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    • 1. 发明授权
    • Process of spatial color restoration of an image
    • 图像空间颜色恢复过程
    • US07443552B2
    • 2008-10-28
    • US10519298
    • 2003-06-07
    • Valéry J. RissonJean-Fabien Dupont
    • Valéry J. RissonJean-Fabien Dupont
    • G03F3/00
    • G06T5/009G06T5/40G06T2207/10024
    • The process of the invention enables the spatial color alterations of a silver image to be taken into account according to one of its main axes (19). The process of the invention enables the altered or faded colors of the silver image to be restored automatically, without depending on the skills of an operator to perform a color restoration treatment. A digital image (12) is divided into adjacent pixel strips (18), arranged perpendicular to the direction (19) according to which the color alteration occurs. For each of these strips (18), optical density distributions of each pixel are calculated and compared with reference optical density values. The process of the invention enables the automatic correction of all the strips (18) comprising the altered pixels, by applying a linear transformation enabling the transformation of the optical density values of the altered pixels, into the optical density values of a pixel strip of least degradation. The process of the present invention is used in the technological field of the restoration of color photographic images.
    • 本发明的方法能够根据其主轴(19)之一考虑银图像的空间颜色变化。 本发明的方法能够使银色图像的改变或褪色的颜色自动恢复,而不依赖于操作者进行颜色恢复处理的技能。 数字图像(12)被分成垂直于方向(19)布置的相邻像素条(18),根据该方向发生颜色变化。 对于每个条带(18),计算每个像素的光密度分布并与参考光密度值进行比较。 本发明的方法使得能够通过应用能够将改变的像素的光密度值的变换转换为最小像素条的光密度值的线性变换来对包括改变像素的所有条带(18)进行自动校正 降解。 本发明的方法用于彩色摄影图像的恢复技术领域。
    • 8. 发明申请
    • Process of spatial color restoration of an image
    • 图像空间颜色恢复过程
    • US20050237586A1
    • 2005-10-27
    • US10519298
    • 2003-06-07
    • Valery RissonJean-Fabien Dupont
    • Valery RissonJean-Fabien Dupont
    • G06T1/00G06T5/40H04N1/46H04N1/60G03F3/00
    • G06T5/009G06T5/40G06T2207/10024
    • The process of the invention enables the spatial color alterations of a silver image to be taken into account according to one of its main axes ( 19). The process of the invention enables the altered or faded colors of the silver image to be restored automatically, without depending on the skills of an operator to perform a color restoration treatment. A digital image (12) is divided into adjacent pixel strips (18), arranged perpendicular to the direction (19) according to which the color alteration occurs. For each of these strips (18), optical density distributions of each pixel are calculated and compared with reference optical density values. The process of the invention enables the automatic correction of all the strips (18) comprising the altered pixels, by applying a linear transformation enabling the transformation of the optical density values of the altered pixels, into the optical density values of a pixel strip of least degradation. The process of the present invention is used in the technological field of the restoration of color photographic images.
    • 本发明的方法能够根据其主轴(19)之一考虑银图像的空间颜色变化。 本发明的方法能够使银色图像的改变或褪色的颜色自动恢复,而不依赖于操作者进行颜色恢复处理的技能。 数字图像(12)被分成垂直于方向(19)布置的相邻像素条(18),根据该方向发生颜色变化。 对于每个条带(18),计算每个像素的光密度分布并与参考光密度值进行比较。 本发明的方法使得能够通过应用能够将改变的像素的光密度值的变换转换为最小像素条的光密度值的线性变换来对包括改变像素的所有条带(18)进行自动校正 降解。 本发明的方法用于彩色摄影图像的恢复技术领域。
    • 9. 发明授权
    • Sound recording film
    • US06713224B1
    • 2004-03-30
    • US09550503
    • 2000-04-14
    • Susan D. HillVicky SinnJean-Fabien Dupont
    • Susan D. HillVicky SinnJean-Fabien Dupont
    • G03C176
    • G03C7/24G03C1/035G03C1/29G03C1/83G03C5/02G03C5/14G03C7/3041G03C2001/03594Y10S430/135
    • A black and white silver halide motion picture sound recording film is disclosed comprising a transparent support bearing at least one silver halide emulsion layer and an antihalation layer comprising filter dye which is incorporated in the form of a solid particle dispersion which is readily solubilized and removed or decolorized upon standard processing in the D-97 process as specified in Kodak publication H-24, so as to result in a minimum density of 0.07 or less. A method for printing an optical analog sound track in a motion picture color print film which comprises a support bearing light sensitive yellow, magenta, and cyan dye forming layers sensitized respectively to the blue, green, and red regions of the electromagnetic spectrum is disclosed, said process comprising: exposing an analog sound track in a black and white silver halide motion picture sound recording film in accordance with the invention and processing the exposed recording film to form a sound track negative image having a minimum density of 0.07 or less; printing the sound track negative image on the color motion picture print film by exposing the green sensitive layer while not substantially exposing the red sensitive layer; and processing the exposed color print film to form a silver plus magenta dye sound track image which may be read effectively with both an IR sensitive sound track reader and a red light sensitive sound track reader. Sound recording films which provide low Dmins in accordance with the invention require fewer lumens of light to print both analog and digital sound tracks. Films in accordance with the invention are magenta dye plus silver sound track enabling and provide a step toward the elimination of sound developer in the print processing operation. An unexpected performance feature of films in accordance with the invention is improved latitude in attaining excellent Dolby Digital Stereo sound performance by better matching the image spread between the sound negative and the print film.