Systems and methods for vertical takeoff and/or landing
    21.
    发明授权
    Systems and methods for vertical takeoff and/or landing 有权
    用于垂直起飞和/或着陆的系统和方法

    公开(公告)号:US09085354B1

    公开(公告)日:2015-07-21

    申请号:US13868539

    申请日:2013-04-23

    Applicant: Google Inc.

    CPC classification number: B64C29/02 B64C17/00 B64C2201/088

    Abstract: Systems and methods for vertical takeoff and/or landing are disclosed herein. An aerial vehicle may include a first propulsion unit and a second propulsion each rotatably connected to a body. The aerial vehicle may include a first wing and a second wing each rotatably connected to the body. And the aerial vehicle may include a control system configured to: position the first propulsion unit, the second propulsion unit, the first wing, and the second wing; operate the first propulsion unit and the second propulsion unit; and rotate the first propulsion unit, the second propulsion unit, the first wing, and the second wing.

    Abstract translation: 本文公开了用于垂直起飞和/或着陆的系统和方法。 飞行器可以包括第一推进单元和第二推进件,每个推进单元和第二推进件可旋转地连接到主体。 飞行器可以包括第一翼和第二翼,每个翼可旋转地连接到主体。 并且该飞行器可以包括控制系统,其被配置为:定位第一推进单元,第二推进单元,第一翼和第二翼; 操作第一推进单元和第二推进单元; 并且旋转第一推进单元,第二推进单元,第一翼和第二翼。

    Spatial Modulation of Magnetic Particles in Vasculature by External Magnetic Field
    22.
    发明申请
    Spatial Modulation of Magnetic Particles in Vasculature by External Magnetic Field 有权
    通过外部磁场在脉管系统中的磁性颗粒的空间调制

    公开(公告)号:US20150112168A1

    公开(公告)日:2015-04-23

    申请号:US14061334

    申请日:2013-10-23

    Applicant: Google Inc.

    Abstract: A method for modulating a response signal includes introducing functionalized magnetic particles configured to interact with target analytes into the body, applying a magnetic field sufficient to draw the functionalized magnetic particles towards a surface of the lumen of subsurface vasculature closest to an internally or externally applied mask having a spatial arrangement, and detecting a response signal, which includes a background signal and an analyte response signal, transmitted from the subsurface vasculature. The analyte response signal related to interaction of the functionalized magnetic particles with the target analytes and is modulated with respect to the background signal due, at least in part, to the spatial arrangement of the mask. The target analytes may be non-invasively detected by differentiating the analyte response signal from the background signal due, at least in part, to the modulation of the analyte response signal.

    Abstract translation: 用于调节响应信号的方法包括引入配置成与目标分析物相互作用的功能化磁性颗粒进入体内,施加足以将官能化的磁性颗粒吸引到最靠近内部或外部施加的掩模的地下脉管系统的内腔表面的磁场 具有空间布置,并且检测包括从地下脉管系统发送的背景信号和分析物响应信号的响应信号。 分析物响应信号与功能化磁性颗粒与目标分析物的相互作用相关,并且相对于背景信号被调制,至少部分地由于掩模的空间排列。 目标分析物可以通过区分来自背景信号的分析物响应信号而被非侵入性地检测,至少部分地由于分析物响应信号的调制。

    Modulation of a Response Signal to Distinguish Between Analyte and Background Signals
    23.
    发明申请
    Modulation of a Response Signal to Distinguish Between Analyte and Background Signals 审中-公开
    响应信号的调制以区分分析物和背景信号

    公开(公告)号:US20150110721A1

    公开(公告)日:2015-04-23

    申请号:US14061251

    申请日:2013-10-23

    Applicant: Google Inc.

    Abstract: A method for modulating a response signal includes introducing functionalized particles into a lumen of subsurface vasculature, wherein the functionalized particles are configured to interact with one or more target analytes present in blood circulating in the subsurface vasculature; and non-invasively detecting the one or more target analytes. A response signal, which may include a background signal and an analyte response signal related to interaction of the functionalized particles with the one or more target analytes, is transmitted from the subsurface vasculature. A modulation configured to alter the response signal such that the analyte response signal is affected differently than the background signal may be applied to a portion of subsurface vasculature. Analyte detection may be achieved by differentiating the analyte response signal from the background signal.

