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    • 4. 发明申请
    • METHOD AND APPARATUS WITH DEPTH MAP GENERATION
    • 具有深度地图生成的方法和装置
    • WO2009082822A1
    • 2009-07-09
    • PCT/CA2008/002298
    • 2008-12-29
    • ATI TECHNOLOGIES ULCSAFAEE-RAD, RezaALEKSIC, Milivoje
    • SAFAEE-RAD, RezaALEKSIC, Milivoje
    • G03B13/36G03B13/30
    • H04N5/23212G02B27/0075G06T7/571G06T2207/10012G06T2207/10016H04N5/2356H04N13/161H04N13/194H04N2213/003
    • An apparatus and method are disclosed wherein a depth map is generated using a single camera (e.g., single lens of a camera) and multiple images are captured by the camera. In one example, a single digital camera is used to capture a set of images corresponding to a set of lens positions based on lens position data. In this example, the lens position data may be either uniform or nonuniform lens position data. The method and apparatus determines focus metric information for each of a plurality of regions of interest in each image of a set. A determination is made of a best lens position for each of the regions of interest based on the focus metric information from the images in the set and are stored as data in a depth map. Image generation operations are then performed based on the generated depth map, such as determining whether or not to use a flash to capture a final image, to determine a type of color operation to be performed on the final image, or any other suitable image generation operation. In one example, the depth map is generated by selecting a best focus metric among the various images that were captured for a particular region of interest. Once the depth map is generated using data from the multiple images, depth map based control logic then determines how to use the depth map to effect an image processing operation. Among other advantages, multiple cameras need not be employed nor do external light sensors need be employed to generate a depth map for use in image processing operations. Other advantages will be recognized by those of ordinary skill in the art.
    • 公开了一种装置和方法,其中使用单个相机(例如,相机的单个透镜)生成深度图,并且由相机捕获多个图像。 在一个示例中,单个数码相机用于基于透镜位置数据捕获与一组透镜位置相对应的一组图像。 在该示例中,透镜位置数据可以是均匀的或不均匀的透镜位置数据。 该方法和装置为集合的每个图像中的多个感兴趣区域中的每一个确定焦点度量信息。 基于来自集合中的图像的焦点度量信息,确定每个感兴趣区域的最佳透镜位置,并将其作为数据存储在深度图中。 然后基于生成的深度图执行图像生成操作,例如确定是否使用闪光灯捕获最终图像,以确定要对最终图像执行的颜色操作的类型,或任何其它合适的图像生成 操作。 在一个示例中,通过在针对特定感兴趣区域捕获的各种图像中选择最佳焦点度量来生成深度图。 一旦使用来自多个图像的数据生成深度图,则基于深度图的控制逻辑然后确定如何使用深度图来实现图像处理操作。 除了其它优点之外,不需要使用多个摄像机,也不需要使用外部光传感器来生成用于图像处理操作的深度图。 本领域普通技术人员将认识到其它优点。
    • 5. 发明申请
    • IMPROVED BREAST ELECTRODE ARRAY AND METHOD OF ANALYSIS FOR DETECTING AND DIAGNOSING DISEASES
    • 改进的乳腺电极阵列和检测和诊断疾病分析方法
    • WO2004049936A2
    • 2004-06-17
    • PCT/CA2003/001833
    • 2003-12-01
    • Z-TECH (CANADA) INC.ORGAN, Leslie, W.SAFAEE-RAD, RezaGRAOVAC, MilanSMITH, Kenneth, CarlessIRONSTONE, Joel, Steven
    • ORGAN, Leslie, W.SAFAEE-RAD, RezaGRAOVAC, MilanSMITH, Kenneth, CarlessIRONSTONE, Joel, Steven
    • A61B5/053
    • A61B5/4312A61B5/053A61B5/061A61B2562/0209A61B2562/046
    • This invention provides for an improved breast electrode array and method of analysis for detecting and diagnosing diseases, particularly using the improved electrode array of this invention. In particular, the electrode array has a body, a plurality of flexible arms extending from the body, and a plurality of outer electrodes provided by the plurality of flexible arms, and a plurality of inner electrodes provided on at least one of the flexible arms and positioned partway between the body and the outer electrodes, and the outer electrodes and the inner electrodes are arranged on the arms to obtain impedance measurements between respective electrodes. In one aspect of the invention, at least one of the outer electrodes is spaced from the body greater than the other outer electrodes. In a further aspect of the invention, at least one of the inner electrodes is spaced from the body greater than the other inner electrodes, and the at least one inner electrode is provided on the flexible arm having the at least one outer electrode. A number of diagnostic methods based on homologous electrical difference analysis are also disclosed utilizing the different topologies created by the inner and outer electrodes when taking impedance measurements.
