ideally many medical institutions should participate in a matching program to increase the chance for successful matches. However, to fulfill legal requirements current systems use complicated policy-based data protection mechanisms that effectively exclude smaller medical facilities to participate. Employing secure multi-party computation (MPC) techniques provides a technical way to satisfy data protection requirements for highly sensitive personal health information while simultaneously reducing the regulatory burdens. Results: We have designed, implemented, and benchmarked SPIKE, a secure MPC-based privacy-preserving KEP which computes a solution by finding matching donor-recipient pairs in a graph structure. SPIKE matches 40 pairs in cycles of length 2 in less than 4 minutes and outperforms the previous state-of-the-art protocol by a factor of 400x in runtime while providing medically more robust solutions. Conclusions: We show how to solve the KEP in a robust and privacy-preserving manner achieving practical performance. The usage of MPC techniques fulfills many data protection requirements on a technical level, allowing smaller health care providers to directly participate in a kidney exchange with reduced legal processes.