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    • 1. 发明申请
    • ORTHOPEDIC FLUID DAMPER
    • 对流流体阻尼器
    • US20100191347A1
    • 2010-07-29
    • US12668507
    • 2008-07-09
    • Martin PuschJens NörthemannThomas Kettwig
    • Martin PuschJens NörthemannThomas Kettwig
    • A61F2/74A61B5/103A61F2/72
    • A61F2/68A61F2/60A61F2/64A61F2002/5006A61F2002/7635
    • The invention relates to an orthopaedic aid, in particular to a prosthesis (58) or orthosis comprising an orthopaedic fluid damper (10) with a displacement chamber (14) formed in a housing (12), with a piston (16) mounted in the displacement chamber (14), with a fluid reservoir for a fluid (20), with a return flow conduit (22) connecting the displacement chamber (14) to the fluid reservoir, with a valve (24) that can adopt an open position and a closed position, in which it at least partially closes the return flow conduit (22), and with a joint (72) that has a first branch (60) and a second branch (66), wherein the first branch (60) is connected to the housing (12) and the second branch (66) is connected to the piston (16). A device (84) is also provided for detecting a joint force (FB) acting on the joint, which device (84) is designed to bring the valve (24) to the closed position when the joint force (FB) exceeds a predefined threshold value. The invention also relates to a method for control of the aid and a fluid damper (10) fitted therein.
    • 本发明涉及矫形辅助装置,特别涉及一种假体(58)或矫形器,其包括具有形成在壳体(12)中的移位腔(14)的整形外科阻滞器(10),其中活塞(16)安装在 位移室(14),具有用于流体(20)的流体储存器,具有将排量室(14)连接到流体储存器的回流管道(22)与可以采用打开位置的阀(24) 关闭位置,其中至少部分地关闭回流管道(22),以及具有第一分支(60)和第二分支(66)的接头(72),其中第一分支(60)是 连接到壳体(12)并且第二分支(66)连接到活塞(16)。 还提供了一种用于检测作用在接头上的接合力(FB)的装置(84),该装置(84)被设计成当联合力(FB)超过预定阈值时使阀(24)进入关闭位置 值。 本发明还涉及一种用于控制助剂的方法和装配在其中的流体阻尼器(10)。
    • 2. 发明授权
    • Orthopedic fluid damper and method
    • 矫形器阻尼器及方法
    • US08317874B2
    • 2012-11-27
    • US12668507
    • 2008-07-09
    • Martin PuschJens NoerthemannThomas Kettwig
    • Martin PuschJens NoerthemannThomas Kettwig
    • A61F2/64A61F2/74A61F5/01
    • A61F2/68A61F2/60A61F2/64A61F2002/5006A61F2002/7635
    • The invention relates to an orthopaedic aid, in particular to a prosthesis (58) or orthosis comprising an orthopaedic fluid damper (10) with a displacement chamber (14) formed in a housing (12), with a piston (16) mounted in the displacement chamber (14), with a fluid reservoir for a fluid (20), with a return flow conduit (22) connecting the displacement chamber (14) to the fluid reservoir, with a valve (24) that can adopt an open position and a closed position, in which it at least partially closes the return flow conduit (22), and with a joint (72) that has a first branch (60) and a second branch (66), wherein the first branch (60) is connected to the housing (12) and the second branch (66) is connected to the piston (16). A device (84) is also provided for detecting a joint force (FB) acting on the joint, which device (84) is designed to bring the valve (24) to the closed position when the joint force (FB) exceeds a predefined threshold value. The invention also relates to a method for control of the aid and a fluid damper (10) fitted therein.
