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    • 3. 发明申请
    • Personal control of healthcare information and related systems, methods, and devices
    • 个人控制医疗信息及相关系统,方法和设备
    • US20060229911A1
    • 2006-10-12
    • US11352704
    • 2006-02-10
    • Adrian GropperWilliam DonnerSean DoyleYair Frankel
    • Adrian GropperWilliam DonnerSean DoyleYair Frankel
    • G06Q10/00
    • G06Q50/22G06F19/321G16H10/60
    • The invention, in one embodiment, is directed to a healthcare information system including: a client interface unit for creating one or more healthcare information documents, a repository in communication with the client interface unit for storing one or more healthcare information documents received from the client interface unit, a registry in communication with the repository for maintaining an index table of one or more healthcare information documents stored in the repository and for maintaining control information associated with each document for controlling the distribution of each documents from the repository, and a patient interface unit in communication with the registry for enabling a patient to configure at least a portion of the control information within the registry associated with one or more healthcare information documents.
    • 在一个实施例中,本发明涉及一种保健信息系统,包括:用于创建一个或多个保健信息文档的客户端接口单元,与客户接口单元通信的存储库,用于存储从客户接收的一个或多个保健信息文档 接口单元,与所述存储库通信的注册表,用于维护存储在所述存储库中的一个或多个保健信息文档的索引表,并且用于维护与每个文档相关联的控制信息,以控制来自存储库的每个文档的分发;以及患者界面 与注册单元通信的单元,用于使患者能够配置与一个或多个保健信息文档相关联的注册表内的控制信息的至少一部分。
    • 5. 发明授权
    • Computer-based method and system for aiding transactions
    • 用于协助交易的基于计算机的方法和系统
    • US06353812B2
    • 2002-03-05
    • US09026466
    • 1998-02-19
    • Yair FrankelDavid William KravitzCharles Thomas MontgomeryMarcel Mordechay Yung
    • Yair FrankelDavid William KravitzCharles Thomas MontgomeryMarcel Mordechay Yung
    • G06F1760
    • G06Q20/40G06Q20/382G06Q20/3821G06Q20/401G06Q20/4037G06Q30/04G06Q30/0613G06Q40/00G07F7/08
    • A method for aiding transactions by providing warranties against various aspects of a transaction which may be hard to assure ahead of time or when high risk is involved in relying on them. The method employs an infrastructure of a computer and communication systems communication with various distributed organizations working together and providing warranties. Different parties may trust different organizations and user representatives of the infrastructure. A party in a transaction may ask for a warranty against another party. As a response, the infrastructure, through its organizations, calculates and provides a decision regarding the request. Relying on the warranty, the risk involved in conducting the electronic transaction is reduced. In the case where the transaction does not reach sound completion, the warranty can be claimed. The method also involves managing and administering the infrastructure, the entities in the transaction system and their outstanding warranties. Cryptographic sub-systems within the infrastructure components and the entities they serve are used to assure party/organization authentication and the validity of electronically signed messages within the transaction system. The warranty granting process, in turn, assures the transaction: its content, context, the parties and the parties' identification mechanisms, such as digital certificates.
