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    • 1. 发明授权
    • Mobile postural screening method and system
    • 移动姿势筛选方法和系统
    • US08721567B2
    • 2014-05-13
    • US13336123
    • 2011-12-23
    • Joseph Ralph Ferrantelli
    • Joseph Ralph Ferrantelli
    • A61B5/117
    • A61B5/1116A61B5/1128A61B5/6898A61B2562/0219
    • A mobile, hand-held communication device with a display screen and a camera is programmed to perform a postural screening method. An image of a patient is acquired on the display screen having an array of pixels. A pixel to distance ratio of the displayed image is determined. A postural displacement of the patient in the displayed image is calculated using the determined ratio. A gyroscope, accelerometer and/or a level of the device is used to level the camera before capturing the image with the camera. Reference lines are overlaid on the display screen and the image to enable alignment of the image. A reference line on the display screen is used for normalizing a known distance in the aligned image to a reference distance of a known number of pixels on the screen for determining the ratio.
    • 具有显示屏和相机的移动手持通信设备被编程为执行姿势筛选方法。 在具有像素阵列的显示屏上获取患者的图像。 确定显示图像的像素与距离比。 使用确定的比例计算显示图像中的患者的姿势位移。 在使用相机拍摄图像之前,使用陀螺仪,加速度计和/或设备级别对相机进行调平。 参考线重叠在显示屏幕和图像上以使图像对准。 显示屏幕上的参考线用于将对准图像中的已知距离归一化为屏幕上已知数量像素的参考距离,以确定该比例。
    • 3. 发明申请
    • MOBILE POSTURAL SCREENING METHOD AND SYSTEM
    • 手机后视屏幕方法与系统
    • US20120165648A1
    • 2012-06-28
    • US13336123
    • 2011-12-23
    • Joseph Ralph Ferrantelli
    • Joseph Ralph Ferrantelli
    • A61B6/00
    • A61B5/1116A61B5/1128A61B5/6898A61B2562/0219
    • A mobile, hand-held communication device with a display screen and a camera is programmed to perform a postural screening method. An image of a patient is acquired on the display screen having an array of pixels. A pixel to distance ratio of the displayed image is determined. A postural displacement of the patient in the displayed image is calculated using the determined ratio. A gyroscope, accelerometer and/or a level of the device is used to level the camera before capturing the image with the camera. Reference lines are overlaid on the display screen and the image to enable alignment of the image. A reference line on the display screen is used for normalizing a known distance in the aligned image to a reference distance of a known number of pixels on the screen for determining the ratio.
    • 具有显示屏和相机的移动手持通信设备被编程为执行姿势筛选方法。 在具有像素阵列的显示屏上获取患者的图像。 确定显示图像的像素与距离比。 使用确定的比例计算显示图像中的患者的姿势位移。 在使用相机拍摄图像之前,使用陀螺仪,加速度计和/或设备级别对相机进行调平。 参考线重叠在显示屏幕和图像上以使图像对准。 显示屏幕上的参考线用于将对准图像中的已知距离归一化为屏幕上已知数量像素的参考距离,以确定该比例。
    • 5. 发明授权
    • Multiple-link water detection unit and system
    • 多链路水检测单元和系统
    • US07880623B2
    • 2011-02-01
    • US11671634
    • 2007-02-06
    • Joseph Ralph McGintyDerek Phelps Gardner
    • Joseph Ralph McGintyDerek Phelps Gardner
    • G08B21/00
    • G01M3/165
    • A multiple-link leak detector apparatus to be used on a floor or other substantially flat surface and in conjunction with an appliance, plumbing fixture or other potential water leak source. The leak detector apparatus includes a multiple-link sensor having two or more bodies linked together, each link body having at least two spaced apart sensor elements, and an electronics module associated with the sensor elements. The multiple-link sensor is shaped and dimensioned to rest atop the floor and can be positioned beside or around an appliance, plumbing fixture or other potential water leak source. The sensor elements extend longitudinally along the link body, wherein the sensor elements are operative to sense the presence of water on the floor. Finally, the electronics module is coupled to the sensor elements to trigger an alert in response to the presence of water on the floor.
    • 一种多连杆式泄漏检测装置,用于地板或其他基本平坦的表面上,并与器具,卫生设备或其他潜在的漏水源结合使用。 泄漏检测器装置包括具有连接在一起的两个或多个主体的多连杆传感器,每个连杆主体具有至少两个间隔开的传感器元件,以及与传感器元件相关联的电子模块。 多连杆传感器的形状和尺寸被设计成搁置在地板的顶部,并且可以位于器具,管道固定装置或其它潜在的泄漏源旁边或周围。 传感器元件沿着连杆主体纵向延伸,其中传感器元件可操作以感测地板上的水的存在。 最后,电子模块耦合到传感器元件以响应于地板上的水的存在而触发警报。
    • 6. 发明授权
    • Bar code symbol scanning system employing time-division multiplexed laser scanning and signal processing to avoid optical cross-talk and other unwanted light interference
    • US07510118B2
    • 2009-03-31
    • US11285752
    • 2005-11-21
    • Joseph RalphMark Lucera
    • Joseph RalphMark Lucera
    • G06K7/10
    • G06K7/10693A47F9/04G06K7/10623G06Q20/20G06Q20/201G06Q20/202G06Q20/203G06Q20/204G06Q30/02G07G1/0045G07G1/0054
    • A laser scanning system that employs synchronous time-division-multiplexed laser scanning operations and signal processing operations (for bar code detection). A plurality of successive non-overlapping time slots are defined and logically assigned to a unique laser scanning beam and corresponding photosensor. During a given time slot, the laser scanning beam logically assigned thereto is selectively generated (or selectively projected) into the scanning volume while generation (or projection) of the other laser scanning beam is disabled. Moreover, during the given time slot, the photosensor logically assigned thereto is operably coupled to signal processing circuitry that performs bar code detection operations on the data signals derived therefrom while the other photosensor is operably decoupled from such signal processing circuitry. The frequency of time slots logically assigned to a given laser scanning beam and corresponding photosensor is preferably greater than at least two times the highest frequency component expected in the scan data signal received at the photosensor. In other embodiments, the time slots logically assigned to a given laser scanning beam and corresponding photosensor correspond to scanning planes (or scanning plane groups) generated by the given laser scanning beam during revolution of at least one rotating polygonal mirror. In the preferred embodiment, such synchronous time-division-multiplexed laser scanning operations and signal processing operations (for bar code detection) are embodied in a bioptical laser scanning system comprising a plurality of laser scanning stations, each of which produces a plurality of groups of quasi-orthogonal laser scanning planes that are projected within predetermined regions of space contained within a 3-D scanning volume defined between the bottom and side-scanning windows of the system.