    • 本发明提供了改进的乳房电极阵列和用于检测和诊断疾病的分析方法,特别是使用本发明的改进的电极阵列。 特别地,电极阵列具有主体,从主体延伸的多个柔性臂和由多个柔性臂设置的多个外部电极,以及多个内部电极,设置在至少一个柔性臂和 位于主体和外部电极之间,并且外部电极和内部电极布置在臂上以获得各个电极之间的阻抗测量。 在本发明的一个方面,外电极中的至少一个与其它外电极间的距离比其他外电极大。 在本发明的另一方面,至少一个内部电极与主体间隔开大于其它内部电极,并且至少一个内部电极设置在具有至少一个外部电极的柔性臂上。 当采用阻抗测量时,利用由内外电极产生的不同拓扑结构,还公开了基于同源电差分析的许多诊断方法。
    • 6. 发明申请
    • METHOD AND APPARATUS FOR OPTICAL INSPECTION OF A DISPLAY
    • 用于光学检查显示器的方法和装置
    • WO2004070693A2
    • 2004-08-19
    • PCT/US2004/003217
    • 2004-02-03
    • PHOTON DYNAMICS INC.SAFAEE-RAD, RezaCRNATOVIC, AleksanderHAWTHORNE, JeffreyBUKAL, BrankoLEERENTVELD, Ray
    • SAFAEE-RAD, RezaCRNATOVIC, AleksanderHAWTHORNE, JeffreyBUKAL, BrankoLEERENTVELD, Ray
    • G09G
    • G06T7/0004G06T2207/30108H04N17/02H04N17/04
    • METHOD AND APPARATUS FOR OPTICAL INSPECTION OF A DISPLAY ABSTRACT OF THE DISCLOSURE A method and apparatus for optically inspecting a display employs sub-pixel accuracy for each primary color to take into account angle of rotation. The method includes capturing images of a display with R x S sensors, determining sets of sensor coordinates mapping to a pixel, determining multiple misalignment angles between the pixel on the display and the R x S sensors, determining multiple x scaling ratios, determining multiple weighting factors associated with RxS sensors in response to the corresponding multiple misalignment angle and the corresponding multiple x and y scaling ratios, determining multiple luminance values for RxS sensors, determining multiple total luminance values in response to the weighting factors and the luminance values, forming scaled images including first and second luminance values, and inspecting the scaled image to identify potential defects of the pixel on the display.
    • 用于对本发明的显示器的光学检查的方法和装置用于光学检查显示器的方法和装置对于每个基色采用子像素精度来考虑旋转角度。 该方法包括用R x S传感器捕获显示器的图像,确定映射到像素的传感器坐标的集合,确定显示器上的像素与R x S传感器之间的多个不对准角度,确定多个x缩放比例,确定多个加权 与RxS传感器相关联的因素响应于相应的多重不对准角和相应的多个x和y缩放比,确定RxS传感器的多个亮度值,响应加权因子和亮度值确定多个总亮度值,形成缩放图像 包括第一和第二亮度值,并且检查缩放图像以识别显示器上的像素的潜在缺陷。