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    • 3. 发明公开
    • Ophthalmic apparatus
    • 眼科医师Gerät
    • EP1779771A1
    • 2007-05-02
    • EP06022714.7
    • 2006-10-31
    • NIDEK CO., LTD
    • Hayashi, AkihiroHanebuchi, MasaakiMiwa, TetsuyukiKurachi, Mikio
    • A61B3/16A61B3/103A61B3/107
    • A61B3/165A61B3/103A61B3/107A61B3/16
    • An ophthalmic apparatus with which it is easy to open eyelids of an examinee at the time of intraocular pressure measurement has a measurement unit (4) including a measurement part (4b) measuring intraocular pressure by blowing fluid to a cornea (Ec) of an examinee's eye (E) via a nozzle (63) to deform the cornea and a measurement part (4a) having an optical system for measuring eye characteristics of the eye, wherein the intraocular pressure measurement part is placed above the eye characteristic measurement part, a device making a selective changeover between an intraocular pressure measurement mode and an eye characteristic measurement mode, and a first movement device (6) moving the measurement unit in an up-and-down direction with respect to the eye so that a measurement optical axis of either of the measurement parts to be used for the selected mode is positioned at approximately the same height as the eye.
    • 在眼压测量时易于打开受检者的眼皮的眼科装置具有测量单元(4),该测量单元包括通过将流体吹送到受检者的角膜(Ec)来测量眼内压的测量部分(4b) 眼睛(E)通过喷嘴(63)使角膜变形,以及具有用于测量眼睛的眼睛特性的光学系统的测量部分(4a),其中眼内压测量部分放置在眼睛特征测量部分上方, 在眼内压测量模式和眼睛特征测量模式之间进行选择性切换;以及第一移动装置(6),使测量单元相对于眼睛沿上下方向移动,使得测量光轴 用于所选模式的测量部件位于与眼睛大致相同的高度处。
    • 4. 发明公开
    • Ophthalmic apparatus
    • 眼科医师Gerät
    • EP1464272A1
    • 2004-10-06
    • EP04007710.9
    • 2004-03-30
    • Nidek Co., Ltd.
    • Mimura, YoshiakiKurachi, MikioHonda, Naoto
    • A61B3/16
    • A61B3/165A61B3/103A61B3/107
    • A multifunction ophthalmic apparatus, capable of efficiently measuring and examining eye characteristics respectively, has an measurement part including a unit blowing fluid to a cornea via a nozzle for measuring intraocular pressure of an examinee's eye, a reflection member having a reflection surface, arranged insertably and removably between the eye and the nozzle, an examination part storing an optical system, which photo-receives reflection light from the eye reflected by the member for examination, a main body storing the parts, a first unit moving the body relative to the eye in working distance direction, a second unit moving the measurement part relative to the body in the direction, a third moving unit inserting and removing the member, a device for emitting a switching signal between a first mode for examination and a second mode for measurement, and a unit controlling driving of the second and third moving units on the signal.
    • 一种能够分别有效地测量和检查眼睛特性的多功能眼科装置具有测量部件,包括通过用于测量受检眼睛的眼内压的喷嘴向角膜吹送流体的单元,具有反射表面的反射部件,可插入地排列, 可拆卸地在眼睛和喷嘴之间的检查部分,存储光学系统的检查部分,该光学系统照射从被检查的部件反射的眼睛的反射光,存储部分的主体,相对于眼睛移动身体的第一单元 工作距离方向,第二单元相对于身体沿方向移动测量部件,第三移动单元插入和移除部件,用于在第一检查模式和第二测量模式之间发射切换信号的装置,以及 控制信号上的第二和第三移动单元的驱动的单元。
    • 8. 发明公开
    • Eye refractive power measurement apparatus
    • Gerätzur Messung der Brechkraft der Augen
    • EP1520512A1
    • 2005-04-06
    • EP04023244.9
    • 2004-09-29
    • Nidek Co., Ltd.
    • Hanebuchi, MasaakiGono, MitsuhiroKurachi, MikioIsogai, Naoki
    • A61B3/103
    • A61B3/103
    • An eye refractive power measurement apparatus which is capable of measuring even an eye with a small pupil diameter and measuring a normal eye with a large enough pupil diameter with accuracy and stability. The apparatus includes a measurement optical system for photo-receiving measurement light from a fundus via a ring-shaped aperture arranged at an approximately conjugate position with a pupil by using a photodetector, a changing device for changing a size of the ring-shaped aperture on a pupillary surface to a size different in both inside diameter and outside diameter, and a calculation device for calculating the eye refractive power based on a photo-receiving result obtained by the photodetector.
    • 一种眼屈光力测量装置,其能够测量具有小瞳孔直径的眼睛,并以准确性和稳定性测量具有足够大的瞳孔直径的正常眼睛。 该装置包括测量光学系统,用于通过使用光电检测器,经由环形孔与光瞳配置在与光瞳近似共轭的位置处测量来自眼底的光,用于改变环形孔的尺寸的改变装置 在内径和外径两者不同的尺寸的瞳孔表面,以及用于根据光电检测器获得的光接收结果来计算眼睛屈光度的计算装置。