    • 通过对交易的各个方面提供担保来协助交易的方法,这些保证可能难以提前确定,或者在依赖这些交易涉及高风险的情况下。 该方法采用计算机的基础设施和通信系统与各种分布式组织进行通信,并提供保证。 不同的各方可能会信任基础设施的不同组织和用户代表。 交易中的一方可以要求对另一方的保证。 作为回应,基础设施通过其组织计算并提供有关请求的决定。 依靠保修,减少进行电子交易所涉及的风险。 在交易未达到完成的情况下,可以声明保修。 该方法还涉及管理和管理基础设施,交易系统中的实体及其未完成的保证。 基础设施组件及其服务实体中的加密子系统用于确保交易系统中的电子签名消息的方/组织认证和有效性。 保证授予过程反过来又保证交易:其内容,背景,各方以及各方的身份识别机制,如数字证书。
    • 6. 发明授权
    • Optimal-resilience, proactive, public-key cryptographic system and method
    • 最佳弹性,主动,公钥密码系统和方法
    • US6035041A
    • 2000-03-07
    • US842080
    • 1997-04-28
    • Yair FrankelMarcel M. Yung
    • Yair FrankelMarcel M. Yung
    • G09C1/00H04L9/28H04L9/30H04L9/08
    • H04L9/302H04L9/002H04L9/085H04L9/3247
    • Proactive robust threshold schemes are presented for general "homomorphic-type" public key systems, as well as optimized systems for the RSA function. Proactive security employs dynamic memory refreshing and enables us to tolerate a "mobile adversary" that dynamically corrupts the components of the systems (perhaps all of them) as long as the number of corruptions (faults) is bounded within a time period. The systems are optimal-resilience. Namely they withstand any corruption of minority of servers at any time-period by an active (malicious) adversary (i.e., any subset less than half. Also disclosed are general optimal-resilience public key systems which are "robust threshold" schemes (against stationary adversary), and are extended to "proactive" systems (against the mobile one). The added advantage of proactivization in practical situations is the fact that, in a long-lived threshold system, an adversary has a long time (e.g., years) to break into any t out of the l servers. In contrast, the adversary in a proactive systems has only a short period of time (e.g., a week) to break into any t servers. The model of mobile adversary seems to be crucial to such "long-lived" systems that are expected to span the secure network and electronic commerce infrastructure.
    • 提出了一般的“同态”公钥系统的主动鲁棒阈值方案,以及用于RSA功能的优化系统。 主动安全性使用动态内存刷新,使我们能够容忍一个“移动对手”,只要在一段时间内限制了损坏(故障)的数量,就会动态地破坏系统的组件(可能都是这些)。 这些系统具有最佳的弹性。 也就是说,它们在任何时间段都能够承受任何时间段内的少数服务器的任何破坏(主动(恶意))对手(即,任何小于一半的子集),还公开了一般的最佳弹性公钥系统,它们是“鲁棒阈值”方案 对手),并扩展到“主动”系统(针对移动的系统)。在实际情况下,预激活的附加优点是,在长期的门槛系统中,对手具有很长的时间(例如,年数) 相比之下,主动系统中的对手只有很短的时间(例如一周)才能进入任何t服务器,移动对手的模式似乎对于 这种“长寿命”系统预计将跨越安全网络和电子商务基础设施。
    • 7. 发明授权
    • Computer-based method and system for aiding transactions
    • 用于协助交易的基于计算机的方法和系统
    • US08121949B2
    • 2012-02-21
    • US12073764
    • 2008-03-10
    • Yair FrankelDavid William KravitzCharles Thomas MontgomeryMarcel Mordechay Yung
    • Yair FrankelDavid William KravitzCharles Thomas MontgomeryMarcel Mordechay Yung
    • G06Q40/00
    • G06Q20/40G06Q20/382G06Q20/3821G06Q20/401G06Q20/4037G06Q30/04G06Q30/0613G06Q40/00G07F7/08
    • A method for providing a warranty relating to a transaction between two parties, each party having a data communications device, in a system which includes an infrastructure composed of a plurality of locations each associated with a respective institution which provides services to clients, each location having a computer system, a database coupled to the computer system and storing information about each client of the institution and a data communications device coupled to the computer system for communication with the data communications device of any one party, each party being a client of at least one of the institutions, the method containing the steps of: transmitting a request for a warranty from one party to the transaction which is a client of the respective institution to a respective location associated with the respective institution, which request includes information identifying the other party to the transaction and information about the nature of the transaction; conducting an exchange of information between the respective location and a location associated with a institution of which the other party is a client; and transmitting a response to the request from the respective location to the one party.
