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    • 4. 发明申请
    • Method and system for managing photosensitive material processor
    • 用于管理感光材料处理器的方法和系统
    • US20060024051A1
    • 2006-02-02
    • US11185677
    • 2005-07-21
    • Mitsuaki Uchida
    • Mitsuaki Uchida
    • G03D3/00
    • G03D3/00
    • A processor managing system manages a plurality of photosensitive material processors each of which includes a photosensitive material cutter. An ammeter retrieves data of a current I created while the photosensitive material cutter operates. A failure onset predicting unit predicts occurrence of a failing state of the photosensitive material cutter according to the data of the current I. The predicting unit is incorporated in a host computer. The host computer is in connection with the photosensitive material processors by the Internet. Furthermore, a storage medium stores discernment information predetermined for each photosensitive material processor, and stores information of the occurrence of the failing state at an address of the discernment information. An alarm signal is generated, which is associated with one of the photosensitive material processors in which the occurrence of the failing state is predicted according to the discernment information.
    • 处理器管理系统管理多个感光材料处理器,每个感光材料处理器包括感光材料切割器。 电流表检索在感光材料切割器操作时创建的电流I的数据。 故障发生预测单元根据电流I的数据预测感光材料切割器的故障状态的发生。预测单元被并入主计算机中。 主机通过互联网与感光材料处理器连接。 此外,存储介质存储针对每个感光材料处理器预定的识别信息,并且将存储失败状态的发生的信息存储在识别信息的地址处。 产生与根据识别信息预测发生故障状态的感光材料处理器中的一个有关的报警信号。
    • 5. 发明授权
    • Method for controlling accumulation type photoelectric conversion element
    • 控制积聚式光电转换元件的方法
    • US4769710A
    • 1988-09-06
    • US924815
    • 1986-10-30
    • Mitsuaki Uchida
    • Mitsuaki Uchida
    • H04N1/40H04N3/14
    • H04N1/40056
    • At least one mode of a group of modes consisting of a photoelectric conversion/accumulation, transfer, hold and read-out mode adapted for image information is controlled by a basic clock signal generated by a central processing unit for driving and controlling an accumulation type photoelectric conversion element. The frequency of the basic clock signal in the read-out mode is made lower than the frequencies of the basic clock signals in the conversion/accumulation, transfer and hold modes. Since the generation and frequency of the basic clock signal are controlled by the software of the CPU provided with no pulse oscillator, the construction of the hardware of the system to which this invention is applied can be simplified. In addition, since the read-out process of the data of the image sensor is performed for every picture element of the entire picture surface and the characteristic value operation with respect to the data of every picture element, the total processing time can be reduced.
    • 由用于图像信息的光电转换/累加,转移,保持和读出模式组成的一组模式的至少一种模式由中央处理单元生成的基本时钟信号控制,用于驱动和控制累积型光电 转换元素。 读出模式下的基本时钟信号的频率比转换/累加,传输和保持模式下的基本时钟信号的频率低。 由于基本时钟信号的产生和频率由没有脉冲振荡器的CPU的软件控制,所以可以简化应用本发明的系统的硬件结构。 此外,由于对整个图像表面的每个图像元素执行图像传感器的数据的读出处理,并且对于每个图像元素的数据执行特征值操作,因此可以减少总处理时间。
    • 7. 发明申请
    • Radiation imaging apparatus
    • 辐射成像装置
    • US20100243924A1
    • 2010-09-30
    • US12659889
    • 2010-03-24
    • Mitsuaki UchidaKenichi Kato
    • Mitsuaki UchidaKenichi Kato
    • H01J29/02
    • A61B6/547A61B6/4464
    • A supporting/moving section for supporting and moving a device to predetermined positions at which radiation imaging is performed is prepared. An operating portion is provided for manipulating the movement of the device supported by the supporting/moving means. A detecting section outputs detection signals, which are obtained by detecting external forces which are applied to the operating portion. A control section controls the supporting/moving means to move the device such that the movement tracks target values for movement, which are determined from the detection signals. During manipulation of the operating portion, a unique oscillation frequency measuring section executes measurements to obtain a unique oscillation frequency of the device. A unique oscillation attenuating section attenuates signal components, which are included in control signals output by the control means to control the supporting/moving means and cause the movement of the device to fluctuate at the unique oscillation frequency, in real time.
