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    • 33. 发明申请
    • Processor for Pathologic Diagnosis and Processing System for Pathologic Diagnosis
    • 病理诊断和处理系统用于病理诊断的处理器
    • US20110052017A1
    • 2011-03-03
    • US12859584
    • 2010-08-19
    • Mitsuyoshi SuwakiYoshihiro KawanoMasaaki YamagishiTakashi OkunoIwao Kanamori
    • Mitsuyoshi SuwakiYoshihiro KawanoMasaaki YamagishiTakashi OkunoIwao Kanamori
    • G06K9/00
    • A61B5/002G06F19/321G16H40/20
    • The object is to enable a pathologist to appropriately conduct a diagnosis as well as enabling the pathologist to quickly proceed with the pathologic diagnosis. A processor for pathologic diagnosis comprises: a diagnosis receiver unit which receives identification information of a patient and diagnosis request information; a pathologist information storage unit which stores information of pathologists; a pathologist selection unit which makes an inquiry to the pathologist information storage unit based on the diagnosis request information received by the diagnosis receiver unit, and selects a pathologist suitable for the diagnosis request information; an image transmission, commander unit which issues a command to send digital image data of the patient stored in an image storage server, to a local server connected to a second network belonged to by a pathologist terminal used by the pathologist selected by the pathologist selection unit; and a diagnosis requesting unit which sends a request for diagnosis of the specimen of the patient, to the pathologist selected by the pathologist selection unit, after the digital image data has been sent to the local server by the image transmission commander unit.
    • 目的是使病理学家适当进行诊断,并使病理学家能够快速进行病理诊断。 用于病理诊断的处理器包括:诊断接收器单元,其接收患者的识别信息和诊断请求信息; 病理学家信息存储单元,其存储病理学家的信息; 病理学家选择单元,其基于由诊断接收单元接收到的诊断请求信息向病理学家信息存储单元进行查询,并选择适合于诊断请求信息的病理学家; 命令单元,发送命令,将存储在图像存储服务器中的患者的数字图像数据发送到由病理学家选择单元选择的病理学家所使用的病理学家终端所连接的第二网络的本地服务器 ; 以及诊断请求单元,其在由图像传输指令单元将数字图像数据发送到本地服务器之后,向病理学家选择单元选择的病理学家发送患者的标本的诊断请求。
    • 36. 发明申请
    • Multiphoton-excitation-type examination apparatus
    • 多光子激发型检查仪
    • US20070120070A1
    • 2007-05-31
    • US11647031
    • 2006-12-27
    • Yoshihiro KawanoTadashi HirataTatsuo NakataHiroshi Sasaki
    • Yoshihiro KawanoTadashi HirataTatsuo NakataHiroshi Sasaki
    • G01J1/58
    • G01N21/6486G01N21/6456
    • The invention provides a multiphoton-excitation-type examination apparatus that efficiently generates a multiphoton-excitation effect, that makes the measurement head compact, and that can be easily adjusted when the measurement head is replaced. The multiphoton-excitation-type examination apparatus comprises a laser light source that oscillates ultrashort pulsed laser light; an optical fiber that transmits the ultrashort pulsed laser light from the laser light source; a support member; a measurement head supported on the support member so as to be movable upwards and downwards and at an angle, and having an optical system that irradiates a specimen with the ultrashort pulsed laser light transmitted by the optical fiber that measures fluorescence or reflected light coming from the specimen; and a dispersion-compensating member, in the measurement head, that compensates for group velocity dispersion of the ultrashort pulsed laser light irradiated onto the specimen.
