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    • 4. 发明授权
    • Surgical microscope system
    • 手术显微镜系统
    • US5579772A
    • 1996-12-03
    • US259020
    • 1994-06-13
    • Masahiko KinukawaMasami HamadaHiroshi FujiwaraTakashi FukayaMasanori KanedaToyoharu HanzawaSusumu TakahashiNobuaki AkuiKatsuyuki SaitoYoshinao Oaki
    • Masahiko KinukawaMasami HamadaHiroshi FujiwaraTakashi FukayaMasanori KanedaToyoharu HanzawaSusumu TakahashiNobuaki AkuiKatsuyuki SaitoYoshinao Oaki
    • G02B21/00G02B21/22
    • G02B21/0012G02B21/22
    • A surgical microscope system having a stereoscopic optical system, an imaging unit, and a monitor display. The stereoscopic optical system has two optical paths and forms a 3D image of an object. The imaging unit forms two images of the object from two light beams focused in the optical paths. The monitor display displays the images of the object which the imaging unit has formed. The surgical microscope system further comprises an observation-light receiving section located in the optical paths for determining an observation field, an observation-light emitting section located in the monitor display for applying the images formed by the imaging unit, and reflectors arranged between the observation-light receiving section and the observation-light emitting section. The observation-light receiving and the observation-light emitting sections are located close to each other and a barrel holds the sections together. Images displayed on the monitor display are projected such that the observer perceives a 3-dimensional virtual image located at a distance from the observer equal to the actual distance between the observer and the object.
    • 具有立体光学系统,成像单元和监视器显示器的手术显微镜系统。 立体光学系统具有两条光路并形成物体的3D图像。 成像单元从聚焦在光路中的两个光束形成物体的两个图像。 显示器显示器显示成像单元形成的物体的图像。 手术显微镜系统还包括位于用于确定观察场的光路中的观察光接收部,位于监视器显示器中的用于施加由成像单元形成的图像的观察光发射部,以及布置在观察者之间的反射器 光接收部和观察发光部。 观察光接收和观察光发射部分彼此靠近定位,并且桶将部分保持在一起。 投影在监视器显示器上的图像,使得观察者感知位于距离观察者一定距离的3维虚像,等于观察者与对象之间的实际距离。
    • 5. 发明授权
    • Surgical microscope
    • 手术显微镜
    • US5748366A
    • 1998-05-05
    • US578386
    • 1995-12-26
    • Koji YasunagaHiroshi FujiwaraMasami HamadaTakashi FukayaMasahiko KinukawaTomonori IshikawaMasanori KanedaTakeshi Okada
    • Koji YasunagaHiroshi FujiwaraMasami HamadaTakashi FukayaMasahiko KinukawaTomonori IshikawaMasanori KanedaTakeshi Okada
    • A61B19/00G02B21/00G02B21/06G02B21/26G02B21/36
    • G02B21/0012A61B90/20
    • To provide a surgical microscope comprising a microscope collimator for enabling the operator to easily recognize the swivel center of the microscope body regardless of what position the microscope body moves for easy setting of the swivel center point of the microscope body, a surgical microscope pivotally supporting a microscope body having, an observation optical system with one point on an observation optical axis of the microscope body as the swivel center. The surgical microscope comprises index projectors as swivel center visible indicators being capable of recognizing the swivel center. This configuration enables the operator to easily recognize the swivel center of the microscope body for easy setting of the swivel center point of the microscope body. Also, to provide a surgical microscope which does not disturb an operator who handles the microscope or performs an operation and also enables the operator to easily observe at every angle from every direction for improving operability, the surgical microscope is capable of changing an observation angle and an observation direction with a gaze point P on an observation optical axis a of a microscope body having an observation optical system as a rotation center. A base unit that can be moved in X, Y, and Z directions is disposed at a position relative to the microscope body and a swivel base rotatable with the gaze point P as a rotation center is installed above the base unit.
    • 为了提供一种包括显微镜准直器的手术显微镜,用于使操作者能够容易地识别显微镜主体的旋转中心,而不管显微镜主体移动什么位置以便容易地设置显微镜体的旋转中心点,手术显微镜可枢转地支撑 显微镜本体具有作为旋转中心的在显微镜主体的观察光轴上具有一个点的观察光学系统。 手术显微镜包括索引投影仪,作为能够识别旋转中心的旋转中心可见指示器。 这种结构使得操作者能够容易地识别显微镜主体的旋转中心,以便容易地设置显微镜主体的旋转中心点。 此外,为了提供不干扰处理显微镜或进行操作的操作者的外科手术显微镜,并且还使得操作者能够从各个方向容易地观察每个方向以改善可操作性,因此手术显微镜能够改变观察角度 在具有观察光学系统作为旋转中心的显微镜主体的观察光轴a上具有注视点P的观察方向。 可以在X,Y和Z方向上移动的基座设置在相对于显微镜主体的位置,并且以基准单元的上方作为旋转中心的目视点P可旋转的旋转基座。
    • 6. 发明授权
    • Operating microscope
    • 手术显微镜
    • US5805335A
    • 1998-09-08
    • US843190
    • 1997-04-14
    • Takashi FukayaKoji YasunagaMasahiko KinukawaHiroshi FujiwaraYoshia HoshinoJunichi Nozawa
    • Takashi FukayaKoji YasunagaMasahiko KinukawaHiroshi FujiwaraYoshia HoshinoJunichi Nozawa
    • G02B21/24A61B19/00G02B7/00G02B21/00A47F5/00
    • G02B7/001A61B90/25G02B21/0012A61B90/20A61B90/50
    • An operating microscope includes a base and a support coupled to the base. An arm has a proximal end portion rotatably and/or vertically movably coupled to the support, and a distal end portion. At least the distal end portion is formed of a non-magnetic material. A microscope portion is coupled to the distal end portion of the arm and includes a stereoscopic optical system for forming an image of an observed part. The microscope portion is formed of a non-magnetic material. The operating microscope also includes a power system for operating the microscope portion or a part thereof, and an operation instructing portion for instructing the power system to operate. The power system includes a power generating portion for generating a pressure change or a positional change; a power output portion, formed of a non-magnetic material, for converting the pressure change or the positional change of the power generating portion into a power for operating the microscope portion and a part thereof; and a power transmitting mechanism for transmitting the pressure change and the positional change from the power generating portion to the power output portion. The power transmitting mechanism is formed of a non-magnetic material at least near the power output portion.
    • 操作显微镜包括底座和联接到底座的支撑件。 臂具有可旋转和/或垂直移动地联接到支撑件的近端部分和远端部分。 至少前端部由非磁性材料形成。 显微镜部分联接到臂的远端部分,并且包括用于形成观察部分的图像的立体光学系统。 显微镜部分由非磁性材料形成。 操作显微镜还包括用于操作显微镜部分或其一部分的电力系统和用于指示电力系统操作的操作指示部分。 电力系统包括用于产生压力变化或位置变化的发电部分; 由非磁性材料形成的功率输出部分,用于将发电部分的压力变化或位置变化转换成用于操作显微镜部分及其一部分的电源; 以及用于将压力变化和位置变化从动力产生部分传递到动力输出部分的动力传递机构。 动力传递机构由至少靠近动力输出部分的非磁性材料形成。