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    • 1. 发明授权
    • Modular proximal body trial
    • 模块近体试验
    • US07951205B2
    • 2011-05-31
    • US12552818
    • 2009-09-02
    • Larry McClearyJonathan CarrJoel RhoadesDavid Daniels
    • Larry McClearyJonathan CarrJoel RhoadesDavid Daniels
    • A61F2/36
    • A61F2/4684A61F2/367A61F2/3676A61F2002/30604A61F2002/30616A61F2002/3625A61F2002/3652A61F2002/3674
    • A system and method for trialing a modular hip replacement system permits evaluation and replication of the anatomic anteversion rotational angle of the femur. In one embodiment, a femoral hip implant kit includes at least one distal implant and a plurality of femoral heads, each of the plurality of femoral heads having a diameter different from the diameter of the other of the plurality of femoral heads. The kit includes a proximal trial housing with a bore within the housing, the bore configured to receive a portion of the distal implant, a collet located within the bore, the collet including an outer wall portion extending between a top surface portion and a bottom surface portion, a collapsing member for engaging the portion of the distal implant and for forcing the top surface portion of the collet toward the bottom surface portion of the collet along a first axis.
    • 用于试验模块化髋关节置换系统的系统和方法允许评估和复制股骨的解剖前倾旋转角度。 在一个实施例中,股骨髋关节植入物套件包括至少一个远端植入物和多个股骨头,多个股骨头中的每一个具有不同于多个股骨头中另一个的直径的直径。 该套件包括在壳体内具有孔的近端试验壳体,构造成容纳远端植入物的一部分的孔,位于孔内的夹头,夹头包括在顶表面部分和底表面之间延伸的外壁部分 部分,用于接合所述远端植入物的所述部分并且用于迫使所述夹头的顶表面部分沿着第一轴线朝向所述夹头的底表面部分的塌缩构件。
    • 2. 发明申请
    • Modular proximal body trial
    • 模块近体试验
    • US20080125867A1
    • 2008-05-29
    • US11605099
    • 2006-11-28
    • Larry McClearyJonathan CarrJoel RhoadesDavid Daniels
    • Larry McClearyJonathan CarrJoel RhoadesDavid Daniels
    • A61F2/32A61F2/36
    • A61F2/4684A61F2/367A61F2/3676A61F2002/30604A61F2002/30616A61F2002/3625A61F2002/3652A61F2002/3674
    • A system and method for trialing a modular hip replacement system permits evaluation and replication of the anatomic anteversion rotational angle of the femur. In one embodiment, a femoral hip implant kit includes at least one distal implant and a plurality of femoral heads, each of the plurality of femoral heads having a diameter different from the diameter of the other of the plurality of femoral heads. The kit includes a proximal trial housing with a bore within the housing, the bore configured to receive a portion of the distal implant, a collet located within the bore, the collet including an outer wall portion extending between a top surface portion and a bottom surface portion, a collapsing member for engaging the portion of the distal implant and for forcing the top surface portion of the collet toward the bottom surface portion of the collet along a first axis.
    • 用于试验模块化髋关节置换系统的系统和方法允许评估和复制股骨的解剖前倾旋转角度。 在一个实施例中,股骨髋关节植入物套件包括至少一个远端植入物和多个股骨头,多个股骨头中的每一个具有不同于多个股骨头中另一个的直径的直径。 该套件包括在壳体内具有孔的近端试验壳体,构造成容纳远端植入物的一部分的孔,位于孔内的夹头,夹头包括在顶表面部分和底表面之间延伸的外壁部分 部分,用于接合所述远端植入物的所述部分并且用于迫使所述夹头的顶表面部分沿着第一轴线朝向所述夹头的底表面部分的塌缩构件。
    • 3. 发明授权
    • Aircraft internal wing and design
    • 飞机内翼和设计
    • US07258302B2
    • 2007-08-21
    • US10871310
    • 2004-06-18
    • Robert Jonathan CarrJames Michael Higgins
    • Robert Jonathan CarrJames Michael Higgins
    • B64C39/12
    • B64C3/46B64C39/066B64C39/068Y02T50/14
    • An aircraft designed with three wings located on either side of the fuselage. The forward wing has a downward angle with a curved top and bottom surface. The upper wing is located towards the rear of the aircraft and above the forward wing. The lower wing is located below the upper wing and slightly forward. It is also located to the rear and below of the forward wing. The outer ends of all three wings come into contact at one point. The forward wing uses the Coanda effect to increase the airflow across the top surface of the bottom wing. The aircraft can be designed so that it is large enough to carry people and/or cargo, or to be small enough to be flown as a toy aircraft. The like design can use any type of aircraft engine commonly used today. One embodiment of the aircraft has two turbines, shaft-coupled to a power source, located on either side of the forward end of the fuselage. Each engine has part of its thrust diverted through and directed by a plenum disposed internal of the coanda toward both sides of the fuselage so that an equal amount of thrust flows through the duct and over the wings on either side of the fuselage. This ensures equal lift on the coanda and both wings on either side of the fuselage in the event that one engine malfunctions.
