会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Radiographic image processing apparatus and radiographic image processing program
    • 射线照相图像处理装置和放射线图像处理程序
    • US08831325B2
    • 2014-09-09
    • US13519773
    • 2009-12-29
    • Yoshinori Ohno
    • Yoshinori Ohno
    • G06K9/00G06K9/34G06K9/40A61B6/00G06T7/00
    • G06T7/0083A61B6/4233A61B6/5258G06T7/12G06T7/168G06T2207/10116G06T2207/20056G06T2207/20061G06T2207/20064G06T2207/30004
    • A radiographic image processing apparatus in this invention decreases a spatial resolution twice in total by a low-frequency image generating device and a low-frequency characteristic generating device. Thereby an influence such as noise and thus calculation amounts are decreased. Moreover, excessive characteristic amounts (patterns) not removed among characteristic amounts extracted through the low-frequency image generating device and a characteristic extracting device can be decreased by decrease of the spatial resolution by the low-frequency characteristic generating device. Consequently, influence such as noise and calculation amounts can be decreased for the low-frequency characteristics generated by the low-frequency characteristic generating device and a radiation area extracted by an area extracting device on the latter stage. As a result, influences such as noise can be decreased for achieving characteristic extraction and area extraction with high accuracy, and thus calculation amounts can be decreased.
    • 本发明的放射线照相图像处理装置通过低频图像生成装置和低频特征生成装置将空间分辨率总共降低了两倍。 因此,减少了诸如噪声和因此计算量的影响。 此外,通过低频特征产生装置的空间分辨率的降低,可以减少通过低频图像产生装置和特征提取装置提取的特征量中未被去除的过多的特征量(图案)。 因此,对于由低频特征产生装置产生的低频特性和由后级的区域提取装置提取的辐射面积,可以降低诸如噪声和计算量的影响。 结果,为了实现高精度的特征提取和区域提取,可以降低噪声等影响,能够减少计算量。
    • 2. 发明授权
    • Radiological image area extracting apparatus, radiological image area extraction program, and radiographic apparatus
    • 放射图像区域提取装置,放射图像区域提取程序和放射线照相装置
    • US08483470B2
    • 2013-07-09
    • US13079863
    • 2011-04-05
    • Yoshinori Ohno
    • Yoshinori Ohno
    • G06K9/00B41M5/00
    • A61B6/5211A61B6/505A61B6/5258G06T7/12G06T7/44G06T2207/10116G06T2207/30061
    • An image area extracting device includes a low-frequency image generating unit for generating a low-frequency image from a radiological image by a frequency filter process lower than a spatial frequency inside an object area, a luminance variation image generating unit for generating a luminance variation image by detecting luminance variations of the low-frequency image, and a boundary selecting unit for selecting boundary pixels located on a boundary of an area of interest based on pixel values of the luminance variation image and the low-frequency image. Influences of noise components or fine structural components inside a patient M are reduced by generating the low-frequency image, which facilitates recognition of a contour shape of the patient M. The boundary pixels are selected based on the low-frequency image and the luminance variation image generated from the low-frequency image. This assures highly accurate and stable area extraction.
    • 图像区域提取装置包括:低频图像生成单元,用于通过比目标区域内的空间频率低的频率滤波处理从放射线图像生成低频图像;亮度变化图像生成单元,其生成亮度变化量 通过检测低频图像的亮度变化的图像,以及用于基于亮度变化图像和低频图像的像素值来选择位于感兴趣区域的边界上的边界像素的边界选择单元。 通过产生低频图像来减少患者M内噪声成分或精细结构部件的影响,便于识别患者M的轮廓形状。边界像素是基于低频图像和亮度变化来选择的 从低频图像生成的图像。 这保证了高精度和稳定的面积提取。
    • 3. 发明申请
    • Image combination device
    • 图像组合装置
    • US20070040929A1
    • 2007-02-22
    • US11586264
    • 2006-10-25
    • Yoshinori Ohno
    • Yoshinori Ohno
    • H04N5/235
    • G06T5/50G06T5/007G06T5/40G06T2207/10144G06T2207/20212
    • An image combination device which obtains a wide dynamic range image through combination of at least two images with different light exposure, including a photographing means for photographing an appropriate light exposure image and a different light exposure light image from the appropriate light exposure image, a dividing means for dividing a lower frequency region from the appropriate light exposure image on a frequency information of the appropriate light exposure image, a statistic means for calculating a statistics value relating to characteristic values of pixel signals in the lower frequency region, a determining means for determining a pixel signal level to divide pixel signals of the appropriate light exposure image into an appropriate region and a bright or dark region on the statistics value, and a combining means for correcting the appropriate light exposure image and the different light exposure image in tone commensurate with a light exposure ratio thereof and combining the appropriate light exposure image and the different light exposure image on the pixel signal level.
