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    • 34. 发明授权
    • Intraocular irrigating and enucleated eyeball preservative composition
    • 眼内灌注和去核眼球防腐剂组成
    • US5500445A
    • 1996-03-19
    • US197325
    • 1994-02-16
    • Takahiro MatsumotoShogo SameshimaKenichi Yoshida
    • Takahiro MatsumotoShogo SameshimaKenichi Yoshida
    • A61K9/00A61K31/665A61K31/34
    • A61K31/665A61K9/0048Y10S514/912
    • This invention relates to an intraocular irrigating and enucleated eyeball preservative composition containing a phosphoric acid diester compound of the following formula or a pharmacologically acceptable salt thereof ##STR1## wherein R.sub.1 and R.sub.2 are the same or different and each represents a hydrogen atom or a methyl group.The composition of this invention is highly lenient to the ocular tissues, particularly in the sense that it protects the corneal (endothelial) cells which are most susceptible to physiological damage in ophthalmic surgery, with the result that various ophthalmic operations can be carried out with sufficient safety. Furthermore, since the composition of this invention may help retain the physiological functions of the enucleated eyeball without injuring its tissues, it can be used with advantage for the preservation of the cornea, retina, crystalline lens and so on.
    • 本发明涉及含有下式的磷酸二酯化合物或其药理学上可接受的盐的眼内注射和去核眼球防腐剂组合物,其中R 1和R 2相同或不同,各自表示氢原子或甲基 。 本发明的组合物对于眼组织是高度宽松的,特别是在保护在眼科手术中最容易受到生理损伤的角膜(内皮)细胞的意义上,结果是可以充分地进行各种眼科手术 安全。 此外,由于本发明的组合物可有助于保持去核眼球的生理功能而不损伤其组织,所以可以有利地用于保存角膜,视网膜,晶状体等。
    • 38. 发明授权
    • Gas insulated electromagnetic induction appliance
    • 气体绝缘电磁感应电器
    • US4607245A
    • 1986-08-19
    • US699127
    • 1985-02-07
    • Yutaka KurodaYoshio YoshidaYuichi KabayamaTsugio WatanabeTetsuro HakataTakahiro Matsumoto
    • Yutaka KurodaYoshio YoshidaYuichi KabayamaTsugio WatanabeTetsuro HakataTakahiro Matsumoto
    • H01F27/18H01F27/08
    • H01F27/18
    • A gas insulated electromagnetic induction appliance in which a non-condensing insulating gas and a condensing insulating coolant are confined, comprises (a) a pressure detector for detecting a pressure within the container vessel; (b) a gas reservoir connected to the container vessel through a gas discharging passageway including a pipe line, a first gas valve, a compressor, and a gas diffuser; a gas feeding passageway including a pipe line and a second gas valve; and a liquid feeding passageway including a pipe line and a liquid valve; (c) a definite quantity of insulating coolant confined in the gas reservoir; (d) a liquid surface detector for detecting a quantity of the insulating coolant in the gas reservoir; and (e) control means which controls the gas valve, the liquid valve, and the compressor to thereby regulate a pressure in the container vessel and a quantity of the liquid in the gas reservoir.
    • 一种气体绝缘电磁感应装置,其中非冷凝绝缘气体和冷凝绝缘冷却剂被限制,包括:(a)用于检测容器容器内的压力的压力检测器; (b)通过包括管线,第一气阀,压缩机和气体扩散器的气体排放通道连接到容器容器的储气罐; 气体供给通道,包括管线和第二气体阀; 以及包括管线和液体阀的液体供给通道; (c)限定在气藏中的一定数量的绝缘冷却剂; (d)液面检测器,用于检测气藏中的绝热冷却剂的量; 和(e)控制气体阀,液体阀和压缩机的控制装置,从而调节容器容器中的压力和气体储存器中的液体量。
    • 40. 发明授权
    • Exposure apparatus and device fabrication method
    • 曝光装置和装置制造方法
    • US08625074B2
    • 2014-01-07
    • US12577336
    • 2009-10-12
    • Takahiro Matsumoto
    • Takahiro Matsumoto
    • G03B27/52G01B11/14G03F9/00
    • G03F9/7023G03B27/42G03B27/54G03F9/7026G03F9/7076
    • The present invention provides an exposure apparatus including a projection optical system configured to project a pattern of a reticle located on an object plane onto a substrate located on an image plane, a phase shift type mark mounted on a stage which holds the substrate, an image sensor which is set at one of a position of the object plane and a position optically conjugate to the object plane, and is configured to capture an image of the mark via the projection optical system, and a controller configured to control the stage based on an interval between edge images, formed by a pair of edge portions, in the image of the mark captured by the image sensor.
    • 本发明提供一种曝光装置,包括:投影光学系统,被配置为将位于物体平面上的标线片的图案投影到位于图像平面上的基板上;相移型标记,安装在保持基板的台上;图像 传感器,其设置在物体平面的位置和与物体平面光学共轭的位置之一处,并且被配置为经由投影光学系统捕获标记的图像;以及控制器,被配置为基于 由图像传感器捕获的标记的图像中由一对边缘部分形成的边缘图像之间的间隔。