    • 设计有三个机翼的飞机位于机身两侧。 前翼具有向下的角度,具有弯曲的顶部和底部表面。 上翼位于飞机的后方,位于前翼的上方。 下翼位于上翼下方,稍微向前。 它也位于前翼的后方和下方。 所有三个翼的外端在一点接触。 前翼使用柯恩达效应来增加穿过底翼顶表面的气流。 该飞机可以设计成足够大以携带人和/或货物,或者足够小以作为玩具飞机飞行。 类似的设计可以使用今天普遍使用的任何类型的飞机引擎。 飞机的一个实施例具有两个位于机身前端两侧的与电源轴耦合的涡轮机。 每个发动机的一部分推力通过设置在机身内部的整流室并通过机身的两侧而被引导,以使等量的推力流过机身的导管和机身的两侧。 如果一个发动机发生故障,这样可以确保机身两侧的平均升力和机身两侧的两翼。
    • 5. 发明申请
    • Modular Proximal Body Trial
    • 模块近端体检
    • US20090326672A1
    • 2009-12-31
    • US12552818
    • 2009-09-02
    • Larry McClearyJonathan CarrJoel RhoadesDavid Daniels
    • Larry McClearyJonathan CarrJoel RhoadesDavid Daniels
    • A61F2/36
    • A61F2/4684A61F2/367A61F2/3676A61F2002/30604A61F2002/30616A61F2002/3625A61F2002/3652A61F2002/3674
    • A system and method for trialing a modular hip replacement system permits evaluation and replication of the anatomic anteversion rotational angle of the femur. In one embodiment, a femoral hip implant kit includes at least one distal implant and a plurality of femoral heads, each of the plurality of femoral heads having a diameter different from the diameter of the other of the plurality of femoral heads. The kit includes a proximal trial housing with a bore within the housing, the bore configured to receive a portion of the distal implant, a collet located within the bore, the collet including an outer wall portion extending between a top surface portion and a bottom surface portion, a collapsing member for engaging the portion of the distal implant and for forcing the top surface portion of the collet toward the bottom surface portion of the collet along a first axis.
    • 用于试验模块化髋关节置换系统的系统和方法允许评估和复制股骨的解剖前倾旋转角度。 在一个实施例中,股骨髋关节植入物套件包括至少一个远端植入物和多个股骨头,多个股骨头中的每一个具有不同于多个股骨头中另一个的直径的直径。 该套件包括在壳体内具有孔的近端试验壳体,构造成容纳远端植入物的一部分的孔,位于孔内的夹头,夹头包括在顶表面部分和底表面之间延伸的外壁部分 部分,用于接合所述远端植入物的所述部分并且用于迫使所述夹头的顶表面部分沿着第一轴线朝向所述夹头的底表面部分的塌缩构件。
    • 6. 发明授权
    • Modular proximal body trial
    • 模块近体试验
    • US07585329B2
    • 2009-09-08
    • US11605099
    • 2006-11-28
    • Larry McClearyJonathan CarrJoel RhoadesDavid Daniels
    • Larry McClearyJonathan CarrJoel RhoadesDavid Daniels
    • A61F2/36
    • A61F2/4684A61F2/367A61F2/3676A61F2002/30604A61F2002/30616A61F2002/3625A61F2002/3652A61F2002/3674
    • A system and method for trialing a modular hip replacement system permits evaluation and replication of the anatomic anteversion rotational angle of the femur. In one embodiment, a femoral hip implant kit includes at least one distal implant and a plurality of femoral heads, each of the plurality of femoral heads having a diameter different from the diameter of the other of the plurality of femoral heads. The kit includes a proximal trial housing with a bore within the housing, the bore configured to receive a portion of the distal implant, a collet located within the bore, the collet including an outer wall portion extending between a top surface portion and a bottom surface portion, a collapsing member for engaging the portion of the distal implant and for forcing the top surface portion of the collet toward the bottom surface portion of the collet along a first axis.
    • 用于试验模块化髋关节置换系统的系统和方法允许评估和复制股骨的解剖前倾旋转角度。 在一个实施例中,股骨髋关节植入物套件包括至少一个远端植入物和多个股骨头,多个股骨头中的每一个具有不同于多个股骨头中另一个的直径的直径。 该套件包括在壳体内具有孔的近端试验壳体,构造成容纳远端植入物的一部分的孔,位于孔内的夹头,夹头包括在顶表面部分和底表面之间延伸的外壁部分 部分,用于接合所述远端植入物的所述部分并且用于迫使所述夹头的顶表面部分沿着第一轴线朝向所述夹头的底表面部分的塌缩构件。