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    • 63. 发明申请
    • RADIATION IMAGING DEVICE, SYSTEM, AND METHOD
    • 辐射成像装置,系统和方法
    • US20120267535A1
    • 2012-10-25
    • US13448148
    • 2012-04-16
    • Haruyasu NAKATSUGAWANaoyuki NISHINONaoto IWAKIRI
    • Haruyasu NAKATSUGAWANaoyuki NISHINONaoto IWAKIRI
    • G01T1/202G01T1/20
    • G01T1/2002A61B6/548H01L27/14663
    • A radiation detector includes a sensor panel, a scintillator panel, a reflective layer, and a radiation irradiation detecting photodetector laminated in this order from a side of a radiation receiving surface. Radiation transmitted through a patient's body enters the scintillator panel through the sensor panel, and is converted into light. The converted light propagates through columnar crystals in the scintillator panel with total internal reflection. Apart of the light reaches the sensor panel, while the remains reach the reflective layer. The light reaching the sensor panel is detected by photoelectric converters. Out of the light reaching the reflective layer, a short wavelength component with a relatively high refractive index is specularly reflected to the sensor panel. A long wavelength component with a relatively low refractive index is transmitted through the reflective layer, and enters the radiation irradiation detecting photodetector, which detects a start of radiation irradiation.
    • 辐射检测器包括传感器面板,闪烁体面板,反射层和从辐射接收表面侧依次层叠的辐射照射检测光电检测器。 通过病人身体传播的辐射通过传感器面板进入闪烁体面板,并被转换成光。 转换的光通过全内反射在闪烁器面板中的柱状晶体传播。 除了光线到达传感器面板,同时保持物到达反射层。 到达传感器面板的光由光电转换器检测。 在到达反射层的光中,具有较高折射率的短波长分量被镜面反射到传感器面板。 具有相对较低折射率的长波长分量透射穿过反射层,并进入检测辐射开始的辐射照射检测光电检测器。
    • 65. 发明申请
    • CAPSULE ENDOSCOPE AND CAPSULE ENDOSCOPE SYSTEM
    • 胶囊内窥镜和胶囊内窥镜系统
    • US20090192351A1
    • 2009-07-30
    • US12361298
    • 2009-01-28
    • Naoyuki NISHINO
    • Naoyuki NISHINO
    • A61B1/04
    • A61B1/041A61B1/00016A61B1/045
    • When a program is started upon turning on a power, a capsule endoscope (CE) is activated under a normal shooting mode and starts shooting images with light sources on. Using a remote controller for mode change, a mode change command is emitted to the CE. The image data thus obtained is input to a mode changer. The mode changer analyzes the image data and switches to a setting change mode when the image data is recognized as the mode change command. A two-dimensional code is displayed on a monitor of a command production device. The two-dimensional code is shot with a CCD. The image data thus obtained is input to a setting changer. The setting changer rewrites an argument in a setting value table to an argument designated by the setting change command.
    • 当打开电源开始程序时,在正常拍摄模式下启动胶囊型内窥镜(CE),并开始以光源打开图像。 使用遥控器进行模式切换,将向CE发出模式更改命令。 这样获得的图像数据被输入到模式更换器。 当图像数据被识别为模式改变命令时,模式转换器分析图像数据并切换到设置改变模式。 在命令生产装置的监视器上显示二维码。 二维码用CCD拍摄。 这样获得的图像数据被输入到设置改变器。 设置更改器将设置值表中的参数重写为由设置更改命令指定的参数。
    • 66. 发明申请
    • CAPSULE ENDOSCOPE, METHOD OF CONTROLLING THE SAME, AND INFORMATION MANAGER
    • 胶囊内窥镜,其控制方法和信息管理器
    • US20090192348A1
    • 2009-07-30
    • US12360582
    • 2009-01-27
    • Naoyuki NISHINO
    • Naoyuki NISHINO
    • A61B1/045
    • A61B1/041A61B1/00009A61B1/00016A61B1/00036A61B2560/0209
    • A capsule endoscope swallowable in a body is provided, and includes an image pickup device for picking up an image in the body. A transmitter externally transmits information of the image. By use of an acceleration sensor, a capsule moving speed is detected in the body. A CPU as pixel number changer changes a pixel number of the image, namely resolution of the image according to information of the capsule moving speed. The CPU sets the pixel number lower according to lowness of the capsule moving speed. Also, the CPU sets the pixel number lower according to lowness of a capsule moving distance, and/or according to highness of similarity degree between plural consecutive images. Preferably, the CPU sets the pixel number by at least one of pixel binning, pixel thinning and pixel averaging.
