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    • 1. 发明申请
    • TOUCH SENSOR GESTURE RECOGNITION FOR OPERATION OF MOBILE DEVICES
    • 触摸传感器识别移动设备的操作
    • US20130268900A1
    • 2013-10-10
    • US13992699
    • 2010-12-22
    • Bran FerrenDavid BealW. Daniel HillisDimitri NegroponteJames Sarrett
    • Bran FerrenDavid BealW. Daniel HillisDimitri NegroponteJames Sarrett
    • G06F3/0488
    • G06F3/04883G06F3/0416G06F3/042G06F3/044G06F3/04845G06F3/04847G06F3/0485G06F3/0488G06F3/04886G06F2203/04106
    • Touch sensor gesture recognition for operation of mobile devices. An embodiment of a mobile device includes a touch sensor for the detection of gestures, the touch sensor including multiple sensor elements, and a processor, the processor to interpret the gestures detected by the touch sensor, where the mobile device divides the plurality of sensor elements into multiple zones, and the mobile device interprets the gestures based at least in part on which of the zones detects the gesture. An embodiment of a mobile device includes a touch sensor for the detection of gestures, the touch sensor including multiple sensor elements, and a processor, the processor to interpret the gestures detected by the touch sensor, where the processor is to identify one or more dominant actions for an active application or a function of the active application and is to choose a gesture identification algorithm from a plurality of gesture recognition algorithms based at least in part on identified one or more dominant actions, and is to determine a first intended action of a user based on an interpretation of a first gesture using the chosen gesture identification algorithm. An embodiment of a mobile device includes a touch sensor for the detection of gestures, the touch sensor including multiple sensor elements, and a processor, the processor to interpret the gestures detected by the touch sensor, and a mapping between touch sensor data and actual positions of user gestures, the mapping of data being generated by an artificial neural network, where the processor utilizes the mapping at least in part to interpret the gestures.
    • 触摸传感器手势识别,用于移动设备的操作。 移动设备的实施例包括用于检测手势的触摸传感器,包括多个传感器元件的触摸传感器和处理器,所述处理器解释由触摸传感器检测到的手势,其中移动设备将多个传感器元件 并且移动设备至少部分地基于哪个区域检测到手势来解释手势。 移动设备的实施例包括用于检测手势的触摸传感器,包括多个传感器元件的触摸传感器和处理器,处理器解释由触摸传感器检测到的手势,其中处理器将识别一个或多个显性 用于主动应用的动作或活动应用的功能,并且是至少部分地基于所识别的一个或多个主导动作从多个手势识别算法中选择手势识别算法,并且是确定第一预期动作 基于使用所选择的手势识别算法对第一手势的解释的用户。 移动设备的实施例包括用于检测手势的触摸传感器,包括多个传感器元件的触摸传感器和处理器,处理器解释由触摸传感器检测到的手势以及触摸传感器数据与实际位置之间的映射 用户手势的映射,由人造神经网络生成的数据的映射,其中处理器至少部分地使用映射来解释手势。
    • 2. 发明申请
    • INTRODUCER INCLUDING SHAPED DISTAL REGION
    • 介绍包括形状的远程区域
    • US20090105652A1
    • 2009-04-23
    • US12252975
    • 2008-10-16
    • James David BealEric Michael King
    • James David BealEric Michael King
    • A61B17/34
    • A61B17/3417A61B17/3421A61M25/0068A61M25/0668A61M29/00A61M2025/0687
    • An introducer for providing intravascular access to a patient is disclosed, and includes a dilator and sheath that are configured to prevent peelback, or “fishmouthing,” of the sheath during introducer advancement. In one embodiment, the introducer comprises a dilator including a distal tapered region, and a sheath including an inner bore that receives the dilator such that a portion of the tapered region of the dilator extends from the sheath distal end. A distal outer surface of the sheath includes a first curved portion defined by a first radius and extending proximally from the distal end of the sheath to a first end point, and a second curved portion defined by a second radius and extending proximally from the first end point to a second end point. Additionally, an interference fit is established between the dilator tapered region and the sheath distal end to further prevent sheath end deformation.
