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    • 1. 发明授权
    • Learning type decision support system
    • 学习型决策支持系统
    • US5175797A
    • 1992-12-29
    • US575951
    • 1990-08-31
    • Motohisa FunabashiTakushi NishiyaMasahiro ObaMikio YodaKazuo KeraKiyomi Mori
    • Motohisa FunabashiTakushi NishiyaMasahiro ObaMikio YodaKazuo KeraKiyomi Mori
    • G06F15/18G06F9/44G06F19/00G06N3/00G06N3/04G06N5/04G06N7/02G06N99/00
    • G06N3/0436Y10S706/90
    • A method and apparatus of a learning type decision support system are provided for improved acquisition of a priori knowledge from the system object and expression of non-linear structures in the object. The system is comprised of a learning module and an executing module for outputting advice and process manipulate command values to system users by receiving input data comprising on-line data and file data. The learning module comprises (1) a symbolized dictionary unit for generating a symbolized dictionary for giving a symbolic name in accordance with a pattern comprised of a combination of the values of the input data by giving examples of a pair of the pattern and the symbolic name; (2) a preprocessing unit for transforming at least a portion of the input data into the symbolic name with reference to the symbolic dictionary generated; and, (3) a model generating unit for determining an unknown parameter contained in a predetermined skeleton model to transform the preprocessed results into desired advice and manipulation command values. The executing module arithmetically processes the input data to output the advice and the manipulation command values by using the symbolized dictionary generated by the learning module and the generated model.
    • 提供了一种学习型决策支持系统的方法和装置,用于从系统对象中改进对先验知识的获取和对象中非线性结构的表达。 该系统包括学习模块和执行模块,用于通过接收包括在线数据和文件数据的输入数据来向系统用户输出建议和处理操作命令值。 学习模块包括:(1)符号字典单元,用于通过给出一对图案和符号名称的示例来生成符号字典,用于根据包括输入数据的值的组合的图案来给出符号名称 ; (2)预处理单元,用于参照所生成的符号字典将输入数据的至少一部分变换为符号名称; (3)模型生成单元,用于确定包含在预定骨架模型中的未知参数,以将预处理结果转换为期望的建议和操作命令值。 执行模块通过使用由学习模块和生成的模型生成的符号化字典来对输入数据进行算术处理以输出建议和操作命令值。
    • 2. 发明授权
    • Laser scanning microscope having a mechanism which prevents stimulation light from reaching a light detector
    • 具有防止刺激光到达光检测器的机构的激光扫描显微镜
    • US07417211B2
    • 2008-08-26
    • US11252564
    • 2005-10-18
    • Tatsuo NakataMasahiro Oba
    • Tatsuo NakataMasahiro Oba
    • G02B7/04G02B21/00F21V9/16
    • G02B21/0064G02B21/0076G02B21/0084
    • A laser scanning microscope which focuses light beams from a laser beam source to a sample by means of an objective lens and detects transmission light from the sample, reflection light, or fluorescence generated from the sample, includes an observation laser scanning optical system which irradiates coherent light from one side of the sample and which carries out scanning the sample, a stimulation laser scanning optical system which irradiates coherent light from an opposite side across the sample and which carries out scanning the sample, an observation light detector provided to be branched from the observation laser scanning optical system, and a light invasion preventing section which prevents the coherent light irradiated from the stimulation laser scanning optical system from invading the observation light detector.
    • 一种激光扫描显微镜,其将来自激光束源的光束通过物镜聚焦到样品,并检测来自样品的透射光,反射光或从样品产生的荧光,其包括观察激光扫描光学系统,其照射相干 来自样品一侧的光并进行扫描样品的激光激光扫描光学系统,其对来自相反侧的相干光照射到样品上并执行扫描样品;观察光检测器,其从 观察激光扫描光学系统和防止从刺激激光扫描光学系统照射的相干光侵入观察光检测器的光入射防止部。
    • 4. 发明授权
    • Biological specimen observation method
    • 生物标本观察法
    • US08786720B2
    • 2014-07-22
    • US12332540
    • 2008-12-11
    • Masahiro ObaNobuyuki Nagasawa
    • Masahiro ObaNobuyuki Nagasawa
    • H04N5/235
    • G06K9/20G06T5/50G06T7/0012G06T2207/20221H04N5/23232H04N5/2352
    • When a biological specimen, such as living cells, biological tissue, or a small animal, is quantitatively observed, the specimen is observed for a long time or over a long period, while maintaining the quantitative properties. Provided is an observation method of observing luminescence or fluorescence emitted from a biological specimen. The observation method includes a referring step of referring to image data previously acquired; an intensity determining step of determining whether the intensity of the image data previously acquired is saturated; an exposure dividing step of dividing the exposure of the image data previously acquired one time into a plurality of exposures when the intensity is determined as being saturated in the intensity determining step; an image acquiring step of acquiring images the same number of times as the number of divided exposures; and an integrating step of integrating the images separately acquired multiple times into a single image.
