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    • 93. 发明授权
    • Cardiac stimulating device
    • 心脏刺激装置
    • US08718767B2
    • 2014-05-06
    • US13509548
    • 2009-12-18
    • Anders Lindgren
    • Anders Lindgren
    • A61N1/00
    • A61N1/3622A61B5/0468A61N1/3702
    • An implantable medical device, IMD, comprises atrial and ventricular sensing units for sensing atrial or ventricular electric events. The IMD also comprises atrial and ventricular pulse generators for generating atrial or ventricular pacing pulses. The ventricular sensing unit is connectable to a multi-electrode lead to individually sense electric events in a ventricle using multiple electrode pairs implanted at different ventricular sites. A controller blanks the ventricular sensing unit during a blanking period following delivery of an atrial stimulating pulse by the atrial pulse generator and activates the ventricular sensing unit at the expiry of the blanking period. Due to the lower propagation speed of PVC depolarization waves and the multi-site sensing, a PVC depolarization wave initiated at a ventricular site during the blanking period can be detected by the IMD.
    • 可植入医疗装置IMD包括用于感测心室或心室电事件的心房和心室感测单元。 IMD还包括用于产生心房或心室起搏脉冲的心房和心室脉冲发生器。 心室感测单元可连接到多电极引线,以单独使用在不同心室部位植入的多个电极对在心室感测电气事件。 控制器在由心房脉冲发生器递送心房刺激脉冲之后的消隐期间空白心室感测单元,并且在消隐期结束时激活心室感测单元。 由于PVC去极化波和多位点感测的传播速度较低,在消隐期间在心室部位发起的PVC去极化波可以被IMD检测到。
    • 94. 发明申请
    • Method and Arrangement for Controlling Actions in a Notification Service
    • 控制通知服务中的动作的方法和安排
    • US20140067971A1
    • 2014-03-06
    • US14005780
    • 2011-03-23
    • Christer BobergPer OrvebrattMikael KleinAnders Lindgren
    • Christer BobergPer OrvebrattMikael KleinAnders Lindgren
    • H04L12/58
    • H04L51/24H04L51/043H04L67/24
    • Method and arrangement for controlling actions in a notification server (200) that (for A or B) provides notifications regarding a presentity (B) to a subscribing watcher (A). When a request is received(2:1) from a requesting party (A, B or 208) for an additional action apart from the regular notifications, an action rule is activated (2:3) in an action rules repository (202). The action rule comprises a trigger condition for performing the requested additional action. When an event publication is received(2:4) referring to the presentity, the event publication is checked(2:6) against the action rule to determine whether the trigger condition is fulfilled or not by the event publication. If so, the additional action is executed (2:7). Thereby, the additional action can be put into practice and controlled automatically within the framework of the ongoing notification service.
    • 用于控制通知服务器(200)中(对于A或B)的动作的方法和装置向订阅观察者(A)提供关于呈现体(B)的通知。 当从请求方(A,B或208)接收到请求(2:1)以获得除常规通知之外的附加操作时,在动作规则库(202)中激活动作规则(2:3)。 动作规则包括用于执行所请求的附加动作的触发条件。 当接收到事件发布(2:4)时,根据动作规则对事件发布进行检查(2:6),以确定事件发布是否满足触发条件。 如果是,执行附加动作(2:7)。 因此,可以在正在进行的通知服务的框架内自动实施和控制附加动作。
    • 97. 发明申请
    • CARDIAC STIMULATING DEVICE
    • 心脏刺激装置
    • US20120245650A1
    • 2012-09-27
    • US13509548
    • 2009-12-18
    • Anders Lindgren
    • Anders Lindgren
    • A61N1/368
    • A61N1/3622A61B5/0468A61N1/3702
    • An implantable medical device, IMD, comprises atrial and ventricular sensing units for sensing atrial or ventricular electric events. The IMD also comprises atrial and ventricular pulse generators for generating atrial or ventricular pacing pulses. The ventricular sensing unit is connectable to a multi-electrode lead to individually sense electric events in a ventricle using multiple electrode pairs implanted at different ventricular sites. A controller blanks the ventricular sensing unit during a blanking period following delivery of an atrial stimulating pulse by the atrial pulse generator and activates the ventricular sensing unit at the expiry of the blanking period. Due to the lower propagation speed of PVC depolarization waves and the multi-site sensing, a PVC depolarization wave initiated at a ventricular site during the blanking period can be detected by the IMD.
    • 可植入医疗装置IMD包括用于感测心室或心室电事件的心房和心室感测单元。 IMD还包括用于产生心房或心室起搏脉冲的心房和心室脉冲发生器。 心室感测单元可连接到多电极引线,以单独使用在不同心室部位植入的多个电极对在心室感测电气事件。 控制器在由心房脉冲发生器递送心房刺激脉冲之后的消隐期间空白心室感测单元,并且在消隐期结束时激活心室感测单元。 由于PVC去极化波和多位点感测的传播速度较低,在消隐期间在心室部位发起的PVC去极化波可以被IMD检测到。
    • 100. 发明申请
    • LOWERING DEVICE COMPRISING A SWIVEL ARM HAVING CONTOURED BRAKING MEANS
    • US20120103725A1
    • 2012-05-03
    • US13320312
    • 2010-05-11
    • Per JohanssonAnders LindgrenCarl Backlund
    • Per JohanssonAnders LindgrenCarl Backlund
    • A62B1/14
    • A62B1/14
    • The present invention relates to a lowering device (1), comprising a base part (2), a handle (3), a lifeline (4) and an attachment (7) for a rescue harness or a safety belt, wherein the base part (2) and the handle (3) are fixedly connected to each other, wherein the base part (2) comprises a first deflecting means (5) and a second deflecting means (6), that said first deflecting means (5) also constitutes a braking means located adjacent to an outlet opening (10) for the lifeline (4), that a first, incoming portion (4a) of the lifeline is adapted to run around said first deflecting means (5) while bearing against a contact surface (A) of said first deflecting means, that a second, outgoing portion (4b) of the lifeline is adapted to run around said second deflecting means (6) and further out through the outlet opening (10) while when under load it abuts in frictional engagement against the first, incoming portion (4a) of the lifeline along at least part of the length where the first lifeline bears against said contact surface (A), that a fulcrum (M) is formed in an abutment region between the two portions (4a, 4b) of the lifeline and the contact surface (A), that the handle (3) and the attachment (7) are positioned on either side of the first deflecting means (5) and adapted to rotate the base part (2) in a common rotational plane (P) about this fulcrum (M), that the attachment (7) comprises a swivel arm which is rotatably connected to the base part (2) on a pivot point (8) for rotation of the swivel arm in said rotational plane (P) and an attachment means (11) for said rescue harness or safety belt, wherein the swivel arm is designed to be brought into engagement with said second portion (4b) of the lifeline in the abutment region between the two portions (4a, 4b) of the lifeline and the contact surface (A) for producing a compressive force (F) against the lifeline, whereby the abutment contact between the two portions of the lifeline, and thereby the frictional force, can be increased.