    • 一种图像组合装置,其通过组合具有不同曝光的至少两个图像来获得宽动态范围图像,包括用于从适当的曝光图像拍摄适当的曝光图像和不同的曝光光图像的拍摄装置,分割 用于将适当的曝光图像的较低频率区域与适当的曝光图像的频率信息相分离的装置,用于计算与较低频率区域中的像素信号的特征值有关的统计值的统计装置,用于确定 像素信号电平,用于将适当的曝光图像的像素信号分割为统计值的适当区域和明暗区域;以及合成装置,用于校正适当的曝光图像和不同的曝光图像,其色调与 其曝光率和组合 适当的曝光图像和像素信号电平上的不同曝光图像。
    • 4. 发明授权
    • Self-diagnosis system for vehicle and diagnosis method using same
    • 车辆自诊断系统及其诊断方法
    • US06449539B1
    • 2002-09-10
    • US09573344
    • 2000-05-19
    • Yoshinori OhnoTateo Kume
    • Yoshinori OhnoTateo Kume
    • G01M1700
    • G05B23/0229G05B23/0272
    • A self-diagnosis system for a vehicle, with which it is possible, without requiring skill and practice, to realize running according to a running pattern and easily and certainly cause an ECU to execute a self-diagnosis. The self-diagnosis system comprises: a vehicle state detecting unit for detecting a vehicle state; a data processing unit for executing a diagnosis of a diagnosis object device on the basis of a predetermined running pattern preset in correspondence with the diagnosis object device and a vehicle state detected by the vehicle state detecting unit when running according to the running pattern is carried out; and a diagnosis data processing unit, data-transferably connected to the data processing unit, for obtaining and displaying data from the data processing unit, and under a condition that the diagnosis data processing unit is data-transferably connected to the data processing unit and the vehicle is run in a predetermined running pattern corresponding to a diagnosis object device in order to execute a diagnosis to the diagnosis object device, the diagnosis data processing unit displays that an execution condition is established when the execution condition of the diagnosis corresponding to the running pattern is established.
    • 一种用于车辆的自诊断系统,可以在不需要技术和实践的情况下根据运行模式实现运行,并且容易且肯定地使得ECU执行自诊断。 所述自诊断系统包括:车辆状态检测单元,用于检测车辆状态; 数据处理单元,用于根据与诊断对象装置相对应地预先设定的预定行驶模式和根据行驶模式行驶时由车辆状态检测单元检测出的车辆状态执行诊断对象装置的诊断。 ; 以及诊断数据处理单元,数据可传输地连接到所述数据处理单元,用于从所述数据处理单元获取和显示数据,并且在所述诊断数据处理单元可数据传输地连接到所述数据处理单元和 车辆以对应于诊断对象装置的预定运行模式运行,以便对诊断对象装置执行诊断,诊断数据处理单元显示当与运行模式相对应的诊断执行条件时建立执行条件 成立
    • 6. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US08886078B2
    • 2014-11-11
    • US13399573
    • 2012-02-17
    • Yoshinori OhnoMitsuru Satou
    • Yoshinori OhnoMitsuru Satou
    • G03G21/20G03G15/01
    • G03G15/0189G03G21/206G03G2215/0132
    • An intake fan (62) is provided on a side surface of an exposure device (40) provided below a plurality of image formation portions (20) far from a fixing unit (30), and a ventilation path (70) is formed on a side surface of the exposure device (40) on a back side, and outside air sucked by the intake fan (62) into a body of an apparatus is fed through the ventilation path (70) to the back side of the image formation portion (20K) closest to the fixing unit (30). The air flows through a space between a division plate (80) and the image formation portions (20) toward a discharge fan (61), and the image formation portions (20) are air-cooled sequentially from the image formation portion (20K). Thus, it is possible to effectively air-cool the image formation portions without increasing the size of the apparatus.