    • 一种在包括由多个位置组成的基础设施的系统中提供与具有数据通信设备的双方之间的交易有关的保证的方法,每个位置与相应的机构相关联,所述各个机构向客户端提供服务,每个位置具有 计算机系统,耦合到计算机系统的数据库,并且存储关于机构的每个客户端的信息以及耦合到计算机系统的数据通信设备,用于与任何一方的数据通信设备进行通信,每个方面至少为客户端 其中一个机构,该方法包括以下步骤:从一方向作为相应机构的客户的交易发送保证请求到与相应机构相关联的相应位置,该请求包括标识对方的信息 交易和交易性质的信息; 在相应位置和与另一方是客户的机构相关联的位置之间进行信息交换; 以及从所述相应位置向所述一方发送对所述请求的响应。
    • 9. 发明授权
    • Incorporating shared randomness into distributed cryptography
    • 将共享随机性并入分布式加密
    • US08290161B2
    • 2012-10-16
    • US11896361
    • 2007-08-31
    • Marcel M. YungYair Frankel
    • Marcel M. YungYair Frankel
    • H04K1/00H04L9/00
    • H04L9/0838H04L9/0897
    • A method of distributed cryptography for high consequence security systems which employs shared randomness between operating parties. Shared randomness is accomplished by sharing cryptographic keys stored in secure hardware tokens by potentially less secure software or general purpose computing units that perform distributed cryptography. The shared randomness is based on shared keys (at the tokens) and unique context. Shared random values are incorporated into the computation of partial results used in the distributed cryptographic calculation. The incorporation of shared randomness provides a hand-shake among the hardware tokens. When the operation is successful, a result is computed with assurance that the correct parties have taken part in forming the result. The hand-shake assures binding of operating parties and added system security.
    • 一种分布式密码学方法,用于高结果安全系统,其使用了各方之间的共享随机性。 共享随机性通过共享由安全硬件令牌存储的加密密钥来完成,潜在的较不安全的软件或执行分布式加密的通用计算单元。 共享随机性基于共享密钥(令牌)和唯一上下文。 共享随机值被并入分布式加密计算中使用的部分结果的计算中。 共享随机性的并入提供了硬件令牌之间的握手。 当操作成功时,计算结果是确保正确的方参与形成结果。 握手确保了操作方的约束和增加的系统安全性。
    • 10. 发明申请
    • Computer-based method and system for aiding transactions
    • 用于协助交易的基于计算机的方法和系统
    • US20080221914A1
    • 2008-09-11
    • US12073764
    • 2008-03-10
    • Yair FrankelDavid William KravitzCharles Thomas MontgomeryMarcel Mordechay Yung
    • Yair FrankelDavid William KravitzCharles Thomas MontgomeryMarcel Mordechay Yung
    • G06Q30/00
    • G06Q20/40G06Q20/382G06Q20/3821G06Q20/401G06Q20/4037G06Q30/04G06Q30/0613G06Q40/00G07F7/08
    • A method for providing a warranty relating to a transaction between two parties, each party having a data communications device, in a system which includes an infrastructure composed of a plurality of locations each associated with a respective institution which provides services to clients, each location having a computer system, a database coupled to the computer system and storing information about each client of the institution and a data communications device coupled to the computer system for communication with the data communications device of any one party, each party being a client of at least one of the institutions, the method containing the steps of:transmitting a request for a warranty from one party to the transaction which is a client of the respective institution to a respective location associated with the respective institution, which request includes information identifying the other party to the transaction and information about the nature of the transaction;conducting an exchange of information between the respective location and a location associated with a institution of which the other party is a client; andtransmitting a response to the request from the respective location to the one party.
    • 一种在包括由多个位置组成的基础设施的系统中提供与具有数据通信设备的双方之间的交易有关的保证的方法,每个位置与相应的机构相关联,所述各个机构向客户端提供服务,每个位置具有 计算机系统,耦合到计算机系统的数据库,并且存储关于机构的每个客户端的信息以及耦合到计算机系统的数据通信设备,用于与任何一方的数据通信设备进行通信,每个方面至少为客户端 其中一个机构,该方法包括以下步骤:从一方向作为相应机构的客户的交易发送保证请求到与相应机构相关联的相应位置,该请求包括标识对方的信息 交易和交易性质的信息; 在相应位置和与另一方是客户的机构相关联的位置之间进行信息交换; 以及从所述相应位置向所述一方发送对所述请求的响应。