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    • 1. 发明授权
    • Vertebral fixation plate assembly
    • 椎体固定板组装
    • US08142484B2
    • 2012-03-27
    • US12190981
    • 2008-08-13
    • Ching-Kong ChaoWen-Hsien HsuChing-Chi HsuHsi-Ching HsuYu-Hsiang Tsai
    • Ching-Kong ChaoWen-Hsien HsuChing-Chi HsuHsi-Ching HsuYu-Hsiang Tsai
    • A61B17/80
    • A61B17/7032A61B17/7044A61B17/7059A61F2/44A61F2002/2835A61F2002/30784
    • A vertebral fixation plate assembly for insertion into the resection site between two vertebrae of a patients vertebral column and fixation to front or lateral side of the two adjacent vertebral bodies above and below the resection site by means of surgical implantation is disclosed to include a fixation plate that has a plurality of round holes and elongated holes and an opening on the middle, a plurality of bone screws respectively inserted through the round holes and elongated holes for fastening the fixation plate to the patient's vertebral column, and a cage affixed to the opening on the fixation plate and holding holes cut through the periphery for bone fusion and grow. The cage is linked to a vertebral spacer for artificial vertebrae by means of bone fusion to prevent vertebral sinking or slipping of the vertebral spacer and to improve bone fusion efficiency.
    • 公开了一种椎体固定板组件,其用于插入病人椎体柱的两个椎骨之间的切除部位并且通过手术植入固定到切除部位上方和下方的两个相邻椎体的前侧或侧侧,包括固定板 其具有多个圆孔和细长孔和中间的开口,分别插入穿过圆孔的多个骨螺钉和用于将固定板紧固到患者脊柱的细长孔和固定在患者脊柱上的开口的保持架 固定板和保持孔切开周边进行骨融合并生长。 笼子通过骨融合连接到用于人造椎骨的脊椎间隔物,以防止脊椎间隙的脊椎下沉或滑动并提高骨融合效率。
    • 2. 发明授权
    • Power management methods and systems
    • 电源管理方法和系统
    • US07848277B2
    • 2010-12-07
    • US11359539
    • 2006-02-23
    • Zi-Tsan ChouChing-Chi Hsu
    • Zi-Tsan ChouChing-Chi Hsu
    • H04B7/185
    • H04W52/0229H04W84/18Y02D70/142Y02D70/22
    • Power management methods and systems for a first station and a second station in an ad-hoc network. Each station enters the normal beacon interval (NBI) every certain number of beacon intervals (BIs) for data transmission, a Listen Interval (LI). When a station switches to a power-saving mode, it first determines the number of “beacon-window-only beacon intervals (BBIs)” within a LI. In addition, each station broadcasts a beacon frame comprising at least information about “the remaining number of BIs (RBI)” within a beacon window. Once the first station correctly receives the beacon frame from the second station, the first station predicts the NBI of the second station according to the RBI. At the NBI of the second station, the first station transmits data frames to the second station.
    • 在ad-hoc网络中的第一站和第二站的电源管理方法和系统。 每个站每隔一定数量的信标间隔(BI)进入数据传输的正常信标间隔(NBI),即监听间隔(LI)。 当站切换到省电模式时,它首先确定LI内的“仅信标窗口信标间隔(BBI)”的数量。 此外,每个站广播包括信标窗口内至少关于“剩余BI(BII)”的信息的信标帧。 一旦第一站正确地从第二站接收到信标帧,则第一站根据RBI预测第二站的NBI。 在第二站的NBI处,第一站向第二站发送数据帧。
    • 8. 发明申请
    • Power management methods and systems
    • 电源管理方法和系统
    • US20070129093A1
    • 2007-06-07
    • US11359539
    • 2006-02-23
    • Zi-Tsan ChouChing-Chi Hsu
    • Zi-Tsan ChouChing-Chi Hsu
    • H04B7/00
    • H04W52/0229H04W84/18Y02D70/142Y02D70/22
    • Power management methods and systems for a first station and a second station in an ad-hoc network. Each station enters the normal beacon interval (NBI) every certain number of beacon intervals (BIs) for data transmission, a Listen Interval (LI). When a station switches to a power-saving mode, it first determines the number of “beacon-window-only beacon intervals (BBIs)” within a LI. In addition, each station broadcasts a beacon frame comprising at least information about “the remaining number of BIs (RBI)” within a beacon window. Once the first station correctly receives the beacon frame from the second station, the first station predicts the NBI of the second station according to the RBI. At the NBI of the second station, the first station transmits data frames to the second station.
    • 在ad-hoc网络中的第一站和第二站的电源管理方法和系统。 每个站每隔一定数量的信标间隔(BI)进入数据传输的正常信标间隔(NBI),即监听间隔(LI)。 当站切换到省电模式时,它首先确定LI内的“仅信标窗口信标间隔(BBI)”的数量。 此外,每个站广播包括信标窗口内至少关于“剩余BI(BII)”的信息的信标帧。 一旦第一站正确地从第二站接收到信标帧,则第一站根据RBI预测第二站的NBI。 在第二站的NBI处,第一站向第二站发送数据帧。