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    • 1. 发明授权
    • Deployable photonic link and interface module
    • 可部署的光子链路和接口模块
    • US08718483B2
    • 2014-05-06
    • US12373882
    • 2008-10-31
    • Ian BradburyGregory Steven PopeGraham Howard Zacher
    • Ian BradburyGregory Steven PopeGraham Howard Zacher
    • H04B10/00
    • H04B10/25759G02B6/4256G02B6/4457H04B2210/006
    • A deployable photonic link including a deployable length of optical fiber and an interface module fusion spliced to at least one end of the optical fiber so that the module is directly connected to the fiber. The interface module including at least one of: an input for receiving a first electrical signal including a first radio frequency (RF) signal component; and an output for outputting a second RF signal component. The interface module further including, respectively, at least one of: a device for receiving the first electrical signal from the input and for producing an optical signal modulated with the first RF signal component for transmission in the optical fiber; and a device for receiving a modulated optical signal and for producing therefrom the second RF signal component for output at the output. An interface module may also contain both the input and the output and the devices for receiving RF signals and for receiving modulated optical signals.
    • 包括可部署长度的光纤的可部署光子链路和融合到光纤的至少一端的接口模块,使得模块直接连接到光纤。 所述接口模块包括以下至少一个:用于接收包括第一射频(RF)信号分量的第一电信号的输入端; 以及用于输出第二RF信号分量的输出。 所述接口模块还分别包括:从所述输入端接收所述第一电信号并产生用所述第一RF信号分量调制的光信号以在所述光纤中传输的装置中的至少一个; 以及用于接收调制光信号并用于从其产生用于在输出端输出的第二RF信号分量的装置。 接口模块还可以包含输入和输出以及用于接收RF信号的设备和用于接收调制的光信号。
    • 2. 发明授权
    • Image analysis
    • 图像分析
    • US08340372B2
    • 2012-12-25
    • US10538150
    • 2003-12-12
    • Sharon Katrina WatsonGraham Howard Watson
    • Sharon Katrina WatsonGraham Howard Watson
    • G06K9/00
    • G06K9/0014G06T7/0012G06T7/64
    • A method for the automated analysis of digital images, particularly for the purpose of assessing mitotic activity from images of histological slides for prognostication of breast cancer. The method includes the steps of identifying the locations of objects within the image which have intensity and size characteristics consistent with mitotic epithelial cell nuclei, taking the darkest 10% of those objects, deriving contours indicating their boundary shape, and smoothing and measuring the curvature around the boundaries using a Probability Density Association Filter (PDAF). The PDAF output is used to compute a measure of any concavity of the boundary—a good indicator of mitosis. Objects are finally classified as representing mitotic nuclei or not, as a function of boundary concavity and mean intensity, by use of a Fisher classifier trained on known examples.
    • 一种用于数字图像的自动分析的方法,特别是为了从用于预测乳腺癌的组织学载玻片的图像评估有丝分裂活性的目的。 该方法包括以下步骤:识别图像中具有与有丝分裂上皮细胞核一致的强度和尺寸特征的物体的位置,获取那些物体中最暗的10%,导出指示它们的边界形状的轮廓,以及平滑和测量周围的曲率 边界使用概率密度关联过滤器(PDAF)。 PDAF输出用于计算边界任何凹度的量度 - 有丝分裂的良好指标。 通过使用根据已知实例训练的Fisher分类器,物体最终分类为代表有丝分裂核或不是边界凹面和平均强度的函数。
    • 3. 发明申请
    • DEPLOYABLE PHOTONIC LINK AND INTERFACE MODULE
    • 可配置的光电连接和接口模块
    • US20120039610A1
    • 2012-02-16
    • US12373882
    • 2008-10-31
    • Ian BradburyGregory Steven PopeGraham Howard Zacher
    • Ian BradburyGregory Steven PopeGraham Howard Zacher
    • H04B10/00
    • H04B10/25759G02B6/4256G02B6/4457H04B2210/006
    • A deployable photonic link including a deployable length of optical fiber and an interface module fusion spliced to at least one end of the optical fiber so that the module is directly connected to the fiber. The interface module including at least one of: an input for receiving a first electrical signal including a first radio frequency (RF) signal component; and an output for outputting a second RF signal component. The interface module further including, respectively, at least one of: a device for receiving the first electrical signal from the input and for producing an optical signal modulated with the first RF signal component for transmission in the optical fiber; and a device for receiving a modulated optical signal and for producing therefrom the second RF signal component for output at the output. An interface module may also contain both the input and the output and the devices for receiving RF signals and for receiving modulated optical signals.
