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    • 62. 发明申请
    • BIDIRECTIONAL OPTICAL SCANNER ASSISTING IN MAMMOGRAPHY
    • 双向光学扫描仪辅助摄影
    • US20120220862A1
    • 2012-08-30
    • US13351384
    • 2012-01-17
    • MIN-CHUN PANJHAO-MING YUHUNG-CHIH CHIANGMIN-CHENG PANCHUN-YU CHENLIANG-YU CHEN
    • MIN-CHUN PANJHAO-MING YUHUNG-CHIH CHIANGMIN-CHENG PANCHUN-YU CHENLIANG-YU CHEN
    • A61B6/00G01J1/04G01J5/00G01J1/00
    • A61B5/0091A61B5/0064
    • A bidirectional optical scanner assisting in mammography is revealed. The optical scanner that calculates functional images obtained by diffuse optical tomography, used in combination with a mammography machine can reduce the number of mammograms taken and the dose exposure. The bidirectional optical scanner includes a first compression plate, a first optical detection module, a second optical detection module and a second compression plate. The same test position of the tested breast can be detected twice in different directions by the first and the second optical detection modules. No matter where the tumor is located, the tumor can be detected. Besides structural images provided by the mammography machine, functional tomographic images of the breast are obtained by the bidirectional optical scanner. Thus diagnostic accuracy in the detection of breast cancer is improved.
    • 揭示了辅助乳房X光照相术的双向光学扫描仪。 计算通过与乳房摄影机组合使用的漫射光学层析成像获得的功能图像的光学扫描器可以减少所采取的乳房X线照片的数量和剂量暴露。 双向光学扫描器包括第一压缩板,第一光学检测模块,第二光学检测模块和第二压缩板。 通过第一和第二光学检测模块可以在不同的方向上检测被测乳房的相同测试位置两次。 无论肿瘤位于何处,都可以检测到肿瘤。 除了由乳房X线照相机提供的结构图像之外,通过双向光学扫描器获得乳房的功能断层图像。 因此,乳腺癌检测的诊断准确性得到改善。
    • 63. 发明授权
    • Terahertz wave measuring apparatus having space arrangement structure and measuring method
    • 具有空间排列结构和测量方法的太赫兹波测量装置
    • US08253103B2
    • 2012-08-28
    • US12511016
    • 2009-07-28
    • Yuichi OgawaShinichiro HayashiEiji Kato
    • Yuichi OgawaShinichiro HayashiEiji Kato
    • G01J1/00G01J5/00
    • G01N21/3581G01N21/95692H01L31/0232H01L31/101
    • There is provided a measuring apparatus including a space arrangement structure that includes space regions surrounded by conductors in a plane, an electromagnetic wave emitter that emits electromagnetic waves towards an object held by the space arrangement structure, and an electromagnetic wave detector that measures the electromagnetic waves that have passed through the space arrangement structure. Here, characteristics of the object are measured by measuring the electromagnetic waves that have passed through the space arrangement structure. The electromagnetic waves emitted from the electromagnetic wave emitter towards the space arrangement structure are incident on the plane containing the space regions at an angle, and the electromagnetic waves that have passed through the space arrangement structure are measured.
    • 提供了一种测量装置,包括:空间布置结构,包括由平面内的导体包围的空间区域;朝向由所述空间布置结构保持的物体发射电磁波的电磁波发射器;以及测量电磁波的电磁波检测器 已经通过了空间布置结构。 这里,通过测量已经通过空间排列结构的电磁波来测量物体的特性。 从电磁波发射器朝向空间配置结构发射的电磁波以一定角度入射在包含空间区域的平面上,并且测量已经通过空间布置结构的电磁波。
    • 68. 发明授权
    • Machine and method for measuring a characteristic of an optical signal
    • 用于测量光信号特性的机器和方法
    • US08072587B2
    • 2011-12-06
    • US11621036
    • 2007-01-08
    • Prakash KasturiAdrian Nastase
    • Prakash KasturiAdrian Nastase
    • G01J1/00
    • G01J1/02G01J1/0219G01J1/0228G01J1/0271G01J1/08G01J1/4257G01J11/00
    • A machine and methods measure a characteristic of an optical signal incident upon a detector characterized by one or more dynamic response parameters. One method receives an output signal from the detector and compares that output signal and a computationally determined response of the detector to a known optical signal incident upon the detector. The response is based on said one or more dynamic parameters. The method determines the characteristic based on a relationship between the output signal and the computationally determined response. Another method observes an output signal from an optical detector detecting one or more optical signals, accesses a characteristic curve of detector response, compares the observed output signal to the characteristic curve, and calculates at least one characteristic of one or more optical signals based on a relationship of the observed output signal and the characteristic curve.
    • 机器和方法测量入射在特征为一个或多个动态响应参数的检测器上的光信号的特性。 一种方法从检测器接收输出信号,并将该输出信号和检测器的计算确定响应与入射到检测器上的已知光信号进行比较。 所述响应基于所述一个或多个动态参数。 该方法基于输出信号和计算确定的响应之间的关系确定特性。 另一种方法观察来自检测一个或多个光信号的光检测器的输出信号,访问检测器响应的特性曲线,将观察到的输出信号与特性曲线进行比较,并且基于一个或多个光信号来计算至少一个特性 观测输出信号与特性曲线的关系。
    • 70. 发明授权
    • Headlamp aim detection with sensors independent from host control unit
    • 头灯目标检测与独立于主机控制单元的传感器
    • US08004663B1
    • 2011-08-23
    • US13013033
    • 2011-01-25
    • Stephen Waller Melvin
    • Stephen Waller Melvin
    • G01J1/00
    • G01M11/064
    • Headlamp alignment is detected using a collection of intelligent, independent sensor units, each of which incorporates a vertical array of sensing elements capable of detecting headlamp illumination. The sensor units are networked together and can be coupled to a host controller. The host controller can provide a user interface via a touch screen and a Web server, and can further communicate with a plant network for interfacing with manufacturing databases. The network of sensor units can accommodate four or more sensors, which allows multiple vehicles and multiple headlamp types to be audited without physical movement of the sensor units. The sensor units are low in power consumption and can receive power over the same cable providing network communication. Incorporation of non-volatile memory within the sensor units allows factory data to be recorded within each sensor unit and permits convenient replacement of units in the field.
    • 使用智能独立的传感器单元的集合检测前照灯对准,每个传感器单元包括能够检测前照灯照明的垂直阵列的感测元件。 传感器单元联网在一起,并且可以耦合到主机控制器。 主机控制器可以经由触摸屏和Web服务器提供用户界面,并且可进一步与工厂网络通信以与制造数据库进行接口。 传感器单元的网络可以容纳四个或更多个传感器,其允许在不传感器单元的物理移动的情况下审核多个车辆和多个前照灯类型。 传感器单元功耗低,可以通过提供网络通信的同一电缆接收电力。 在传感器单元内部结合非易失性存储器允许在每个传感器单元内记录工厂数据,并且可以方便地更换现场的单元。