    • 制备用于将装置支撑并移动到执行放射线成像的预定位置的支撑/移动部分。 提供操作部分来操纵由支撑/移动装置支撑的装置的运动。 检测部分输出通过检测施加到操作部分的外力获得的检测信号。 控制部分控制支撑/移动装置移动装置,使得移动跟踪从检测信号确定的用于移动的目标值。 在操作部分的操作期间,独特的振荡频率测量部分执行测量以获得装置的唯一的振荡频率。 独特的振荡衰减部分衰减由控制装置输出的控制信号中包含的信号分量,以控制支撑/移动装置,并使装置的运动以独特的振荡频率实时波动。
    • 8. 发明授权
    • Image processing device
    • 图像处理装置
    • US06343161B2
    • 2002-01-29
    • US09736201
    • 2000-12-15
    • Mitsuaki Uchida
    • Mitsuaki Uchida
    • G06K903
    • H04N1/00021H04N1/00002H04N1/00031H04N1/00045H04N1/00082
    • Image data of a test pattern is transmitted to an image processor and image processing is effected by the image processor based on the test pattern. The image outputted (the results of the image processing) from this test pattern image processing and the original image are compared to each other. If they are different, the image processing by the current image processor is judged to be abnormal. In this case, the image processor (hardware process) is switched promptly and automatically to be emulated by an auto set-up engine (software process). Further, in the image processor section, ordinarily, three frame memories are used to effect processes including reading of image data, image processing, and outputting of image data at the same time and in parallel. Image processing can be switched in such a manner that when any one of the frame memories is judged to be abnormal, the two remaining frame memories judged as normal are used to execute image processing.
    • 将测试图案的图像数据发送到图像处理器,并且基于测试图案由图像处理器进行图像处理。 从该测试图案图像处理和原始图像输出的图像(图像处理的结果)彼此进行比较。 如果它们不同,则当前图像处理器的图像处理被判定为异常。 在这种情况下,图像处理器(硬件处理)被快速且自动地切换以由自动设置引擎(软件处理)来仿真。 此外,在图像处理器部分中,通常使用三个帧存储器来实现包括读取图像数据,图像处理和同时并行地输出图像数据的处理。 可以以如下方式切换图像处理,即当任何一个帧存储器被判断为异常时,被判断为正常的两个剩余帧存储器被用于执行图像处理。
    • 9. 发明授权
    • Radiation imaging apparatus
    • 辐射成像装置
    • US08201999B2
    • 2012-06-19
    • US12659889
    • 2010-03-24
    • Mitsuaki UchidaKenichi Kato
    • Mitsuaki UchidaKenichi Kato
    • H05G1/02
    • A61B6/547A61B6/4464
    • A supporting/moving section for supporting and moving a device to predetermined positions at which radiation imaging is performed is prepared. An operating portion is provided for manipulating the movement of the device supported by the supporting/moving means. A detecting section outputs detection signals, which are obtained by detecting external forces which are applied to the operating portion. A control section controls the supporting/moving means to move the device such that the movement tracks target values for movement, which are determined from the detection signals. During manipulation of the operating portion, a unique oscillation frequency measuring section executes measurements to obtain a unique oscillation frequency of the device. A unique oscillation attenuating section attenuates signal components, which are included in control signals output by the control means to control the supporting/moving means and cause the movement of the device to fluctuate at the unique oscillation frequency, in real time.
    • 制备用于将装置支撑并移动到执行放射线成像的预定位置的支撑/移动部分。 提供操作部分来操纵由支撑/移动装置支撑的装置的运动。 检测部分输出通过检测施加到操作部分的外力获得的检测信号。 控制部分控制支撑/移动装置移动装置,使得移动跟踪从检测信号确定的用于移动的目标值。 在操作部分的操作期间,独特的振荡频率测量部分执行测量以获得装置的唯一的振荡频率。 独特的振荡衰减部分衰减由控制装置输出的控制信号中包含的信号分量,以控制支撑/移动装置,并使装置的运动以独特的振荡频率实时波动。