    • 在设置在远离定影单元(30)的多个图像形成部分(20)下方的曝光装置(40)的侧表面上设置有进气扇(62),并且通风路径(70)形成在 背面侧的曝光装置(40)的侧表面和由吸入风扇(62)吸入设备的主体的外部空气通过通气路径(70)供给到图像形成部分的后侧( 最靠近固定单元(30)的20K)。 空气通过划分板(80)和图像形成部分(20)之间的空间朝向排出风扇(61)流动,并且图像形成部分(20)从图像形成部分(20K)依次进行风冷, 。 因此,可以在不增加设备尺寸的情况下有效地对图像形成部分进行空气冷却。
    • 8. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20120213545A1
    • 2012-08-23
    • US13399573
    • 2012-02-17
    • Yoshinori OHNOMitsuru Satou
    • Yoshinori OHNOMitsuru Satou
    • G03G21/20
    • G03G15/0189G03G21/206G03G2215/0132
    • An intake fan (62) is provided on a side surface of an exposure device (40) provided below a plurality of image formation portions (20) far from a fixing unit (30), and a ventilation path (70) is formed on a side surface of the exposure device (40) on a back side, and outside air sucked by the intake fan (62) into a body of an apparatus is fed through the ventilation path (70) to the back side of the image formation portion (20K) closest to the fixing unit (30). The air flows through a space between a division plate (80) and the image formation portions (20) toward a discharge fan (61), and the image formation portions (20) are air-cooled sequentially from the image formation portion (20K). Thus, it is possible to effectively air-cool the image formation portions without increasing the size of the apparatus.
    • 在设置在远离定影单元(30)的多个图像形成部分(20)下方的曝光装置(40)的侧表面上设置有进气扇(62),并且通风路径(70)形成在 背面侧的曝光装置(40)的侧表面和由吸入风扇(62)吸入设备的主体的外部空气通过通气路径(70)供给到图像形成部分的后侧( 最靠近固定单元(30)的20K)。 空气通过划分板(80)和图像形成部分(20)之间的空间朝向排出风扇(61)流动,并且图像形成部分(20)从图像形成部分(20K)顺序地冷却, 。 因此,可以在不增加设备尺寸的情况下有效地对图像形成部分进行空气冷却。
    • 9. 发明申请
    • RADIOLOGICAL IMAGE AREA EXTRACTING APPARATUS, RADIOLOGICAL IMAGE AREA EXTRACTION PROGRAM, AND RADIOGRAPHIC APPARATUS
    • 放射图像提取装置,放射图像区域提取程序和放射性装置
    • US20110305381A1
    • 2011-12-15
    • US13079863
    • 2011-04-05
    • Yoshinori Ohno
    • Yoshinori Ohno
    • G06K9/00
    • A61B6/5211A61B6/505A61B6/5258G06T7/12G06T7/44G06T2207/10116G06T2207/30061
    • An image area extracting device includes a low-frequency image generating unit for generating a low-frequency image from a radiological image by a frequency filter process lower than a spatial frequency inside an object area, a luminance variation image generating unit for generating a luminance variation image by detecting luminance variations of the low-frequency image, and a boundary selecting unit for selecting boundary pixels located on a boundary of an area of interest based on pixel values of the luminance variation image and the low-frequency image. Influences of noise components or fine structural components inside a patient M are reduced by generating the low-frequency image, which facilitates recognition of a contour shape of the patient M. The boundary pixels are selected based on the low-frequency image and the luminance variation image generated from the low-frequency image. This assures highly accurate and stable area extraction.
    • 图像区域提取装置包括:低频图像生成单元,用于通过比目标区域内的空间频率低的频率滤波处理从放射线图像生成低频图像;亮度变化图像生成单元,其生成亮度变化量 通过检测低频图像的亮度变化的图像,以及用于基于亮度变化图像和低频图像的像素值来选择位于感兴趣区域的边界上的边界像素的边界选择单元。 通过产生低频图像来减少患者M内噪声成分或精细结构部件的影响,便于识别患者M的轮廓形状。边界像素是基于低频图像和亮度变化来选择的 从低频图像生成的图像。 这保证了高精度和稳定的面积提取。