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    • 52. 发明授权
    • Film image input method and system thereof
    • 胶片影像输入法及其系统
    • US6046765A
    • 2000-04-04
    • US21386
    • 1998-02-10
    • Toru NishimuraAtsushi Itoh
    • Toru NishimuraAtsushi Itoh
    • G03B27/32H04N1/00H04N1/12H04N1/193H04N1/387H04N1/407H04N1/60H04N5/225H04N5/253H04N7/18
    • H04N1/00249H04N1/00267H04N1/0027H04N1/387H04N1/3875H04N1/4072H04N1/60H04N1/6027H04N1/6086H04N1/12H04N1/193H04N2201/0416
    • The present invention relates to a film image input method, wherein a line sensor is used as an image sensor to reduce the cost, and the image data can be corrected in accordance with the taking environment, which occurs in a case of using the line sensor, for every frame. A line sensor is provided in which photoelectric transfer elements are arranged in a direction perpendicular to a feeding direction of a long roll of developed film for a still camera, the film is fed at the first speed continuously to take the rough image data of all frames through the line sensor, and the taking environment for every frame is detected based on the taken rough image data. Thereafter, when reproducing one frame, the film is fed at the second speed which is lower than the first speed, whereby the fine image data of the desired frame are adjusted in accordance with the detected taking environment of the frame and stored in the CCD buffer, and then the image signals are output to the TV monitor based on the stored fine image data.
    • 本发明涉及一种胶片图像输入方法,其中线传感器用作图像传感器以降低成本,并且可以根据在使用线传感器的情况下发生的拍摄环境来校正图像数据 ,为每一帧。 提供了一种线传感器,其中光电传输元件沿垂直于用于静止照相机的长卷显影膜的馈送方向的方向布置,胶片以第一速度连续馈送以获取所有帧的粗略图像数据 通过线传感器,并且基于所获取的粗略图像数据来检测每帧的拍摄环境。 此后,当再现一帧时,以低于第一速度的第二速度馈送胶片,由此根据检测到的帧的拍摄环境来调整所需帧的精细图像数据并存储在CCD缓冲器 ,然后基于存储的精细图像数据将图像信号输出到TV监视器。
    • 53. 发明授权
    • Transparency film digitizer peripheral and transparency film image
management and communication system for internet
    • 透明胶片数字化仪周边和透明胶片图像管理和互联网通信系统
    • US5995138A
    • 1999-11-30
    • US686344
    • 1996-07-25
    • Richard D. BeerHassan MostafaviDariush Rafinejad
    • Richard D. BeerHassan MostafaviDariush Rafinejad
    • H04N1/00H04N1/195H04N5/253H04N9/47
    • H04N1/00591H04N1/00567H04N1/00631H04N1/195H04N1/19594H04N1/00209H04N2201/0412
    • A computer-automation tool for dentists and insurance companies to communicate dental patient information is provided. Such system has a specialized PC-peripheral that produces digital images from transparency films and dental intra-oral intra-oral radiographs, e.g., x-ray films, for storage, retrieval, viewing, transmission, and processing on computer networks. For example, dental intra-oral radiograph images can be captured at a local dentist's office and transmitted over the internet to support quick insurance claim processing. The digitizer peripheral is automatic enough that no special skills beyond that of an office clerk are required. To digitize an x-ray film frame, the film is simply dropped into a slot on the digitizer peripheral. No menu items or key needs to be selected on the computer. The sensing of the film insertion, its positioning, and releasing it after digitization are all automatic. On-screen, the individual x-rays and intra-oral photographs are organized into patient panels and associated in a database together with patient background and administrative information.