    • 公开了一种用于提供对患者的血管内通路的引导器,并且包括扩张器和护套,其被配置为防止在引入器前进期间护套的剥离或“捕鱼”。 在一个实施例中,引入器包括包括远端锥形区域的扩张器和包括接纳扩张器的内孔的护套,使得扩张器的锥形区域的一部分从护套远端延伸。 护套的远侧外表面包括由第一半径限定的第一弯曲部分,并且从护套的远端向近端延伸到第一端点,以及第二弯曲部分,其由第二半径限定并且从第一端部向近侧延伸 指向第二个终点。 此外,在扩张器锥形区域和护套远端之间建立过盈配合,以进一步防止护套端部变形。
    • 3. 发明授权
    • Quadricep isolation exercise apparatus
    • 四轮隔离运动器具
    • US06746382B2
    • 2004-06-08
    • US09947579
    • 2002-01-08
    • David Beal Harrison
    • David Beal Harrison
    • A63B2102
    • A63B23/0494A63B21/00061A63B21/00069A63B21/0421A63B21/0552A63B21/0557A63B21/154A63B21/4047A63B2208/0228A63B2210/50
    • A portable quadriceps exercise device includes at least one static arm; a pair of knee support pads connected to opposite respective sides of the at least one static arm; a foundation arm having a first end pivotally connected to a first end of the at least one static arm; and a stabilization arm having a first end pivotally connected to a second end of the at least one static arm. A handle is connected to the second end of the stabilization arm so that a user may grasp the handle to maintain stability of the device during use. The device may also include a pivot arm having a first end of the pivot arm being pivotally connected to the second end of the at least one static arm; a pair of ankle pads connected to opposite respective sides of the pivot arm adjacent the second end thereof; and at least one resistance element operatively connected between the at least one static arm and the pivot arm.
    • 便携式四头肌锻炼装置包括至少一个静止臂; 连接到所述至少一个静态臂的相对侧的一对膝部支撑垫; 基础臂具有枢转地连接到所述至少一个静止臂的第一端的第一端; 以及稳定臂,其具有枢转地连接到所述至少一个静止臂的第二端的第一端。 手柄连接到稳定臂的第二端,使得用户可以抓住手柄以在使用期间保持装置的稳定性。 所述装置还可以包括枢转臂,所述枢转臂具有枢转臂的第一端枢转地连接到所述至少一个静止臂的第二端; 一对踝垫,其连接到所述枢转臂的与其第二端相邻的相对侧; 以及可操作地连接在所述至少一个静止臂和所述枢转臂之间的至少一个电阻元件。
    • 6. 发明申请
    • TOUCH SENSOR GESTURE RECOGNITION FOR OPERATION OF MOBILE DEVICES
    • 触摸传感器识别移动设备的操作
    • US20170068440A1
    • 2017-03-09
    • US15352474
    • 2016-11-15
    • Bran FERRENDavid BEALW. Daniel HILLISDimitri NEGROPONTEJames SARRETT
    • Bran FERRENDavid BEALW. Daniel HILLISDimitri NEGROPONTEJames SARRETT
    • G06F3/0488G06F3/042G06F3/0485G06F3/044G06F3/0484
    • Touch sensor gesture recognition for operation of mobile devices. An embodiment of a mobile device includes a touch sensor for the detection of gestures, the touch sensor including multiple sensor elements, and a processor, the processor to interpret the gestures detected by the touch sensor, where the mobile device divides the plurality of sensor elements into multiple zones, and the mobile device interprets the gestures based at least in part on which of the zones detects the gesture. An embodiment of a mobile device includes a touch sensor for the detection of gestures, the touch sensor including multiple sensor elements, and a processor, the processor to interpret the gestures detected by the touch sensor, where the processor is to identify one or more dominant actions for an active application or a function of the active application and is to choose a gesture identification algorithm from a plurality of gesture recognition algorithms based at least in part on identified one or more dominant actions, and is to determine a first intended action of a user based on an interpretation of a first gesture using the chosen gesture identification algorithm. An embodiment of a mobile device includes a touch sensor for the detection of gestures, the touch sensor including multiple sensor elements, and a processor, the processor to interpret the gestures detected by the touch sensor, and a mapping between touch sensor data and actual positions of user gestures, the mapping of data being generated by an artificial neural network, where the processor utilizes the mapping at least in part to interpret the gestures.
    • 触摸传感器手势识别,用于移动设备的操作。 移动设备的实施例包括用于检测手势的触摸传感器,包括多个传感器元件的触摸传感器和处理器,所述处理器解释由触摸传感器检测到的手势,其中移动设备将多个传感器元件 并且移动设备至少部分地基于哪个区域检测到手势来解释手势。 移动设备的实施例包括用于检测手势的触摸传感器,包括多个传感器元件的触摸传感器和处理器,处理器解释由触摸传感器检测到的手势,其中处理器将识别一个或多个显性 用于主动应用的动作或活动应用的功能,并且是至少部分地基于所识别的一个或多个主导动作从多个手势识别算法中选择手势识别算法,并且是确定第一预期动作 基于使用所选择的手势识别算法对第一手势的解释的用户。 移动设备的实施例包括用于检测手势的触摸传感器,包括多个传感器元件的触摸传感器和处理器,处理器解释由触摸传感器检测到的手势以及触摸传感器数据与实际位置之间的映射 用户手势的映射,由人造神经网络生成的数据的映射,其中处理器至少部分地使用映射来解释手势。