    Abstract translation: 用于调节响应信号的方法包括将功能化颗粒引入地下脉管系统的内腔,其中功能化颗粒被配置为与存在于在地下脉管系统中循环的血液中的一种或多种目标分析物相互作用; 并非侵入性地检测一种或多种目标分析物。 响应信号可以包括背景信号和与功能化颗粒与一种或多种目标分析物的相互作用相关的分析物响应信号,从地下脉管系统传输。 被配置为改变响应信号以使得分析物响应信号受影响不同于背景信号的调制可以应用于一部分地下脉管系统。 可以通过将分析物响应信号与背景信号进行微分来实现分析物检测。

    Method and apparatus for themes using photo-active surface paint
    26.
    发明授权
    Method and apparatus for themes using photo-active surface paint 有权
    使用光活性表面涂料的主题方法和设备

    公开(公告)号:US09014417B1

    公开(公告)日:2015-04-21

    申请号:US13657348

    申请日:2012-10-22

    Applicant: Google Inc.

    CPC classification number: G06K9/00496 A63J1/02 A63J5/021 G03B17/54 G03B21/60

    Abstract: A method and apparatus for enabling themes using photo-active surface paint is described. The method may include capturing image data with at least a camera of a painted surface display system. The method may also include analyzing the image data to determine a real-world context proximate to a painted surface, wherein the surface is painted with a photo-active paint. The method may also include selecting a theme based on the determined real-world context. The method may also include generating a theme image, and driving a spatial electromagnetic modulator to emit electromagnetic stimulation in the form of the theme image to cause the photo active paint to display the theme image.

    Abstract translation: 描述了使用光活性表面涂料实现主题的方法和装置。 该方法可以包括用至少画面显示系统的照相机拍摄图像数据。 该方法还可以包括分析图像数据以确定接近于涂漆表面的真实世界背景,其中该表面涂上光活性涂料。 该方法还可以包括基于确定的真实世界环境来选择主题。 该方法还可以包括产生主题图像,以及驱动空间电磁调制器以主题图像的形式发射电磁刺激,以使照片活动涂料显示主题图像。

    Multi-part navigation process by an unmanned aerial vehicle for navigating to a medical situatiion
    27.
    发明授权
    Multi-part navigation process by an unmanned aerial vehicle for navigating to a medical situatiion 有权
    用于导航到医疗状况的无人机的多部分导航过程

    公开(公告)号:US08930044B1

    公开(公告)日:2015-01-06

    申请号:US13730317

    申请日:2012-12-28

    Applicant: Google Inc.

    Abstract: Embodiments described herein may relate to an unmanned aerial vehicle (UAV) navigating to a medical situation in order to provide medical support. An illustrative method involves a UAV (a) determining an approximate target location associated with a medical situation, (b) using a first navigation process to navigate the UAV to the approximate target location, where the first navigation process generates flight-control signals based on the approximate target location, (c) making a determination that the UAV is located at the approximate target location, and (d) in response to the determination that the UAV is located at the approximate target location, using a second navigation process to navigate the UAV to the medical situation, wherein the second navigation process generates flight-control signals based on real-time localization of the medical situation.

    Abstract translation: 本文描述的实施例可以涉及导航到医疗情况以便提供医疗支持的无人驾驶飞行器(UAV)。 一种说明性方法涉及UAV(a)确定与医疗状况相关联的近似目标位置,(b)使用第一导航过程将UAV导航到近似目标位置,其中第一导航过程基于 近似目标位置,(c)确定UAV位于大致目标位置,以及(d)响应于UAV位于大致目标位置的确定,使用第二导航处理来导航 无人机到医疗情况,其中第二导航过程基于医疗情况的实时定位产生飞行控制信号。

    Test Platform for Wrist-Mounted Physiologic Measurement Device
    28.
    发明申请
    Test Platform for Wrist-Mounted Physiologic Measurement Device 审中-公开
    手腕式生理测量装置测试平台

    公开(公告)号:US20140377731A1

    公开(公告)日:2014-12-25

    申请号:US13924246

    申请日:2013-06-21

    Applicant: Google Inc.

    CPC classification number: G09B23/303

    Abstract: A test model has an outer polymer layer that models an exterior surface of a human arm and includes at least a wrist portion, an inner polymer core that is at least partially surrounded by the outer polymer layer and extends into the wrist portion, and polymer tubing adjacent to the inner polymer core. The polymer tubing is at least partially surrounded by the outer polymer layer and extends into the wrist portion. The polymer tubing has a first fluid inlet and a first fluid outlet. The test model is substantially free of metallic and magnetic materials.

    Abstract translation: 测试模型具有外部聚合物层,其对人类臂的外表面进行建模,并且至少包括手腕部分,至少部分地被外部聚合物层包围并延伸到腕部的内部聚合物芯,以及聚合物管 邻近内聚合物芯。 聚合物管至少部分地被外聚合物层包围并延伸到腕部。 聚合物管道具有第一流体入口和第一流体出口。 测试模型基本上不含金属和磁性材料。

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