    • 提供了一种用于牙科医生和保险公司沟通牙齿患者信息的计算机自动化工具。 这种系统具有专门的PC外围设备,其从透明胶片和牙科口腔内口腔内X射线照片(例如x射线胶片)产生用于计算机网络上的存储,检索,观察,传输和处理的数字图像。 例如,牙科口内放射照片图像可以在当地牙医办公室被捕获,并通过互联网传输以支持快速保险索赔处理。 数字化仪外围设备足够自动,不需要超出办公室职员的特殊技能。 为了数字化X光胶片框,将胶片简单地放入数字化仪外围的槽中。 在计算机上不需要选择菜单项或键。 电影插入的感应,定位和数字化后的释放都是自动的。 在屏幕上,将个体X射线和口内照片组织到患者面板中并与患者背景和管理信息一起在数据库中相关联。
    • 56. 发明授权
    • Method and arrangement for correcting picture steadiness errors in
telecine scanning
    • 用于校正电视电影扫描中图像稳定性错误的方法和装置
    • US5943090A
    • 1999-08-24
    • US715947
    • 1996-09-19
    • Berthold EibergerArno BeckenbachKurt-Heiner PhilippAndreas LowBroder WendlandThomas HerfetThomas BonseWolfgang PaschedagThomas Leonard
    • Berthold EibergerArno BeckenbachKurt-Heiner PhilippAndreas LowBroder WendlandThomas HerfetThomas BonseWolfgang PaschedagThomas Leonard
    • H04N5/253H04N3/36
    • H04N5/253
    • A method of correcting picture steadiness errors (or film weave correction) in telecine scanning is proposed, in which, in a first step, at least one sample area of the picture contents of the video signal obtained by film scanning is determined by way of structure recognition, this sample area corresponding to a curvature in the picture contents. In a second step, it is checked, by way of comparison, whether the determined sample areas are recognizable in a search area of the sequential frame. In a third step, motion vector signals are generated when the sample areas are recognized again in the sequential frame, these motion vector signals defining the direction of motion and the extent of deviation of the position of the determined sample area from the position of the recognized sample area. In a fourth step, parameters of a transform function are determined by the motion vector signals. In a subsequent fifth step, motion vectors, which correspond to partial motions, are recognized and eliminated by comparing the transform function with the motion vectors. Steps four and five are performed several times, if necessary. In a sixth step, correction signals are derived by taking the temporal sequence of transform functions into account, and in a seventh step, these correction signals are applied to a control device, these correction signals correcting the stability errors in the picture signals.
    • 提出了一种在电视电影扫描中校正图像稳定性错误(或胶片编织校正)的方法,其中在第一步骤中,通过胶片扫描获得的视频信号的图像内容的至少一个采样区域由结构 识别,该样本区域对应于图像内容中的曲率。 在第二步骤中,通过比较来检查确定的采样区域是否在连续帧的搜索区域中被识别。 在第三步骤中,当在连续帧中再次识别采样区域时,产生运动矢量信号,这些运动矢量信号定义运动方向和确定的采样区域的位置与所识别的位置的偏差程度 样品区。 在第四步中,变换函数的参数由运动矢量信号确定。 在随后的第五步中,通过将变换函数与运动矢量进行比较来识别和消除对应于部分运动的运动矢量。 如果需要,执行第四步和第五步多次。 在第六步骤中,通过考虑变换函数的时间序列来导出校正信号,并且在第七步骤中,这些校正信号被施加到控制装置,这些校正信号校正图像信号中的稳定性误差。
    • 60. 发明授权
    • Imaging circuit having Interlaced and non-interlaced mode
    • 成像电路具有隔行扫描和非隔行扫描模式
    • US5838373A
    • 1998-11-17
    • US724837
    • 1996-10-03
    • Takami HasegawaChoji Umemoto
    • Takami HasegawaChoji Umemoto
    • H04N5/253H04N1/04H04N1/40H04N3/36H04N5/335H04N5/341H04N5/343H04N5/347H04N5/355H04N5/372H04N5/378H04N3/14H04N5/228H04N7/01
    • H04N1/40056H04N1/0402H04N3/36H04N5/335
    • An imaging circuit includes a solid state imaging device, an A/D converter for converting light receiving signals outputted from the solid state imaging device to digital signals, and a driving unit for supplying clock signals to the solid state imaging device and the A/D converter. The solid state imaging device has a first mode in which the light receiving signals on two adjacent scanning lines arranged in the vertical direction are added to each other and outputted, and a second mode in which the light receiving signals on one scanning line are sequentially outputted in units of scanning lines, the first and second modes being optionally selectable in accordance with a predetermined mode selection signal. In the driving unit, when the solid state imaging device is selected to the first mode, a clock signal having a first repetitive frequency is transmitted to the solid state imaging device and another clock signal having a second repetitive frequency lower than the first repetitive frequency is transmitted to the A/D converter, and when the solid state imaging device is selected to the second mode, a clock signal having a predetermined repetitive frequency is transmitted to the solid state imaging device and the A/D converter.
    • 一种成像电路包括固态成像装置,用于将从固态成像装置输出的光接收信号转换为数字信号的A / D转换器,以及用于向固态成像装置提供时钟信号的驱动单元和A / D 转换器。 固态成像装置具有第一模式,其中在垂直方向上布置的两个相邻扫描线上的光接收信号彼此相加并输出,并且一个扫描线上的光接收信号被顺序地输出的第二模式 以扫描线为单位,第一和第二模式可选地根据预定的模式选择信号来选择。 在驱动单元中,当将固态成像装置选择为第一模式时,具有第一重复频率的时钟信号被发送到固态成像装置,并且具有低于第一重复频率的第二重复频率的另一个时钟信号是 发送到A / D转换器,并且当固态成像装置被选择为第二模式时,具有预定重复频率的时钟信号被发送到固态成像装置和A / D转换器。