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    • 2. 发明申请
    • RADIATION THERAPY DEVICE CONTROLLER, PROCESSING METHOD AND PROGRAM FOR SAME
    • 辐射治疗装置控制器,处理方法和程序
    • US20130266202A1
    • 2013-10-10
    • US13993944
    • 2011-10-27
    • Masahiro YamadaYasunobu SuzukiKunio Takahashi
    • Masahiro YamadaYasunobu SuzukiKunio Takahashi
    • G06T11/00
    • G06T11/003A61B6/032A61B6/5288A61B6/541A61N5/1049A61N2005/1061
    • A radiation therapy device controller identifies a pixel on a straight line connecting a ray source and a sensor array, and calculates a luminance update amount candidate value for each identified pixel based on a ratio of a change amount for the pixel on the straight line indicating the living body to a sum of change amounts from a luminance value of a pixel corresponding to a correlated computed tomography image correlated with a computed tomography image of an update target of a luminance value of the identified pixel. Also, the control device calculates a luminance update amount of each identified pixel using the luminance update amount candidate value of each identified pixel calculated for a plurality of rotation angles, and updates the luminance value of each corresponding pixel of the computed tomography image of the update target using the luminance update amount of each identified pixel.
    • 放射线治疗装置控制器识别连接射线源和传感器阵列的直线上的像素,并且基于直线上的像素的变化量的比率来计算每个识别的像素的亮度更新量候选值, 生物体相对于与所识别的像素的亮度值的更新对象的计算机断层摄影图像相关的相关计算机断层摄影图像的像素的亮度值的变化量的和。 此外,控制装置使用针对多个旋转角度计算的每个识别像素的亮度更新量候补值来计算每个识别像素的亮度更新量,并且更新计算机断层摄影图像的每个对应像素的亮度值 使用每个识别的像素的亮度更新量进行目标。
    • 3. 发明申请
    • RADIATION THERAPY APPARATUS CONTROL METHOD AND RADIATION THERAPY APPARATUS CONTROLLER
    • 辐射治疗装置控制方法和放射治疗装置控制器
    • US20110196230A1
    • 2011-08-11
    • US12811125
    • 2009-11-27
    • Shigeru NishimotoTakanobu HandaKunio TakahashiMasahiro Yamada
    • Shigeru NishimotoTakanobu HandaKunio TakahashiMasahiro Yamada
    • A61B6/00
    • A61N5/103A61N5/1037
    • A radiation therapy apparatus control method includes: calculating a plurality of degrees of similarity corresponding to a plurality of matching target areas based on a radiographic image; calculating a specific image position where a specific image area corresponding to a maximum value of the degrees of similarity out of the matching target areas is positioned in the radiographic image; and calculating a drive amount with which a therapeutic radiation ray irradiation device is driven, based on the specific image position. The operation of calculating the one degree of similarity corresponding to the one matching target region out of the degrees of similarity includes: referring to a template table in which the plurality of matching target areas are associated with a plurality of sets of templates to calculate a set of templates corresponding to the one matching target area out of the plurality of sets of templates; and detecting, from the set of templates, a similar template most similar to a matching target image displayed in the one matching target area of the radiographic image.
    • 放射线治疗装置控制方法包括:基于放射线图像计算与多个匹配目标区域相对应的多个相似度; 计算与匹配目标区域的相似度的最大值相对应的特定图像区域位于放射线照相图像中的特定图像位置; 并且基于特定图像位置计算驱动治疗射线照射装置的驱动量。 在相似度范围内计算与一个匹配目标区域相对应的一个相似程度的操作包括:参考其中多个匹配目标区域与多个模板集相关联的模板表,以计算一组 对应于多组模板中的一个匹配目标区域的模板; 以及从所述一组模板中检测与所述放射线照相图像的一个匹配目标区域中显示的匹配目标图像最相似的类似模板。
    • 6. 发明授权
    • Method for manufacturing lepidocrocite
    • 菱镁矿生产方法
    • US4729846A
    • 1988-03-08
    • US4943
    • 1987-01-20
    • Yasushi MatsuiNorio KoikeKunio TakahashiHiroshi Matsue
    • Yasushi MatsuiNorio KoikeKunio TakahashiHiroshi Matsue
    • H01F1/11C01G49/02C01G49/06
    • C01G49/06C01P2004/52C01P2006/42
    • Lepidocrocite (.gamma.-FeOOH) with an large specific surface area and a uniform particle size is provided by a method comprising preparing a suspension of ferrous hydroxide at a pH of 6.5 to 7.5 by adding a ferrous salt solution with an alkali solution in an amount of 0.4 to 0.7 times the theoretical amount for converting all the ferrous salt to ferrous hydroxide, blowing an oxygen-containing gas into the suspension to form a seed crystal of .gamma.-FeOOH, completing the generation reaction of .gamma.-FeOOH by blowing an oxygen-containing gas into the suspension while adding an alkali solution to keep the pH of the suspension within a range of 3 to 5, in which an Si concentration of the suspensions for seed reaction and for generation reaction of .gamma.-FeOOH is controlled to be within 5 to 30 ppm.
