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    • 4. 发明授权
    • Instrument base for ophthalmological instruments
    • 眼科仪器基座
    • US4094593A
    • 1978-06-13
    • US719811
    • 1976-09-01
    • Andreas KutscherauerOrtwin Muller
    • Andreas KutscherauerOrtwin Muller
    • A61B3/00H01R9/00H05K7/02
    • H05K7/02A61B3/0075Y10T74/20201
    • A base for ophthalmological instruments includes a housing within which is mounted a guide plate to which an ophthalmological instrument may be attached. The guide plate extends through an opening in the side of the housing and is mounted on bearings which permit translational movement of the plate along coordinate axes x-y to thereby permit adjustment of the instrument as desired by the physician. The upper surface of the housing serves as a table and a control arm connected to the guide plate extends across the table. A control lever mounted in gimbals on the control arm is provided for fine adjustment of the guide plate. Means are provided for locking the guide plate in any position of adjustment.
    • 用于眼科器械的基座包括壳体,在该壳体内安装有可以附着眼科仪器的引导板。 引导板延伸穿过壳体侧面的开口并安装在轴承上,该轴承允许板沿着坐标轴线x-y平移运动,从而允许医师根据需要调节仪器。 壳体的上表面用作工作台,连接到引导板的控制臂延伸穿过工作台。 安装在控制臂上的万向架中的控制杆被设置用于微调导板。 提供了用于将引导板锁定在任何调整位置的装置。
    • 5. 发明授权
    • Operation microscope
    • 操作显微镜
    • US4448498A
    • 1984-05-15
    • US343943
    • 1982-01-29
    • Ortwin MullerKlaus BiberHeinz JakubowskiGerhard Hanemann
    • Ortwin MullerKlaus BiberHeinz JakubowskiGerhard Hanemann
    • G02B21/22A61B19/00G02B21/20G02B21/02G02B13/10
    • G02B21/20
    • The invention contemplates an operation microscope in which three-dimensional viewing adjustment is possible with respect to an object (8) to be observed, all without forcing the surgeon or any co-observing person or instrumentality to move. To this end, the exit pupils and thus all viewing windows are positionally invariant, i.e., they are stationary and therefore can be securely related to a microscope support (5). An objective housing (7) in front of the microscope housing (1) is associated with all viewing systems (2, 3, 4), and this objective housing contains an objective of variable back focus as well as optical components (11, 12) for selective deflection of the observation ray path in each of two polar-coordinate directions. In making any one or all of the three-dimensional viewing adjustments, only elements of relatively low mass within the objective housing (7) need be moved.
    • 本发明考虑了一种操作显微镜,其中相对于要观察的物体(8)可以进行三维观察调整,所有这一切都不会迫使外科医生或任何共同观察者或手段移动。 为此,出射光瞳和因此所有观察窗都是位置不变的,即它们是静止的,因此可以牢固地与显微镜支架(5)相关。 在显微镜外壳(1)前方的目标外壳(7)与所有观察系统(2,3,4)相关联,并且该物镜外壳包含可变后焦点的目标以及光学部件(11,12) 用于在两个极坐标方向中的每一个中选择性地偏转观察射线路径。 在进行任何一个或全部三维观察调整时,仅需要移动目标壳体(7)内的质量相对较低的元件。
    • 9. 发明授权
    • Combinable apparatus for examination of the eye
    • 用于检查眼睛的组合设备
    • US4315672A
    • 1982-02-16
    • US55511
    • 1979-07-09
    • Ortwin MullerVictor Stopar
    • Ortwin MullerVictor Stopar
    • A61B3/10A61B3/107A61B3/13
    • A61B3/13A61B3/107
    • The invention contemplates eye-examination apparatus wherein modular-component construction enables a base with binocular-microscope viewing structure to selectively serve multiple-instrument functions, one of which is specifically an ophthalmometer. In the form described, the ophthalmometer component is a module which, when selected for use with the base module, provides a direct internally developed read-out of reflected-mire displacement in one of the two optical systems of binocular viewing and which provides via the other binocular optical system a concurrent display of the two reflected-mire images in the course of displacement adjustment; in the other selected employment of the base module, the instrument is a slit-lamp microscope. The ophthalmometer axis coincides with the central axis of symmetry of the slit-lamp microscope, so that no adjustment of the base module is needed in relation to a particular eye to make successive use of the same viewing structure in a slit-lamp mode and in an ophthalmometer mode.
    • 本发明考虑了眼睛检查装置,其中模块化部件结构使得具有双目显微镜观察结构的基底能够选择性地服务多个仪器功能,其中之一是具体的眼科仪。 在所描述的形式中,眼科仪器组件是当被选择用于与基本模块一起使用时的模块,其在双目视觉的两个光学系统之一中提供了直接内部显影的反射火焰位移读出,并且经由 其他双目光学系统在位移调整过程中同时显示两个反射泥沙图像; 在其他选择使用的基本模块中,仪器是裂隙灯显微镜。 检眼镜轴与裂隙灯显微镜的中心对称轴线重合,从而不需要对特定的眼睛进行基座模块的调整,以在裂隙灯模式中连续使用相同的观察结构 眼科模式。