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    • 3. 发明公开
    • Software for planning deformity correction
    • 软件zur Planung von Deformationskorrekturen
    • EP2767252A1
    • 2014-08-20
    • EP14154820.6
    • 2014-02-12
    • Stryker Trauma GmbH
    • Edelhauser, Adam John
    • A61B19/00A61B17/66A61B17/62A61B17/56
    • A61B17/62A61B17/66A61B34/10A61B90/37A61B2034/101A61B2034/104A61B2034/105A61B2090/364A61B2090/376
    • The present disclosure relates to software used in planning the correction of bone deformities preoperatively or postoperatively, and in particular relates to virtually manipulating rings (305, 310) and struts of an external fixation frame in order to plan the steps for making a desired correction to two or more bone portions of a patient. The software can be used prior to surgery, allowing a user to virtually define a bone deformity, and virtually add and manipulate fixation rings and struts to the bone deformity. Based on the virtual manipulations, a correction plan (510) can be generated that describes length adjustments that should be made to the plurality of model struts over a period of time to correct the bone deformity. The software can also be used after surgical fixation of the fixation frame and struts to the deformed bone.
    • 本公开涉及用于在术前或术后矫正骨畸形中使用的软件,并且具体涉及虚拟操纵外固定框架的环(305,310)和支柱,以便规划用于进行所需校正的步骤 患者的两个或更多个骨部分。 该软件可以在手术之前使用,允许用户虚拟地定义骨骼畸形,并且实际上增加和操纵固定环和支柱到骨骼畸形。 基于虚拟操作,可以生成修正计划(510),其描述在一段时间内应该对多个模型支柱进行的长度调整以校正骨骼畸形。 该软件也可以在固定框架和支柱手术固定到变形的骨后使用。
    • 7. 发明公开
    • Implantation pin
    • Implantatstift
    • EP2465456A1
    • 2012-06-20
    • EP12159816.3
    • 2007-04-20
    • Stryker Trauma GmbH
    • Wieland, Manfred
    • A61B17/68A61B18/02A61C8/00A61F2/02
    • A61B17/68A61B17/00491A61B17/7098A61B17/864A61B17/866A61B17/8685A61B17/8822A61B2017/00004A61C8/0012A61C8/0016A61C8/0018A61N7/02
    • An implantation pin (1) for implantation in a target structure is provided with a pinhead (3) and a shaft (5). The pinhead (3) comprises a pinhead moulding portion (7) comprising a mouldable material which can be liquefied by application of mechanical energy such as ultrasonic vibration energy. A channel (11) extends through the pinhead (3) and the shaft (5), the channel connecting the pinhead moulding portion to a discharge opening (13) located at the shaft. The mouldable material can be liquefied by applying mechanical energy e.g. in the form of ultrasonic vibrations via e.g. a fixation device including an ultrasonic sonotrode and a vibrating tip (45). The pressure applied by the vibrating tip (45) can be transmitted via the border of the pinhead (3) to the target structure while the liquefied mouldable material can be forced through the channel (11) and the discharge opening (13) into a gap between the implantation pin (1) and a recess in a target structure thereby fixing the implantation pin in the target structure.
    • 用于植入目标结构的植入销(1)设置有针头(3)和轴(5)。 针头(3)包括具有可模制材料的针头模制部分(7),该可模制材料可通过施加诸如超声波振动能量的机械能液化。 通道(11)延伸穿过针头(3)和轴(5),该通道将引头模制部分连接到位于轴上的排放口(13)。 可模塑材料可以通过施加机械能例如液化而液化。 以超声波振动的形式通过例如 固定装置,包括超声波超声波发生器和振动尖端(45)。 振动尖端(45)施加的压力可以通过针头(3)的边界传递到目标结构,而液化的可模制材料可以被迫通过通道(11)和排出口(13)成间隙 在注入针(1)和目标结构中的凹部之间,从而将注入销固定在目标结构中。
    • 9. 发明公开
    • Ultrasonic applicator
    • Ultraschallapplikator
    • EP2374425A1
    • 2011-10-12
    • EP10159348.1
    • 2010-04-08
    • Stryker Trauma GmbH
    • Giersch, HelgeDorawa, Klaus
    • A61B17/88
    • A61B17/864A61B17/7098A61B17/8822
    • An ultrasonic applicator according to the invention comprises an ultrasonic converter accommodated in a converter housing, a first housing, and a second housing. A rear end portion of the first housing is located in the second housing and an inner end portion of the converter housing is located in the rear end portion of the first housing. On the one hand, a length of the rear end portion of the first housing is adjustable. On the other hand, an outer end portion of the converter housing is connected with the second housing via an elastic element, so that a restoring force may apply on the converter housing by virtue of a movement of the converter housing relative to the second housing.
    • 根据本发明的超声波涂布器包括容纳在转换器壳体中的超声波转换器,第一壳体和第二壳体。 第一壳体的后端部位于第二壳体中,并且转换器壳体的内端部位于第一壳体的后端部。 一方面,第一壳体的后端部的长度是可调节的。 另一方面,转换器壳体的外端部分经由弹性元件与第二壳体连接,从而借助于转换器壳体相对于第二壳体的移动,可以在转换器壳体上施加恢复力。