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    • 10. 发明授权
    • Injection device with an end of dose feedback mechanism
    • 注射装置结束剂量反馈机制
    • US09457154B2
    • 2016-10-04
    • US11813389
    • 2006-01-20
    • Claus Schmidt MollerBo RadmerLars Ulrik NielsenChristian Peter Engaard
    • Claus Schmidt MollerBo RadmerLars Ulrik NielsenChristian Peter Engaard
    • A61M5/315A61M5/24A61M5/20
    • A61M5/3157A61M5/20A61M5/24A61M5/31535A61M5/3155A61M5/31551A61M5/31561A61M5/31585A61M2205/581A61M2205/582
    • An injection device with a dose delivering mechanism being adapted to provide a non-visual, e.g. audible and/or tactile, feedback signal when a set dose has been at least substantially injected. A first and a second part of the injection device are adapted to perform a relative rotational movement with respect to each other. The relative rotational movement causes at least two parts of the injection device to abut or engage, and this abutment or engagement causes the non-visual feedback signal to be generated. A very distinct and precise feedback is provided as compared to prior art axial solutions because the generation of the feedback signal is initiated by the relative rotational movement. Feedback signal may be generated by a change in a rotational velocity of at least one part, e.g. by changing the pitch of a threaded portion or by engaging a non-rotating part and a rotating part, thereby causing the non-rotating part to start rotating. May alternatively be generated by building up and releasing a tension. The injection device is suitable for injecting insulin.
    • 具有剂量递送机构的注射装置适于提供非视觉的,例如, 当至少基本上注入了设定的剂量时,可听和/或触觉的反馈信号。 注射装置的第一和第二部分适于执行相对于彼此的相对旋转运动。 相对旋转运动导致注射装置的至少两个部分邻接或接合,并且该邻接或接合导致产生非视觉反馈信号。 与现有技术的轴向解决方案相比,提供了非常独特和精确的反馈,因为反馈信号的产生是由相对旋转运动引起的。 反馈信号可以通过至少一个部分的旋转速度的变化来产生,例如, 通过改变螺纹部分的间距或通过接合非旋转部分和旋转部分,从而使非旋转部分开始旋转。 或者可以通过建立和释放紧张而产生。 注射装置适用于注射胰岛素。