    • 包括可部署长度的光纤的可部署光子链路和融合到光纤的至少一端的接口模块,使得模块直接连接到光纤。 所述接口模块包括以下至少一个:用于接收包括第一射频(RF)信号分量的第一电信号的输入端; 以及用于输出第二RF信号分量的输出。 所述接口模块还分别包括:从所述输入端接收所述第一电信号并产生用所述第一RF信号分量调制的光信号以在所述光纤中传输的装置中的至少一个; 以及用于接收调制光信号并用于从其产生用于在输出端输出的第二RF信号分量的装置。 接口模块还可以包含输入和输出以及用于接收RF信号的设备和用于接收调制的光信号。
    • 4. 发明授权
    • Image analysis
    • 图像分析
    • US07684596B2
    • 2010-03-23
    • US10543911
    • 2004-02-05
    • Sharon Katrina WatsonGraham Howard Watson
    • Sharon Katrina WatsonGraham Howard Watson
    • G06K9/00
    • G06K9/00127G06F19/00G06T7/0012G06T7/12G06T7/62G06T2207/10056G06T2207/30024
    • A method for the automated analysis of digital images, particularly for the purpose of assessing nuclear pleomorphism from images of histological slides for prognostication of breast cancer. The method includes the steps of identifying the locations of objects within the image which have intensity and size characteristics consistent with epithelial cell nuclei and deriving boundaries for those objects. Statistics concerning at least the shapes of the derived boundaries are calculated and clutter is rejected on the basis of those statistics and/or they are used to assign probabilities that the respective objects are epithelial cell nuclei, and a measure of the variability of at least the areas enclosed by such boundaries is then calculated.
    • 一种用于自动分析数字图像的方法,特别是用于从用于预测乳腺癌的组织学载玻片的图像评估核多形性的目的。 该方法包括以下步骤:识别图像中具有与上皮细胞核一致的强度和尺寸特征的图像中的物体的位置,以及为这些物体导出边界。 计算关于衍生边界的至少形状的统计量,并且基于这些统计量来排除杂波,和/或它们用于分配各个对象是上皮细胞核的概率,以及至少 然后计算由这种边界包围的区域。
    • 8. 发明申请
    • Image analysis
    • 图像分析
    • US20060083418A1
    • 2006-04-20
    • US10543911
    • 2004-02-05
    • Sharon WatsonGraham Howard Watson
    • Sharon WatsonGraham Howard Watson
    • G06K9/00G06K9/62G06K9/40
    • G06K9/00127G06F19/00G06T7/0012G06T7/12G06T7/62G06T2207/10056G06T2207/30024
    • A method for the automated analysis of digital images, particularly for the purpose of assessing nuclear pleomorphism from images of histological slides for prognostication of breast cancer. The method includes the steps of identifying the locations of objects within the image which have intensity and size characteristics consistent with epithelial cell nuclei and deriving boundaries for those objects. Statistics concerning at least the shapes of the derived boundaries are calculated and clutter is rejected on the basis of those statistics and/or they are used to assign probabilities that the respective objects are epithelial cell nuclei, and a measure of the variability of at least the areas enclosed by such boundaries is then calculated. In one embodiment the boundaries are derived by seeking closed contours consisting of points of the same grey-level within regions centred on the locations of such objects. Another embodiment involves the deformation of a closed loop starting within the respective object, moving outward in stages in accordance with grey-level gradients around the loop, and selecting as the best fit to the real boundary the deformed loop which satisfies specified edge metrics.