    • 本发明涉及矫形辅助装置,特别涉及一种假体(58)或矫形器,其包括具有形成在壳体(12)中的移位腔室(14)的矫形器流体阻尼器(10),活塞(16)安装在 位移室(14),具有用于流体(20)的流体储存器,具有将排量室(14)连接到流体储存器的回流管道(22)与可以采用打开位置的阀(24) 关闭位置,其中至少部分地关闭回流管道(22),以及具有第一分支(60)和第二分支(66)的接头(72),其中第一分支(60)是 连接到壳体(12)并且第二分支(66)连接到活塞(16)。 还提供了一种用于检测作用在接头上的接合力(FB)的装置(84),该装置(84)被设计成当联合力(FB)超过预定阈值时使阀(24)进入关闭位置 值。 本发明还涉及一种用于控制助剂的方法和装配在其中的流体阻尼器(10)。
    • 5. 发明授权
    • Sensor assembly for measuring forces and/or torques and use of said assembly
    • 用于测量力和/或扭矩的传感器组件以及所述组件的使用
    • US08464597B2
    • 2013-06-18
    • US12091854
    • 2006-10-12
    • Martin Pusch
    • Martin Pusch
    • G01D7/00A61B5/103
    • G01L5/161A61F2/60A61F2/76A61F2002/30359A61F2002/7635A61F2002/7645A61F2220/0033
    • A sensor assembly is provided for measuring forces and/or torques which are transmitted by means of a rigid transmitter having a first part and a second part. The sensor assembly includes a first connection, a second connection, electromechanical sensor elements, a first flange, a second flange and a plurality of struts. The first and second connections are connectable to the first and second parts of the transmitter, respectively. The electromechanical sensor elements convert mechanical parameters into electrical parameters. The first flange surrounds the first connection and originates at the first connection. The second flange is aligned substantially parallel to the first flange. The second connection is arranged on the second flange and has a first surface and a second surface. The plurality of struts are substantially perpendicular to the first flange and connect the first flange to the second flange. A gap is formed between the first flange, the second flange and the struts, and is larger than a width of the struts. The electromechanical sensor elements are designed for determining strains or compressions and are arranged next to the plurality of struts on at least one of the first and second surfaces of the second flange.
    • 传感器组件被提供用于测量通过具有第一部分和第二部分的刚性变送器传递的力和/或转矩。 传感器组件包括第一连接件,第二连接件,机电传感器元件,第一法兰,第二法兰和多个支柱。 第一和第二连接分别可连接到发射机的第一和第二部分。 机电传感器元件将机械参数转换为电气参数。 第一凸缘围绕第一连接并且起始于第一连接。 第二凸缘基本上平行于第一凸缘对准。 第二连接件布置在第二凸缘上并且具有第一表面和第二表面。 多个支柱基本上垂直于第一凸缘并将第一凸缘连接到第二凸缘。 在第一凸缘,第二凸缘和支柱之间形成间隙,并且大于支柱的宽度。 机电传感器元件设计用于确定应变或压缩,并且布置在第二凸缘的第一和第二表面中的至少一个上的多个支柱的旁边。
    • 9. 发明授权
    • Method for carrying out a functional analysis of an artificial extremity
    • 人造肢体功能分析方法
    • US08251928B2
    • 2012-08-28
    • US12091883
    • 2006-10-10
    • Martin Pusch
    • Martin Pusch
    • A61B5/103A61B5/117A61F2/80G01S7/40G12B13/00
    • A61F2/76A61F2/60A61F2002/30359A61F2002/5018A61F2002/7635A61F2002/764A61F2002/7645A61F2220/0033
    • A method for carrying out a functional analysis on a person equipped with an artificial extremity having adjustable settings. The method includes the steps of providing a sensor assembly configured as a replacement for a part of the artificial extremity and installing the sensor assembly in place of the part. Forces, accelerations and/or torques are then measured with the sensor assembly during use of the artificial extremity by the person and the settings of the artificial extremity are optimized based on these measurements. The sensor assembly is removed and the replaced part is installed back into the artificial extremity, while retaining the optimized settings. In one embodiment, the artificial extremity is a leg prosthesis having an artificial knee joint with a rotational adaptor mounted above it. The sensor assembly then replaces the rotational adaptor.
    • 对具有可调节设置的人造肢体的人进行功能分析的方法。 该方法包括以下步骤:提供被配置为代替人造肢体的一部分的传感器组件,并且安装传感器组件来代替部件。 然后在使用人造肢体的过程中用传感器组件测量力,加速度和/或扭矩,并且基于这些测量优化人造肢体的设置。 拆下传感器组件,并将更换的部件安装回人造肢体,同时保留优化设置。 在一个实施例中,人造肢体是具有人造膝关节的腿假体,其具有安装在其上方的旋转适配器。 传感器组件然后替换旋转适配器。