    • 本发明提供了一种多光子激发型检查装置,其有效地产生使得测量头紧凑,并且在更换测量头时可以容易地调节的多光子激发效果。 多光子激发型检查装置包括:振荡超短脉冲激光的激光光源; 从激光光源发射超短脉冲激光的光纤; 支撑构件; 测量头支撑在支撑构件上,以便可上下移动一定角度,并且具有光学系统,该光学系统用由光纤透射的超短脉冲激光照射样本,该光纤测量荧光或来自 标本; 以及在测量头中补偿照射到样本上的超短脉冲激光的组速度色散的色散补偿部件。
    • 37. 发明申请
    • Connection unit and optical-scanning fluoroscopy apparatus
    • 连接单元和光学扫描透视仪
    • US20060187499A1
    • 2006-08-24
    • US11338578
    • 2006-01-23
    • Yasuaki NatoriKenji KawasakiKenji KarakiYoshihiro Kawano
    • Yasuaki NatoriKenji KawasakiKenji KarakiYoshihiro Kawano
    • H04N1/04
    • G02B21/0064G02B21/0032G02B21/0076G02B21/16
    • When exchanging a dichroic mirror to detect fluorescence of a different wavelength, it is unnecessary to carry out precise positional adjustment, particularly in a compact examination apparatus, and the dichroic mirror can be easily exchanged. The invention provides a connection unit including a light-source optical fiber, removably connected to the light source, for conveying the excitation light from the light source; a collimator lens for collimating the excitation light emitted from the light-source optical fiber to introduce the excitation light to the optical scanning section; and a dichroic mirror for splitting off fluorescence, which is generated in the sample and which returns via the objective lens and the optical scanning section, from a light path of the excitation light and for directing the fluorescence to a photodetector. The light-source optical fiber, the collimator lens, and the dichroic mirror are secured to each other such that optical axes thereof are aligned.
    • 当更换分色镜以检测不同波长的荧光时,不需要进行精确的位置调整,特别是在小型检查装置中,并且可以容易地更换分色镜。 本发明提供了一种连接单元,包括可移除地连接到光源的用于传送来自光源的激发光的光源光纤; 准直透镜,用于准直从光源光纤发射的激发光,以将激发光引入光学扫描部分; 以及用于分离荧光的二向色镜,其在样品中产生,并且经由物镜和光学扫描部分从激发光的光路返回,并将荧光引导到光电检测器。 光源光纤,准直透镜和分色镜彼此固定,使得其光轴对齐。
    • 38. 发明申请
    • Laser-scanning fluoroscopy apparatus
    • 激光扫描透视仪
    • US20060044556A1
    • 2006-03-02
    • US11209693
    • 2005-08-24
    • Yoshihiro Kawano
    • Yoshihiro Kawano
    • G01J3/30G01N21/64
    • G01N21/6456G01J3/021G01J3/0229G01J3/10G01J3/1256G01J3/4406G01J2003/1221G01J2003/1286G01N21/6486G01N2021/6419G01N2021/6421G01N2021/6463
    • Fluorescence emitted from a tissue can be detected efficiently, and excitation light with a plurality of wavelengths can be simultaneously emitted to simultaneously detect fluorescence with a plurality of wavelengths. A laser-scanning fluoroscopy apparatus includes a laser light source of a plurality of wavelengths; a spectroscopic device for splitting laser beams according to wavelength; a focusing lens for focusing the split laser beams; and a wavelength-selecting reflection device which includes a plurality of reflection sections disposed near the focal positions, spaced out at predetermined intervals in a split direction to reflect the laser beams with different wavelengths and a transmission section arranged adjacent to the reflection sections. The laser-scanning fluoroscopy apparatus further includes a diffraction grating for combining the reflected laser beams; a scanning section for two-dimensionally scanning the combined laser beams; an objective optical system for focusing the scanned laser beams onto a tissue; and a photodetector for detecting fluorescence emitted from the tissue. A width dimension, as measured along the split direction, of each reflection section of the wavelength-selecting reflection device is smaller than a width dimension of the transmission section.
