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    • 7. 发明申请
    • USE OF A TAG AND READER ANTENNA FOR A SIMULATED THEREMIN EFFECT
    • 使用标签和阅读器天线进行模拟的效果
    • WO2015103035A1
    • 2015-07-09
    • PCT/US2014/072122
    • 2014-12-23
    • GOOGLE INC.
    • PLETCHER, NathanOTIS, Brian
    • G06K17/00G06K19/077
    • G06K7/10217A61B5/6821A61B2560/0214A61B2562/08G06K7/10128G06K7/10316G06K7/10366
    • The present disclosure provides methods and apparatuses for providing an audible feedback based on a proximity or a link quality between an external reader and a tag. The external reader transmits power to the tag with a radio frequency electromagnetic signal. The tag may rectify the radio frequency electromagnetic signal and create a rectified voltage. This rectified voltage may be used to power various components of the tag. Once it receives power from the reader, the tag may communicate information back to the external reader. The information communicated back to the reader is communicated by modulating an antenna impedance of the tag. By modulating the impedance, the tag will backscatter radiation transmitted by the reader. The reader is able to create an audio output based on determining the proximity or link quality from the reader to the tag based on the backscatter radiation it receives from the tag.
    • 本公开提供了用于基于外部读取器和标签之间的接近度或链接质量来提供可听反馈的方法和装置。 外部读取器通过射频电磁信号向标签发送电力。 标签可以纠正射频电磁信号,并产生整流电压。 该整流电压可用于为标签的各种部件供电。 一旦从读取器接收电力,标签可以将信息传送回外部读取器。 通过调制标签的天线阻抗来传送回到读取器的信息。 通过调制阻抗,标签将反向散射读取器发射的辐射。 读取器能够基于从标签接收的反向散射辐射确定从读取器到标签的接近度或链接质量来创建音频输出。
    • 8. 发明申请
    • BIOPSY SAMPLER AND SAMPLE COLLECTOR
    • 生物采样器和样品收集器
    • WO2015056228A1
    • 2015-04-23
    • PCT/IB2014/065396
    • 2014-10-17
    • SNPSHOT TRUSTEE LIMITED
    • GARDNER, Michael StuartBLADEN, Roy Victor
    • A01K11/00A61B10/02
    • A61B10/0266A01K11/00A01K11/003A01K11/006A61B10/0096A61B10/0283A61B2010/0208A61B2010/0225A61B2090/081A61B2503/40A61B2562/08
    • A biopsy sampler comprising a penetration zone for receiving a part of an organism to be sampled, a ram situated at a first side of the penetration zone able to be actuated to move along a path between a withdrawn position and an advanced position, a sample collector that can cut a biopsy sample from tissue interposed in the penetration zone, and a container that can receive the sample collector, the sample collector and the container being initially located on opposite sides of the penetration zone, a disposable shield initially located between the ram (with the ram in the withdrawn position) and the penetration zone, advance action of the ram from the withdrawn to the advanced position bringing together the sample collector and container at side of the penetration zone away from the ram, and bringing the disposable shield into the penetration zone, withdrawal action of the ram from the advanced position to the withdrawn position withdrawing the disposable shield to the first side of the penetration zone, leaving the tissue free to leave the penetration zone, such that in use in collecting a sample the shield contacts tissue surfaces and the ram does not contact tissue surfaces.
    • 活检取样器,其包括用于接收待采样的生物体的一部分的穿透区域,位于所述穿透区域的第一侧处的活塞,其能够被致动以沿着撤回位置和前进位置之间的路径移动,所述样本收集器 其可以从夹在穿透区域中的组织切割活检样品,以及容器,其可以容纳样品收集器,样品收集器和容器最初位于穿透区域的相对侧上,初始位于冲头之间的一次性屏蔽 使冲头处于撤回位置)和穿透区域,将冲头从撤回到先进位置的推进作用将采样器和容器在穿透区域的一侧远离冲头放置在一起,并将一次性屏蔽件带入 穿透区域,冲头从先进位置到退出位置的抽出动作将一次性屏蔽件撤回到第一侧 穿透区域,使组织自由离开穿透区域,使得在用于收集样品时,屏蔽件接触组织表面,并且压头不接触组织表面。
    • 10. 发明申请
    • SYSTEM FOR MONITORING PHYSICAL PERFORMANCE OF USERS
    • 用于监测用户物理性能的系统
    • WO2014174477A1
    • 2014-10-30
    • PCT/IB2014/060975
    • 2014-04-24
    • ERGOTEST INNOVATION AS
    • OLE JAKOB, Olsen
    • A61B5/00A61B5/11A63B24/00H04J3/06A61B5/22
    • A61B5/0024A61B5/1118A61B5/222A61B2562/08G06F19/00G06F19/3481G06Q10/063G06Q50/22H04J3/0635H04M1/72527H04M1/7253
    • A system for monitoring physical performance of users comprising a central unit (100) connected to a plurality of peripheral units (200; 700), each one of which is provided with a respective sensor (300) configured to acquire at least one physical and/or physiological parameter, the system being characterised in that each peripheral unit (200; 700) comprises a microprocessor (210), including a time stamp counter configured to generate time stamps, that is connected to digital data acquisition circuitry configured to be connected to the respective sensor (300) for outputting digital data related to at least one acquisition of the respective sensor (300), each peripheral unit (200; 700) being configured to send said digital data, along with a time stamp generated by its time stamp counter at the same time as said at least one acquisition by the sensor, to the central unit (100), the central unit (100) including a synchronisation generator (120) configured to synchronise each peripheral unit (200; 700) by sending to the latter an initial synchronisation signal and one or more subsequent synchronisation signals on a respective synchronisation line (430), whereby the connection (400) between each peripheral unit (200; 700) and the central unit (100) include a respective synchronisation line (430), each subsequent synchronisation signal being sent to each peripheral unit (200; 700) when a drifting of its time stamp counter from the preceding either initial or subsequent synchronisation signal has reached a percentage of a maximum synchronisation deviation ΔT.
    • 一种用于监视用户的物理性能的系统,包括连接到多个外围单元(200; 700)的中央单元(100),每个外围单元(200; 700)中的每一个设置有相应的传感器(300),其被配置为获取至少一个物理和/ 该系统的特征在于,每个外围单元(200; 700)包括微处理器(210),其包括被配置为生成时间戳的时间戳计数器,其被连接到数字数据采集电路,该数字数据采集电路被配置为连接到 相应的传感器(300),用于输出与相应传感器(300)的至少一次采集有关的数字数据,每个外围单元(200; 700)被配置为发送所述数字数据以及由其时间戳计数器产生的时间戳 在所述传感器至少一次采集所述中央单元(100)的同时,所述中央单元(100)包括同步发生器(120),其被配置为使每个外围设备 硝基(200; 700)通过在相应的同步线(430)向后者发送初始同步信号和一个或多个后续同步信号,由此每个外围单元(200,700)与中央单元(100)之间的连接(400)包括 相应的同步线(430),当其先前的初始或后续同步信号的时间戳计数器的漂移已达到最大同步偏差百分比&Dgr时,每个后续同步信号被发送到每个外围单元(200; 700) ;吨。