    • 8. 发明授权
    • Method and apparatus for transmitting electromagnetic signals into the earth at frequencies below 500 KHz from a capacitor emplaced on the surface of the earth or raised aloft in an aircraft
    • 用于将电磁信号从位于地球表面上的电容器或飞机上升高的电容器传输到低于500KHz频率的电磁信号的方法和装置
    • US07095357B1
    • 2006-08-22
    • US10437024
    • 2003-05-14
    • Joseph Ralph Johler
    • Joseph Ralph Johler
    • G01V3/12G01S13/88G01S13/08G01S13/10
    • H01Q9/285G01S7/032G01S13/0218G01V3/12H01Q1/04H01Q1/28
    • A method and apparatus comprising four co-planar metallic plates, two for transmission and two for reception, in which each pair of co-planer metallic plates of overall length L are disposed either in direct contact with the earth or are elevated a distance Z above the earth to form a capacitor comprising the metallic plates and the earth if Z=0 or if Z>0, the metallic plates, the air space and the earth. A short voltage or current pulse is applied to this capacitor via a transformer in which the magnetic flux current is adjusted to provide a pulse of the desired frequency composition in the air-earth propagation medium. This results in a frequency controlled pulse of electromagnetic radiation into the targeted subterranean geology at frequencies
    • 一种方法和装置,包括四个共面金属板,两个用于传输,两个用于接收,其中每对共同平面的总长度为L的金属板被设置为与地球直接接触或者将距离Z上升 如果Z = 0或者如果Z> 0,金属板,空间和地球,则形成包含金属板和地球的电容器。 通过变压器对该电容器施加短路电压或电流脉冲,其中调整磁通电流以在空气 - 地传播介质中提供所需频率成分的脉冲。 这导致频率控制的电磁辐射脉冲到频率<500KHZ的目标地下地质。 在优选实施例中,已经通过地下传播的电磁辐射反对用于垂直行进的上行和下行波的地球传播的理论模型,以获得电特性的大小作为该函数的解 这些波浪穿过的媒介的深度。 通过迭代来回收除了地下深度的波速和衰减率之外的相对电介质和电导率的电特性与深度分布。 为了在地面以上的电容器高度Z操作,可以规定电容器L的总体尺寸用于低于500khz的脉冲频谱。
    • 9. 发明授权
    • Multipath scan data signal processor having multiple signal processing paths with different operational characteristics to enable processing of signals having increased dynamic range
    • 多径扫描数据信号处理器具有具有不同操作特性的多个信号处理路径,以能够处理具有增加的动态范围的信号
    • US06830190B2
    • 2004-12-14
    • US10045605
    • 2002-01-11
    • Mark LuceraJoseph Ralph
    • Mark LuceraJoseph Ralph
    • G06K710
    • G06K7/14G06K7/10811G06K7/10851G07G1/0054
    • A laser scanning system including a multi-path scan data signal processor having multiple signal processing paths. Each signal processing path processes the same data signal (which is derived from the output of a photodetector) to detect bar code symbols therein and generate data representing the bar code symbols. And each signal processing path has different operational characteristics (such as low-pass filter cutoff frequencies, amplifier gain characteristics, and/or positive and negative signal thresholds). The varying operational characteristics of the signal processing paths are optimized to provide different signal processing functions (e.g., minimize paper noise, or maximize the scan resolution of the system). The data signal derived from laser scanning is supplied to each path of the multi-path scan data processor, where it is processed (preferably in parallel) to identify signal level transitions therein. A digital scan data signal that encodes such signal level transitions is provided to digitizing circuitry, which converts the digital scan data signal into a corresponding sequence of digital words (i.e., a sequence of digital count values) suitable for bar code symbol decoding.
    • 一种激光扫描系统,包括具有多个信号处理路径的多路径扫描数据信号处理器。 每个信号处理路径处理相同的数据信号(其从光电检测器的输出导出)以检测其中的条形码符号,并生成表示条形码符号的数据。 并且每个信号处理路径具有不同的操作特性(例如低通滤波器截止频率,放大器增益特性和/或正和负信号阈值)。 对信号处理路径的变化的操作特性进行了优化,以提供不同的信号处理功能(例如,最小化纸张噪声或使系统的扫描分辨率最大化)。 从激光扫描导出的数据信号被提供给多路径扫描数据处理器的每个路径,其中它被处理(优选并行),以识别其中的信号电平转换。 将数字扫描数据信号编码为这种信号电平转换的数字化电路被提供给数字化电路,数字化电路将数字扫描数据信号转换成适用于条码符号解码的相应的数字字序列(即数字计数值序列)。