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    • 1. 发明申请
    • Driveable catheter systems and methods
    • 可驱动的导管系统和方法
    • US20060084911A1
    • 2006-04-20
    • US11254234
    • 2005-10-18
    • W. BelefJohn ReamThomas MooreSteven RoeJeffrey JonesNiyazi BeyhanArcadi Elbert
    • W. BelefJohn ReamThomas MooreSteven RoeJeffrey JonesNiyazi BeyhanArcadi Elbert
    • A61M31/00
    • A61B8/12A61B1/0016A61B8/4209A61B8/4461A61B46/10A61M25/0113A61M2025/0008
    • The system (2) includes a catheter drive unit (22) and a catheter (24) extending therefrom movably mounted to a catheter drive sled (26). The catheter drive unit rotates and translates the catheter core (34) within the catheter sheath (36). The sled has a serrated, conical drive unit interface (82), with a bag-piercing tip (86) mateable with a translator drive output (92) so that a sterile drape (112) enclosing the catheter drive unit is automatically pierced when the catheter drive unit is mounted to the sled. A control unit (6) is spaced apart from the catheter drive unit and provides power and commands to the catheter drive unit and receives information and data from the catheter drive unit. The rotator and translator drive motors (54, 90) are operated from both the control unit and the catheter drive unit. Both the control unit and catheter drive unit have translation displacement displays (10, 30).
    • 系统(2)包括导管驱动单元(22)和从其可移动地安装到导管驱动滑架(26)上的导管(24)。 导管驱动单元旋转并平移导管芯(34)在导管套(36)内。 滑板具有锯齿状的锥形驱动单元接口(82),具有与翻译器驱动输出(92)配合的穿刺尖端(86),使得当包括导管驱动单元的无菌悬垂(112)自动穿透时 导管驱动单元安装在滑轨上。 控制单元(6)与导管驱动单元间隔开,并向导管驱动单元提供电力和命令,并从导管驱动单元接收信息和数据。 旋转器和转换器驱动马达(54,90)从控制单元和导管驱动单元两者操作。 控制单元和导管驱动单元都具有平移位移显示器(10,30)。
    • 2. 发明申请
    • Touch sensor control devices
    • 触摸传感器控制装置
    • US20080238879A1
    • 2008-10-02
    • US11975611
    • 2007-10-18
    • Denny JaegerKenneth M. TwainJohn Ream
    • Denny JaegerKenneth M. TwainJohn Ream
    • G06F3/041
    • G06F3/0433G06F3/03545G06F3/044G06F3/046
    • The invention provides mechanical devices to enhance the input process for touch screen devices. Fader tracks with or without fader caps, rotary and fixed knobs, and joysticks may be removably adhered to a touch screen and used to emulate their respective functions, using software interpretation of the touch detections provoked by the devices to carry out the emulations. The devices are inexpensive and simple, and the touch screen and associated software provide the function and feel of electromechanical controllers that are far more expensive and difficult to connect and maintain. The devices may be provided as components on a crack-and-peel sheet. For fixed knobs, the software application accepts initial inputs and determines the location on the touch screen, and also interprets the geometry of the input strokes as commands for selected controller emulations, such as joystick, fader, knob, or mouse. The invention also provides a touch sensor controller having a longitudinal web that incorporates touch sensor electrodes and conductors and emulates a fader controller. The invention further provides a flexible track controller mounted at the periphery of a touch screen and extendable thereover to emulate a fader controller. The flexible track may be motor driven.
    • 本发明提供了用于增强触摸屏设备的输入过程的机械装置。 具有或不具有推子盖,推动旋钮和固定旋钮的推子轨道以及操纵杆可以可移除地粘附到触摸屏上并用于模拟它们各自的功能,使用由设备引发的触摸检测的软件解释来执行仿真。 这些设备便宜且简单,并且触摸屏和相关软件提供了更昂贵和难以连接和维护的机电控制器的功能和感觉。 这些装置可以作为裂纹剥离片上的部件提供。 对于固定旋钮,软件应用程序接受初始输入并确定触摸屏上的位置,并将输入笔画的几何形状解释为所选控制器仿真(如操纵杆,推子,旋钮或鼠标)的命令。 本发明还提供一种具有纵向腹板的触摸传感器控制器,其包括触摸传感器电极和导体并且仿真推子控制器。 本发明还提供了一种安装在触摸屏周边的柔性轨道控制器,并可在其上延伸以模拟推子控制器。 柔性轨道可能是电机驱动的。
    • 3. 发明授权
    • Touch sensor control devices
    • 触摸传感器控制装置
    • US08199114B1
    • 2012-06-12
    • US09670610
    • 2000-09-26
    • Denny JaegerKenneth M. TwainJohn Ream
    • Denny JaegerKenneth M. TwainJohn Ream
    • G06F3/041G06F3/033G09G5/00G06K11/06
    • G06F3/0433G06F3/03545G06F3/044G06F3/046G06F19/00
    • The invention provides mechanical devices to enhance the input process for touch screen devices. Fader tracks with or without fader caps, rotary and fixed knobs, and joysticks may be removably adhered to a touch screen and used to emulate their respective functions, using software interpretation of the touch detections provoked by the devices to carry out the emulations. The devices are inexpensive and simple, and the touch screen and associated software provide the function and feel of electromechanical controllers that are far more expensive and difficult to connect and maintain. The devices may be provided as components on a crack-and-peel sheet. For fixed knobs, the software application accepts initial inputs and determines the location on the touch screen, and also interprets the geometry of the input strokes as commands for selected controller emulations, such as joystick, fader, knob, or mouse. The invention also provides a touch sensor controller having a longitudinal web that incorporates touch sensor electrodes and conductors and emulates a fader controller. The invention further provides a flexible track controller mounted at the periphery of a touch screen and extendable thereover to emulate a fader controller. The flexible track may be motor driven.
    • 本发明提供了用于增强触摸屏设备的输入过程的机械装置。 具有或不具有推子盖,推动旋钮和固定旋钮的推子轨道以及操纵杆可以可移除地粘附到触摸屏上并用于模拟它们各自的功能,使用由设备引发的触摸检测的软件解释来执行仿真。 这些设备便宜且简单,并且触摸屏和相关软件提供了更昂贵和难以连接和维护的机电控制器的功能和感觉。 这些装置可以作为裂纹剥离片上的部件提供。 对于固定旋钮,软件应用程序接受初始输入并确定触摸屏上的位置,并将输入笔画的几何形状解释为所选控制器仿真(如操纵杆,推子,旋钮或鼠标)的命令。 本发明还提供一种具有纵向腹板的触摸传感器控制器,其包括触摸传感器电极和导体并且仿真推子控制器。 本发明还提供了一种安装在触摸屏周边的柔性轨道控制器,并可在其上延伸以模拟推子控制器。 柔性轨道可能是电机驱动的。