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    • 6. 发明授权
    • Method and system for dynamic searchable symmetric encryption with forward privacy and delegated verifiability
    • US11222136B2
    • 2022-01-11
    • US16319556
    • 2017-07-25
    • Robert Bosch GmbH
    • Xinxin FanQingji ZhengLei Yang
    • G06F21/62G16H10/60H04L9/08H04L9/32
    • A DSSE architecture network enables multi-user such as data owners and data users to conduct privacy-preserving search on the encrypted PHIs stored in a cloud network and verify the correctness and completeness of retrieved search results simultaneously is provided. The data owners and data users may be patients, HSPs, or combination thereof. An IoT gateway aggregates periodically collected data into a single PHI file, extract keywords, build an encrypted index, and encrypt the PHI files before the encrypted index and PHI files are transmitted to a cloud network periodically for storage thus enable the DSSE architecture network to achieve a sub-linear search efficiency and forward privacy by maintaining an increasing counter for each keyword at the IoT gateway. Since the PHI files are always transmitted and added/stored into the cloud storage over the cloud network, file deletion, file modification is eliminated. The cloud network therefore does not need to learn whether the newly stored PHI files contain specific keywords. Any number of HSPs such as data users provides healthcare services for the patient by searching, querying, and/or retrieving user's encrypted PHIs incrementally stored on the cloud network in a privacy and verifiable manner. The patient delegated verifiability is derived from a combination of a Bloom filter and aggregate message authentication code.
    • 8. 发明授权
    • Assembly tool for modular implants and associated method
    • 用于模块化植入物和相关方法的装配工具
    • US08685036B2
    • 2014-04-01
    • US12548037
    • 2009-08-26
    • Michael C. JonesDavid W. Daniels
    • Michael C. JonesDavid W. Daniels
    • A61B17/58
    • A61F2/4637A61B17/164A61F2/36A61F2002/30535A61F2250/0058
    • An assembly tool for assembly of a first component of a prosthesis to a second component of the prosthesis for use in joint arthroplasty is provided. The tool includes a first member operably associated with the first component and a second member. The second member is operably associated with the second component. At least one of the first member and the second member are adapted to provide for the assembly of the first component of the prosthesis to the second component of the prosthesis. The second member is operably associated with the first member for relative motion between the first member and the second member for assembly of the first component of the prosthesis to the second component.
    • 提供了一种用于将假体的第一部件组装到用于关节置换术中的假体的第二部件的组装工具。 该工具包括与第一部件可操作地相关联的第一部件和第二部件。 第二构件可操作地与第二构件相关联。 第一构件和第二构件中的至少一个适于提供假体的第一构件到假体的第二构件的组装。 第二构件与第一构件可操作地相关联,用于在第一构件和第二构件之间进行相对运动,用于将假体的第一构件组装到第二构件。
    • 9. 发明授权
    • Method and apparatus for protecting a load against an overcurrent
    • US11562865B2
    • 2023-01-24
    • US17249668
    • 2021-03-09
    • Future Systems Besitz GmbH
    • Philipp SteinbergerPeter SpielHubert Lenker
    • H01H9/54H02H3/087H02H11/00
    • A hybrid load protection apparatus (1) comprises a primary power supply path (1A) between input terminal and output terminals (2, 3) and a controllable mechanical switch (5A) connected in series with a primary coil (4A-1) coupled inductively to a secondary coil (4A-2) providing a voltage, UA, corresponding to a current rise speed of the electrical current flowing through the primary path (1A). The voltage, UA, is applied directly to a driver input (IN) of a first driver circuit (6A) to trigger automatically a switch-off of the mechanical switch (5A) within a first switch-off period (Δt1) to interrupt the primary power supply path (1A). A secondary power supply path (1B) is provided in parallel to the primary path (1A) and having a further coil (4B) connected in series with a semiconductor power switch (5B). wherein a second driver circuit (6B) associated with the secondary path (1B) detects an increasing electrical current, I, flowing through the secondary path (1B) caused by the interruption of the primary current path (1A) on the basis of a voltage drop (ΔU4) generated by the further coil (4B) and a non-linear voltage drop (ΔU5) along the semiconductor power switch (5B) applied as a sum voltage (UB) directly to a driver input (DESAT) at a high voltage side of the second analog driver circuit (6B) to trigger automatically a switch-off of the semiconductor power switch (5B) within a second switch-off period (Δt2) to interrupt the secondary power supply path (1B).