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    • 81. 发明授权
    • Enhanced intraluminal flow measurement system using pulsed signals
    • 增强管腔内流量测量系统使用脉冲信号
    • US08142360B2
    • 2012-03-27
    • US12105012
    • 2008-04-17
    • George W. KeilmanLeigh BartlettTimothy Johnson
    • George W. KeilmanLeigh BartlettTimothy Johnson
    • A61B8/06
    • A61B5/026A61B5/0031A61B5/0265A61B5/6846A61B8/06A61B8/12
    • An enhanced intraluminal flow measurement system and method is conducive for a low-power ultrasonic system that can use continuous-wave (CW) Doppler sensing and wireless RF telemetry. Applications include measurement of blood flow in situ in living organisms. Implementations include an extraluminal component located outside of a body, such as a human or animal body, containing a lumen. The extraluminal component can be wirelessly coupled via an RF magnetic field or other RF field to an implantable intraluminal component. The intraluminal component (i.e. implant) is implanted inside of the lumen of the body such as a heart or elsewhere in a vasculature (such as in a dialysis shunt). The intraluminal component can telemeter, via RF electromagnetic signals, flow data directly out of the body housing the intraluminal component to be received by the extraluminal component.
    • 增强的管腔内流量测量系统和方法有利于可以使用连续波(CW)多普勒感测和无线RF遥测的低功率超声波系统。 应用包括在生物体内原位测量血流。 实施方案包括位于身体外部的外阴部件,例如包含内腔的人体或动物体。 管腔内部件可以经由RF磁场或其他RF场无线耦合到可植入的管腔内部件。 管腔内成分(即植入物)植入体内的腔内,例如心脏或其它脉管系统(如透析分流)中。 管腔内成分可以通过射频电磁信号将流量数据直接传送出外壳体内的腔内部件,以便由腔内部件接收。
    • 85. 发明申请
    • MICROPHONE LINE BASED DETECTION OF HEADSET PLUG REMOVAL
    • 基于麦克风线路检测头部插头去除
    • US20100272252A1
    • 2010-10-28
    • US12428415
    • 2009-04-22
    • Timothy JohnsonScott MullinsHugo Fiennes
    • Timothy JohnsonScott MullinsHugo Fiennes
    • H04M1/00
    • H04M1/6058H04M1/05H04R1/1041
    • Embodiments of the invention include methods, apparatus, systems and means for distinguishing between microphone line signals resulting from: actuation of a microphone button of a headset plugged into a telephone device jack, and removal of the headset plug form the jack. During a telephone call, a first signal can be detected on a microphone line of a headset jack to indicate whether a microphone button of the headset is actuated. Also, while the headset plug is being disconnected from the jack, a transition on the microphone line can be detected, from a second signal indicating that the microphone is being disconnected, to a third signal indicating that the microphone button is actuated. Consequently, to avoid erroneously hanging up a call, transitions to the third signal when removing the plug form the jack can be ignored and the call can be maintained. Other embodiments are also described and claimed.
    • 本发明的实施例包括用于区分麦克风线路信号的方法,装置,系统和装置,所述麦克风线路信号是:插入到电话设备插孔中的头戴式耳机的麦克风按钮的致动以及从插座移除耳机插头。 在电话呼叫期间,可以在耳机插孔的麦克风线上检测第一信号,以指示耳机的麦克风按钮是否被致动。 此外,当耳机插头与插孔断开连接时,可以从指示麦克风被断开的第二信号检测到麦克风线上的转换到指示麦克风按钮被致动的第三信号。 因此,为了避免错误地挂断呼叫,可以忽略从插头拔出插头时转换到第三信号,并且可以保持呼叫。 还描述和要求保护其他实施例。
    • 86. 发明申请
    • ADAPTER ACCESSORY FOR ELECTRONIC DEVICE SHARING
    • 适用于电子设备共享的附件
    • US20100128900A1
    • 2010-05-27
    • US12276226
    • 2008-11-21
    • Timothy Johnson
    • Timothy Johnson
    • H03G5/00
    • H03G3/001
    • Users with headsets may share an electronic device such as a portable computer or handheld device. The electronic device may have a connector such as an audio jack for receiving mating audio plugs on headsets. During normal operation with a single user, audio signals may be conveyed through the audio jack to the headset of the single user. When more than one user wishes to share the electronic device, an adapter accessory may be inserted into the audio jack of the electronic device. The headset of each user may be plugged into mating audio jacks in the adapter accessory. Circuitry in the adapter accessory may receive and process user input from each of the users. User input may be used to make local audio adjustments in the adapter accessory. User input may also be provided from the adapter accessory to the electronic device for processing.
