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    • 3. 发明授权
    • Sextant core biopsy predictive mechanism for non-organ confined disease
status
    • 非器官限制性疾病状态的Sextant核心活检预测机制
    • US5989811A
    • 1999-11-23
    • US536298
    • 1995-09-29
    • Robert W. VeltriM. Craig MillerMichael P. BacusKaveh Ashenayi
    • Robert W. VeltriM. Craig MillerMichael P. BacusKaveh Ashenayi
    • C12Q1/68G01N33/574G06F19/00
    • G01N33/57434G01N33/574G06F19/3443G06F19/345Y10S436/813
    • A method for screening individuals at risk for the loss of organ confinement in prostate cancer is disclosed. The method is useful for evaluating cells from patients at risk for recurrence of prostate cancer following surgery for prostate cancer. Specifically, the method uses specific Markovian nuclear texture features, alone or in combination with other biomarkers, to determine whether the cancer will progress or lose organ confinement. In addition, methods of predicting the development of fatal metastatic disease by statistical analysis of selected biomarkers is also disclosed. The invention also contemplates a method that uses a neural network to analyze and interpret cell morphology data. Utilizing Markovian factors and other biomarkers as parameters, the network is first trained with a sets of cell data from known progressors and known non-progressors. The trained network is then used to predict the loss of organ confinement by evaluating patient samples.
    • 公开了一种在前列腺癌中筛选风险丧失器官限制的个体的方法。 该方法可用于评估前列腺癌手术后前列腺癌复发风险的患者细胞。 具体来说,该方法单独或与其他生物标志物结合使用特定的马尔可夫核质构特征来确定癌症是否进展或丧失器官限制。 此外,还公开了通过选择的生物标志物的统计分析预测致命转移性疾病的发展的方法。 本发明还考虑使用神经网络来分析和解释细胞形态学数据的方法。 利用马尔科夫因子和其他生物标志物作为参数,网络首先被训练有来自已知进化者和已知非进展者的一组细胞数据。 训练有素的网络然后用于通过评估患者样本来预测器官限制的丧失。
    • 4. 发明授权
    • Aerial camera system
    • 空中摄像系统
    • US08199197B2
    • 2012-06-12
    • US12390186
    • 2009-02-20
    • Patrick J. BennettGarret CookMatthew R. JonesKaveh AshenayiMichael F. HenryAlexander MacDonald
    • Patrick J. BennettGarret CookMatthew R. JonesKaveh AshenayiMichael F. HenryAlexander MacDonald
    • H04N7/18H04N9/47
    • G03B15/006B66C21/00B66D1/38F16M11/105F16M11/18F16M11/2064F16M11/425H04N5/2251H04N5/232
    • An aerial camera system including a plurality of main reels, a camera interface/safety reel and a stabilized camera head. The camera head is supported from main cables from the main reels with a safety reel cable providing power, data and video communication between the camera head and a main computer system. Each of the main reels, the camera interface/safety reel and the camera head are in communication with the main computer system, which controls the feeding and reeling in of the main cables. Further, the computer system controls the feeding and reeling in of the safety reel cable, which typically only follows the camera head as it moves in three-dimensional space, but may in emergency mode support the weight of the camera head and be used to slowly pull the camera head up and out of the way so that it does not interfere with any activity below the flight area. The aerial camera system may also include a level wind assembly that keeps the cables wound on the drum of the main reels and/or the safety reel in a controlled and consistent manner. Furthermore, the camera head of the aerial camera system may use a rotating gimbal assembly with computer controlled leveling motors for keeping the camera head level as the gimbal assembly moves.
    • 一种包括多个主卷轴,相机接口/安全卷轴和稳定的相机头的航空摄像机系统。 相机头由主卷轴的主电缆支撑,安全卷轴电缆提供相机头和主计算机系统之间的电源,数据和视频通信。 主卷轴,相机接口/安全卷轴和摄像头的主体与主计算机系统通信,主控制器控制主电缆的馈送和卷绕。 此外,计算机系统控制安全卷轴电缆的馈送和卷绕,其通常仅在相机头在三维空间中移动时,但可以在紧急模式下支持相机头的重量并用于缓慢 将照相机的头部向上拉出,使其不会干扰飞行区域下方的任何活动。 航空摄像机系统还可以包括水平风组件,其以受控和一致的方式将电缆缠绕在主卷轴和/或安全卷轴的滚筒上。 此外,航空摄像机系统的摄像头可以使用带有计算机控制的调平电动机的旋转万向节组件,以在万向架组件移动时保持摄像机水平。
    • 8. 发明申请
    • AERIAL CAMERA SYSTEM
    • 空中相机系统
    • US20090207250A1
    • 2009-08-20
    • US12390186
    • 2009-02-20
    • Patrick J. BennettGarret CookMatthew R. JonesKaveh AshenayiMichael F. HenryAlexander MacDonald
    • Patrick J. BennettGarret CookMatthew R. JonesKaveh AshenayiMichael F. HenryAlexander MacDonald
    • H04N7/18H04N5/225G12B13/00
    • G03B15/006B66C21/00B66D1/38F16M11/105F16M11/18F16M11/2064F16M11/425H04N5/2251H04N5/232
    • An aerial camera system including a plurality of main reels, a camera interface/safety reel and a stabilized camera head. The camera head is supported from main cables from the main reels with a safety reel cable providing power, data and video communication between the camera head and a main computer system. Each of the main reels, the camera interface/safety reel and the camera head are in communication with the main computer system, which controls the feeding and reeling in of the main cables. Further, the computer system controls the feeding and reeling in of the safety reel cable, which typically only follows the camera head as it moves in three-dimensional space, but may in emergency mode support the weight of the camera head and be used to slowly pull the camera head up and out of the way so that it does not interfere with any activity below the flight area. The aerial camera system may also include a level wind assembly that keeps the cables wound on the drum of the main reels and/or the safety reel in a controlled and consistent manner. Furthermore, the camera head of the aerial camera system may use a rotating gimbal assembly with computer controlled leveling motors for keeping the camera head level as the gimbal assembly moves.
    • 一种包括多个主卷轴,相机接口/安全卷轴和稳定的相机头的航空摄像机系统。 相机头由主卷轴的主电缆支撑,安全卷轴电缆提供相机头和主计算机系统之间的电源,数据和视频通信。 主卷轴,相机接口/安全卷轴和摄像头的主体与主计算机系统通信,主控制器控制主电缆的馈送和卷绕。 此外,计算机系统控制安全卷轴电缆的馈送和卷绕,其通常仅在相机头在三维空间中移动时,但可以在紧急模式下支持相机头的重量并用于缓慢 将照相机的头部向上拉出,使其不会干扰飞行区域下方的任何活动。 航空摄像机系统还可以包括水平风组件,其以受控和一致的方式将电缆缠绕在主卷轴和/或安全卷轴的滚筒上。 此外,航空摄像机系统的摄像头可以使用带有计算机控制的调平电动机的旋转万向节组件,以在万向架组件移动时保持摄像机水平。