    • 当定量观察诸如活细胞,生物组织或小动物的生物样本时,长时间或长时间观察样本,同时保持定量性质。 提供了观察从生物样本发出的发光或荧光的观察方法。 观察方法包括参照先前获取的图像数据的参考步骤; 强度确定步骤,确定先前获取的图像数据的强度是否饱和; 曝光分割步骤,当在所述强度确定步骤中确定所述强度被确定为饱和时,将先前获取的一次的图像数据的曝光除以多个曝光; 图像获取步骤,获取与分割曝光数相同次数的图像; 以及将多次分开获取的图像集成到单个图像中的整合步骤。
    • 5. 发明申请
    • OBJECTIVE-OPTICAL-SYSTEM POSITIONING APPARATUS AND EXAMINATION APPARATUS
    • 目标 - 光学系统定位装置和检查装置
    • US20100309547A1
    • 2010-12-09
    • US12790112
    • 2010-05-28
    • Tadashi HIRATAMasahiro Oba
    • Tadashi HIRATAMasahiro Oba
    • G02B21/02
    • G02B21/0012A61B1/00154A61B1/313A61B1/32A61B2503/40G01N21/01G02B21/02G02B21/248
    • An objective-optical-system positioning apparatus includes a positioning unit interposed between an objective optical system having a small-diameter end section and an examination optical system for examining light collected by the objective optical system; and a substantially cylindrical support unit, one end of which is secured to an organism, and which internally supports the small-diameter end section in a detachable manner. The positioning unit includes a holding part for holding the objective optical system and a moving mechanism supporting the holding part such that the holding part is freely movable in a direction intersecting with a direction of an optical axis of the objective optical system, and the other end of the support unit has a tapered inner surface whose diameter gradually increases toward the tip.
    • 一种物镜光学系统定位装置,包括:位于具有小直径端部的物镜光学系统和用于检查物镜光学系统收集的光的检查光学系统之间的定位单元; 以及一个基本上圆柱形的支撑单元,其一端固定到生物体上,并以可拆卸的方式内部支撑该小直径端部。 定位单元包括用于保持物镜光学系统的保持部件和支撑保持部件的移动机构,使得保持部件能够在与物镜光学系统的光轴方向相交的方向上自由移动,另一端 的支撑单元具有锥形内表面,其直径朝着尖端逐渐增加。
    • 6. 发明申请
    • Laser scanning microscope
    • 激光扫描显微镜
    • US20060086887A1
    • 2006-04-27
    • US11252564
    • 2005-10-18
    • Tatsuo NakataMasahiro Oba
    • Tatsuo NakataMasahiro Oba
    • G02B27/40H01J40/14G02B27/64
    • G02B21/0064G02B21/0076G02B21/0084
    • A laser scanning microscope which focuses light beams from a laser beam source to a sample by means of an objective lens and detects transmission light from the sample, reflection light, or fluorescence generated from the sample, includes an observation laser scanning optical system which irradiates coherent light from one side of the sample and which carries out scanning the sample, a stimulation laser scanning optical system which irradiates coherent light from an opposite side across the sample and which carries out scanning the sample, an observation light detector provided to be branched from the observation laser scanning optical system, and a light invasion preventing section which prevents the coherent light irradiated from the stimulation laser scanning optical system from invading the observation light detector.