    • 本发明提供一种在体内可以吞咽的胶囊型内窥镜,具备拍摄体内图像的图像拾取装置。 发射机外部发送图像信息。 通过使用加速度传感器,在体内检测胶囊移动速度。 作为像素数变换器的CPU改变图像的像素数,即根据胶囊移动速度的信息来分辨图像。 CPU根据胶囊移动速度的低点设置像素数较少。 此外,CPU根据胶囊移动距离的低度和/或根据多个连续图像之间的相似度的高度来设置像素数较低。 优选地,CPU通过像素分档,像素稀疏和像素平均中的至少一个来设置像素数。
    • 67. 发明申请
    • CAPSULE ENDOSCOPE, CAPSULE ENDOSCOPIC SYSTEM, AND ENDOSCOPE CONTROL METHOOD
    • 胶囊内镜,胶囊内镜系统和内镜控制
    • US20080242926A1
    • 2008-10-02
    • US12046140
    • 2008-03-11
    • Naoyuki NISHINO
    • Naoyuki NISHINO
    • A61B1/04
    • A61B1/04A61B1/041
    • A capsule endoscope system includes a capsule endoscope and a receiver. The capsule endoscope has plural image pickup units for endoscopic imaging by passing a gastrointestinal tract in a body. The receiver for wireless communication with the capsule endoscope receives and stores image data from the capsule endoscope. The receiver includes a data analyzer for retrieving position relationship data expressing a position relationship of the image pickup units to a target region in the gastrointestinal tract. A CPU of the receiver produces a command signal according to the position relationship data for determining a number of frames of imaging per unit time for respectively the plural image pickup units. The capsule endoscope includes a CPU for controlling operation of the plural image pickup units according to the command signal from the receiver.
    • 胶囊型内窥镜系统包括胶囊型内窥镜和接收器。 胶囊型内窥镜具有通过胃肠道通过体内而进行内窥镜成像的多个摄像单元。 用于与胶囊型内窥镜无线通信的接收器从胶囊型内窥镜接收并存储图像数据。 接收机包括数据分析器,用于检索表示摄像单元与胃肠道中的目标区域的位置关系的位置关系数据。 接收机的CPU根据用于分别确定多个图像拾取单元的单位时间的成像帧数的位置关系数据产生命令信号。 胶囊型内窥镜具有CPU,用于根据来自接收器的命令信号控制多个摄像单元的动作。
    • 68. 发明申请
    • RADIOGRAPHIC IMAGE DETECTING APPARATUS AND RADIOGRAPHIC IMAGE CAPTURING SYSTEM
    • 放射图像检测装置和放射图像捕获系统
    • US20120132824A1
    • 2012-05-31
    • US13302699
    • 2011-11-22
    • Naoyuki NISHINONaoto IWAKIRI
    • Naoyuki NISHINONaoto IWAKIRI
    • G01T1/16
    • H04N5/32
    • A radiographic image detecting apparatus and a radiographic image capturing system are provided. The radiographic image detecting apparatus includes photoelectric conversion elements for generating electric charge by emission of radiation, a bias line through which a bias voltage is supplied to the photoelectric conversion elements, a power supply for applying the bias voltage to the photoelectric conversion elements through the bias line, a current detector for detecting a bias current flowing through the bias line based on a voltage drop across a resistor inserted in the bias line, a first amplifying circuit, a second amplifying circuit connected to an output of the first amplifying circuit, and a controller for correcting the electric signal by increasing a gain of the second amplifying circuit depending on decrease in a sensitivity of the photoelectric conversion element, the decrease being caused by the voltage drop.
    • 提供放射线照相图像检测装置和放射线图像拍摄系统。 射线照相图像检测装置包括用于通过发射辐射产生电荷的光电转换元件,向光电转换元件提供偏置电压的偏置线,用于通过偏置将偏置电压施加到光电转换元件的电源 线路,用于基于插入在偏置线路中的电阻器上的电压降检测流过偏置线路的偏置电流的电流检测器,第一放大电路,连接到第一放大电路的输出的第二放大电路和 控制器,用于通过根据光电转换元件的灵敏度的降低增加第二放大电路的增益来校正电信号,该降低是由电压降引起的。