    • 通过以下方法提供具有大的比表面积和均匀粒径的鳞状赤铁矿(γ-FeOOH),该方法包括通过将亚铁盐溶液与碱溶液一起加入至pH 6.5至7.5的方法制备氢氧化亚铁悬浮液 将所有亚铁盐转化为氢氧化亚铁的理论量的0.4〜0.7倍,向混悬液中吹入含氧气体,形成γ-FeOOH晶种,通过吹入含氧气体完成γ-FeOOH的发生反应 将气体加入到悬浮液中,同时加入碱溶液以将悬浮液的pH保持在3至5的范围内,其中用于种子反应的悬浮液和γ-FeOOH的发生反应的Si浓度被控制在5〜 30 ppm。
    • 9. 发明申请
    • RADIATION THERAPY DEVICE CONTROLLER, PROCESSING METHOD AND PROGRAM FOR SAME
    • 辐射治疗装置控制器,处理方法和程序
    • US20130274539A1
    • 2013-10-17
    • US13994986
    • 2011-10-24
    • Masahiro YamadaYasunobu SuzukiKunio Takahashi
    • Masahiro YamadaYasunobu SuzukiKunio Takahashi
    • A61N5/10
    • A61N5/1039A61N5/1049A61N5/1067A61N2005/1054A61N2005/1059A61N2005/1062
    • This radiation therapy device controller selects, for a plurality of body motion phases, computed tomography image data obtained which shows a diseased portion, and generates, for each rotation angles of a ray source and a sensor array, a reconstructed image. The control device generates a radiation projection image which shows the diseased portion when the radiation is radiated if the rotation angle is a predetermined rotation angle, compares the reconstructed image of each of the plurality of body motion phases with the radiation projection image, and determines a body motion phase indicated by a reconstructed image in which a difference is small, to be a current respiratory phase. As a result, a position of the diseased portion calculated for the computed tomography image data in the computed tomography image data group of the respiratory phase in advance is identified to be a current position of the diseased portion.
    • 该放射治疗装置控制器针对多个身体运动相位选择显示患病部位的计算机断层摄影图像数据,并且对于射线源和传感器阵列的每个旋转角度生成重建图像。 当旋转角度为预定旋转角度时,控制装置产生放射线辐射时的病变部位的放射线投影图像,将多个体动相各部的重建图像与放射线投射图像进行比较, 由差异较小的重建图像指示的身体运动相位成为当前的呼吸相位。 结果,预先将计算机断层摄影图像数据计算出的断层摄影图像数据组中计算出的患病部位的位置识别为患病部位的当前位置。
    • 10. 发明授权
    • Radiotherapy apparatus controller and irradiation method
    • 放射治疗仪控制器及照射方法
    • US08005190B2
    • 2011-08-23
    • US12549824
    • 2009-08-28
    • Osamu ShibuyaShuji KanekoKunio Takahashi
    • Osamu ShibuyaShuji KanekoKunio Takahashi
    • A61N5/10
    • A61N5/1049A61N2005/1054A61N2005/1061
    • A radiotherapy apparatus controller includes: a portal image taking unit; a gantry position collector; a marker position calculator; and a marker position table generator. The portal image taking unit takes a first transmission image, in which a marker member positioned at a predetermined position is shown, by using therapeutic radiation and an imager. The gantry position collector collects a first gantry position at which a gantry is positioned when the first transmission image is taken from a sensor measuring a position at which the gantry is positioned, the gantry supporting the imager and a therapeutic radiation radiating device which radiates the therapeutic radiation. The marker position calculator calculates a first marker position at which the marker member is shown in the first transmission image. The marker position table generator updates a marker position table, which correlates a plurality of gantry positions with a plurality of marker positions, so that the first gantry position corresponds to the first marker position.
    • 放射治疗装置控制器包括:门静脉图像摄取单元; 台架收集器 标记位置计算器 和标记位置表生成器。 门静脉图像摄取单元采用第一透射图像,其中示出了位于预定位置处的标记构件,通过使用治疗辐射和成像器。 当从测量台架所在位置的传感器取得第一透射图像时,台架位置收集器收集第一台架位置,在该第一台架位置,当第一透射图像被取自测量台架所在位置的传感器,支撑成像器的台架和辐射治疗 辐射。 标记位置计算器计算在第一透射图像中显示标记构件的第一标记位置。 标记位置表发生器更新标记位置表,其将多个机架位置与多个标记位置相关联,使得第一机架位置对应于第一标记位置。