    • 一种激光扫描显微镜,其将来自激光束源的光束通过物镜聚焦到样品,并检测来自样品的透射光,反射光或从样品产生的荧光,其包括观察激光扫描光学系统,其照射相干 来自样品一侧的光并进行扫描样品的激光激光扫描光学系统,其对来自相反侧的相干光照射到样品上并执行扫描样品;观察光检测器,其从 观察激光扫描光学系统和防止从刺激激光扫描光学系统照射的相干光侵入观察光检测器的光入射防止部。
    • 7. 发明授权
    • Objective-optical-system positioning apparatus and examination apparatus
    • 物镜光学定位装置及检查装置
    • US08405903B2
    • 2013-03-26
    • US12790112
    • 2010-05-28
    • Tadashi HirataMasahiro Oba
    • Tadashi HirataMasahiro Oba
    • G02B21/00G02B21/02
    • G02B21/0012A61B1/00154A61B1/313A61B1/32A61B2503/40G01N21/01G02B21/02G02B21/248
    • An objective-optical-system positioning apparatus includes a positioning unit interposed between an objective optical system having a small-diameter end section and an examination optical system for examining light collected by the objective optical system; and a substantially cylindrical support unit, one end of which is secured to an organism, and which internally supports the small-diameter end section in a detachable manner. The positioning unit includes a holding part for holding the objective optical system and a moving mechanism supporting the holding part such that the holding part is freely movable in a direction intersecting with a direction of an optical axis of the objective optical system, and the other end of the support unit has a tapered inner surface whose diameter gradually increases toward the tip.
    • 一种物镜光学系统定位装置,包括:位于具有小直径端部的物镜光学系统和用于检查物镜光学系统收集的光的检查光学系统之间的定位单元; 以及一个基本上圆柱形的支撑单元,其一端固定到生物体上,并以可拆卸的方式内部支撑该小直径端部。 定位单元包括用于保持物镜光学系统的保持部件和支撑保持部件的移动机构,使得保持部件能够在与物镜光学系统的光轴方向相交的方向上自由移动,另一端 的支撑单元具有锥形内表面,其直径朝着尖端逐渐增加。
    • 9. 发明授权
    • Microscope system
    • 显微镜系统
    • US07477775B2
    • 2009-01-13
    • US10883340
    • 2004-07-01
    • Masahiro ObaTetsuya Koike
    • Masahiro ObaTetsuya Koike
    • G06K9/00
    • G02B21/006G02B21/0024G02B21/008G06K9/00127
    • A CPU executes a process for building an image, which is projected on three planes such as XY, YZ, and XZ planes mutually intersecting in three-dimensional space, of a three-dimensional image obtained by stacking in a direction of an optical axis a plurality of two-dimensional confocal images, which are obtained by changing the focal position of an objective lens against a sample in the direction of the optical axis of the objective lens. Then, a target region implemented by integrating pixels, whose points projected on the three planes are included in regions respectively specified for the three planes, among pixels configuring each of the two-dimensional confocal image.
    • CPU执行用于构建图像的处理,该图像投影在三维空间中相互相交的三维平面(例如XY,YZ和XZ平面)上,通过沿光轴a的方向堆叠获得的三维图像 多个二维共焦图像,其通过在物镜的光轴方向上相对于样本改变物镜的焦点位置而获得。 然后,在构成每个二维共焦图像的像素中,通过对投影在三个平面上的点进行积分的像素来实现的目标区域被包括在分别为三个平面指定的区域中。
    • 10. 发明申请
    • IN VIVO EXAMINATION METHOD
    • 体检检查方法
    • US20080253968A1
    • 2008-10-16
    • US12100078
    • 2008-04-09
    • Masahiro ObaNobuhiko Onda
    • Masahiro ObaNobuhiko Onda
    • A61K49/00
    • G01N21/6456G01N21/6428
    • It is possible to perform quantitative examination of biological tissue even with a solution composed of a near-infrared fluorescent dye and a polypeptide. An image acquired before administering a reagent is subtracted from an image acquired after administering the reagent to remove regions appearing in both images, such as autofluorescence, thus obtaining an image in which only detected fluorescence affected by administration of the reagent is extracted. Because tumors have many (leaky) blood vessels, regions having many areas of high intensity in the extracted image can be recognized as tumors.
    • 即使用近红外荧光染料和多肽组成的溶液,也可以对生物组织进行定量检查。 从施用试剂后获取的图像中减去在施用试剂之前获取的图像以除去两个图像中出现的区域,例如自发荧光,从而获得其中仅提取检测到的受试剂施用影响的荧光的图像。 因为肿瘤有许多(泄漏)血管,所以在提取的图像中具有许多高强度区域的区域可被认为是肿瘤。