    • 可以有效地检测从组织发出的荧光,并且可以同时发射具有多个波长的激发光,以同时检测多个波长的荧光。 激光扫描透视设备包括多个波长的激光光源; 用于根据波长分割激光束的分光装置; 用于聚焦分束激光束的聚焦透镜; 以及波长选择反射装置,其包括设置在聚焦位置附近的多个反射部分,以分割方向以预定间隔隔开以反射具有不同波长的激光束,以及布置在反射部分附近的透射部分。 激光扫描透视装置还包括用于组合反射的激光束的衍射光栅; 用于二维扫描组合的激光束的扫描部分; 用于将扫描的激光束聚焦到组织上的物镜光学系统; 以及用于检测从组织发出的荧光的光电检测器。 波长选择反射装置的每个反射部分沿分割方向测量的宽度尺寸小于透射部分的宽度尺寸。
    • 39. 发明申请
    • Laser-scanning examination apparatus
    • 激光扫描检查仪
    • US20060017920A1
    • 2006-01-26
    • US11182782
    • 2005-07-18
    • Atsuhiro TsuchiyaYoshihiro KawanoYoshihisa TanikawaTadashi Hirata
    • Atsuhiro TsuchiyaYoshihiro KawanoYoshihisa TanikawaTadashi Hirata
    • G01J3/30
    • G01N21/6458G02B21/002G02B21/0064G02B21/0076G02B21/0084G02B21/16
    • The invention reduces the loss of fluorescence intensity obtained from a specimen to acquire clear fluorescence images when irradiating the specimen with ultrashort-pulse laser light produced by a laser light source. The invention provides a laser-scanning examination apparatus including a laser light source for producing ultrashort-pulse laser light; a laser light source for producing continuous-wave laser light; a measurement head including an optical scanning unit for scanning the laser light on a specimen and an objective optical system; an imaging unit for detecting return light from the specimen in response to the ultrashort-pulse laser light; and an imaging unit for detecting return light from the specimen in response to the continuous-wave laser light. The laser light sources and one imaging unit are connected to the measurement head by an optical fiber, and the other imaging unit is connected to the measurement head by another optical fiber with a larger core diameter.
    • 本发明减少了从样品获得的荧光强度的损失,以便在用激光光源产生的超短脉冲激光照射样品时获得清晰的荧光图像。 本发明提供了一种激光扫描检查装置,其包括用于产生超短脉冲激光的激光光源; 用于产生连续波激光的激光源; 测量头,包括用于扫描样本上的激光的光学扫描单元和物镜光学系统; 用于响应于超短脉冲激光来检测来自样本的返回光的成像单元; 以及用于响应于连续波激光来检测来自样本的返回光的成像单元。 激光光源和一个成像单元通过光纤连接到测量头,另一个成像单元通过具有较大芯直径的另一光纤连接到测量头。
    • 40. 发明申请
    • Optical-scanning examination apparatus
    • 光学扫描检查装置
    • US20050211872A1
    • 2005-09-29
    • US11085047
    • 2005-03-22
    • Yoshihiro KawanoTadashi HirataTatsuo NakataYoshihisa Tanikawa
    • Yoshihiro KawanoTadashi HirataTatsuo NakataYoshihisa Tanikawa
    • G02B21/00G02B23/26G02B7/04
    • G02B21/0048G02B21/004G02B21/0076
    • The invention provides an optical-scanning examination apparatus with a simple configuration, in which the resolution of acquired images can be freely changed and in which the fluorescence image intensity and examination depth can be adjusted to suit the purpose of examination. The optical-scanning examination apparatus includes a light source unit; a focusing lens for forming a first intermediate image of excitation light; an imaging lens; a first objective lens; an optical fiber bundle; a second objective lens; and an imaging unit for imaging return light that returns via the second objective lens, the optical fiber bundle, the first objective lens, and the imaging lens. In addition, a scanning mirror device, which is disposed at the first intermediate image position, is formed of a plurality of mirrors that simultaneously receive the first intermediate image and that can be selectively turned on and off.
    • 本发明提供了一种具有简单结构的光学扫描检查装置,其中可以自由地改变所获取的图像的分辨率,并且可以调整荧光图像强度和检查深度以适应检查的目的。 光扫描检查装置包括:光源单元; 用于形成激发光的第一中间图像的聚焦透镜; 成像透镜; 第一个物镜; 光纤束; 第二个物镜; 以及用于对通过第二物镜,光纤束,第一物镜和成像透镜返回的返回光成像的成像单元。 此外,设置在第一中间图像位置的扫描镜装置由同时接收第一中间图像并且可以选择性地打开和关闭的多个反射镜形成。