    • 一种用于自动分析数字图像的方法,特别是用于从用于预测乳腺癌的组织学载玻片的图像评估核多形性的目的。 该方法包括以下步骤:识别图像中具有与上皮细胞核一致的强度和尺寸特征的图像中的物体的位置,以及为这些物体导出边界。 计算关于衍生边界的至少形状的统计量,并且基于这些统计量来排除杂波,和/或它们用于分配各个对象是上皮细胞核的概率,以及至少 然后计算由这种边界包围的区域。 在一个实施例中,通过在以这些对象的位置为中心的区域内寻找由相同灰度级的点组成的封闭轮廓来导出边界。 另一个实施例涉及在相应物体内开始的闭合回路的变形,根据循环周围的灰度梯度逐级向外移动,并且选择满足特定边缘度量的变形回路对实际边界的最佳拟合。
    • 10. 发明授权
    • Diagnostic device for troubleshooting remote digital feature phones
    • 用于诊断远程数字功能手机的诊断设备
    • US5903626A
    • 1999-05-11
    • US955881
    • 1997-10-21
    • David IglehartLeland LesterElie Antoun JreijAndrzej KoscinskiGraham HowardWilliam J. Beyda
    • David IglehartLeland LesterElie Antoun JreijAndrzej KoscinskiGraham HowardWilliam J. Beyda
    • H04M1/24H04Q11/04
    • H04Q11/045H04M1/24H04M3/303H04Q2213/13092H04Q2213/1316H04Q2213/13176H04Q2213/13206H04Q2213/13209
    • A method, system, and device for performing diagnostic testing of digital feature phones remotely located from a diagnostic device includes establishing a bi-directional communications link between a digital feature phone and the diagnostic device. The diagnostic device transmits signals to the digital feature phone which activate a troubleshooting program in the feature phone to perform a self-test and access an error list stored in the memory of the feature phone. The diagnostic device can direct the feature phone's troubleshooting program to execute different troubleshooting procedures; depending on what information is needed. The feature phone transmits the results of the troubleshooting procedures back to the diagnostic device, whereupon the diagnostic device determines the performance characteristics of the feature phone based upon the troubleshooting results. Based on the performance characteristics, the diagnostic device determines whether more information is required regarding the feature phone's operational status. If more information is required, the diagnostic device can request a second round of troubleshooting. In one embodiment, the diagnostic device and the feature phone are connected via an ISDN network which provides at least two B-channels for data communication and a D-channel for transmitting signaling data. The diagnostic device transmits the request for troubleshooting to the feature phone via a D-channel and the feature phone returns the troubleshooting results via the D-channel as well. The D-channel communication between the diagnostic device and feature phone occurs in the form of message associated UUI (MA-UUI) signals. In this manner, the entire troubleshooting procedure can be executed on a customer's feature phone without interrupting service to the feature phone.
    • 用于对从诊断设备远程定位的数字特征电话进行诊断测试的方法,系统和设备包括在数字特征电话和诊断设备之间建立双向通信链路。 诊断装置向数字功能电话机发送信号,激活特征电话中的故障排除程序以执行自检并访问存储在功能电话的存储器中的错误列表。 诊断设备可以指导功能手机的故障排除程序执行不同的故障排除步骤; 取决于需要什么信息。 功能手机将故障排除过程的结果发送回诊断设备,诊断设备根据故障诊断结果确定功能手机的性能特征。 基于性能特征,诊断装置确定是否需要关于功能电话的操作状态的更多信息。 如果需要更多信息,诊断设备可以请求第二轮故障排除。 在一个实施例中,诊断设备和特征电话通过ISDN网络连接,ISDN网络提供用于数据通信的至少两个B信道和用于发送信令数据的D信道。 诊断设备通过D通道将故障排除请求发送到功能手机,功能手机也通过D通道返回故障排除结果。 诊断设备和功能电话之间的D信道通信以消息相关联的UUI(MA-UUI)信号的形式发生。 以这种方式,可以在客户的功能电话上执行整个故障排除过程,而不中断对功能电话的服务。