    • 具有耳机的用户可以共享诸如便携式计算机或手持设备的电子设备。 电子设备可以具有诸如音频插孔的连接器,用于在耳机上接收配合的音频插头。 在单个用户正常操作期间,音频信号可以通过音频插孔传送到单个用户的耳机。 当多于一个用户希望共享电子设备时,可将适配器附件插入到电子设备的音频插孔中。 每个用户的耳机可以插入到适配器附件中的配对音频插孔中。 适配器附件中的电路可以接收和处理来自每个用户的用户输入。 用户输入可用于在适配器附件中进行本地音频调节。 用户输入也可以从适配器附件提供给电子设备进行处理。
    • 89. 发明申请
    • ENHANCED PRESSURE SENSING SYSTEM AND METHOD
    • 增强压力传感系统及方法
    • US20090270740A1
    • 2009-10-29
    • US12109290
    • 2008-04-24
    • George W. KeilmanTimothy Johnson
    • George W. KeilmanTimothy Johnson
    • A61B5/0215
    • A61B5/0215A61B2562/0247A61B2562/028
    • An enhanced pressure sensing system and method use an external diaphragm to address issues involved with accurate and prolonged measurement of fluid pressure, such as of blood flowing in a vascular structure. Some external diaphragms include a metallized layer or other highly impermeable layer to furnish a high degree of seal at least near to hermetic grade. As temperature of the intermediary fluid changes, the external diaphragm is able to move in a direction that minimizes differential pressure across the external diaphragm over an operational temperature range thereby reducing pressure change of the intermediary fluid due to change in temperature of the intermediary fluid. Relatively smooth hydrodynamic surfaces can be used as well as a bi-layer construction.
    • 增强的压力感测系统和方法使用外部膜片来解决涉及流体压力的精确和长期测量的问题,例如在血管结构中流动的血液。 一些外部隔膜包括金属化层或其它高度不可渗透的层,以至少接近密封级别提供高密度的密封。 当中间流体的温度变化时,外部隔膜能够在使操作温度范围内使外部隔膜两端的差压最小化的方向上移动,从而减少由于中间流体的温度变化引起的中间流体的压力变化。 可以使用相对平滑的流体动力学表面以及双层结构。
    • 90. 发明申请
    • ENHANCED INTRALUMINAL FLOW MEASUREMENT SYSTEM USING REFERENCE AND SHIFTED SIGNALS
    • 使用参考和转换信号的增强的内部流量测量系统
    • US20090264764A1
    • 2009-10-22
    • US12104976
    • 2008-04-17
    • George W. KeilmanLeigh BartlettTimothy Johnson
    • George W. KeilmanLeigh BartlettTimothy Johnson
    • A61B8/06
    • A61B5/026A61B5/0031A61B5/0265A61B5/6846A61B8/06A61B8/12A61B8/4472
    • An enhanced intraluminal flow measurement system and method is conducive for a low-power ultrasonic system that can use continuous-wave (CW) Doppler sensing and wireless RF telemetry. Applications include measurement of blood flow in situ in living organisms. Implementations include an extraluminal component located outside of a body, such as a human or animal body, containing a lumen. The extraluminal component can be wirelessly coupled via an RF magnetic field or other RF field to an implantable intraluminal component. The intraluminal component (i.e. implant) is implanted inside of the lumen of the body such as a heart or elsewhere in a vasculature (such as in a dialysis shunt). The intraluminal component can telemeter, via RF electromagnetic signals, flow data directly out of the body housing the intraluminal component to be received by the extraluminal component.
    • 增强的管腔内流量测量系统和方法有利于可以使用连续波(CW)多普勒感测和无线RF遥测的低功率超声波系统。 应用包括在生物体内原位测量血流。 实施方案包括位于身体外部的外阴部件,例如包含内腔的人体或动物体。 管腔内部件可以经由RF磁场或其他RF场无线耦合到可植入的管腔内部件。 管腔内成分(即植入物)植入体内的腔内,例如心脏或其它脉管系统(如透析分流)中。 管腔内成分可以通过射频电磁信号将流量数据直接传送出外壳体内的腔内部件,以便由腔内部件接收。