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    • 5. 发明授权
    • Surveying instrument having an optical distance meter
    • 具有光学距离计的测量仪器
    • US06532059B2
    • 2003-03-11
    • US09842780
    • 2001-04-27
    • Masami ShiraiKiyoshi Araki
    • Masami ShiraiKiyoshi Araki
    • G01C300
    • G01S7/497G01C3/08G01S7/4812G01S7/4818
    • A surveying instrument includes an optical distance meter which has a light-transmitting optical system and a light-receiving optical system, the light-receiving optical system including a light-receiving element; a first wavelength selection filter and a second wavelength selection filter for allowing only light within a first wavelength range to pass therethrough, to be thereafter incident on the light-receiving element, wherein the first wavelength selection filter allows light with a wavelength equal to or greater than a first specific wavelength to pass therethrough, and a second wavelength selection filter allows light with a wavelength equal to or shorter than a second specific wavelength, which is longer than the first specific wavelength, to pass therethrough; and an angle adjusting device for adjusting an angle of inclination of the first and second wavelength selection filter with respect to an optical path thereof.
    • 测量仪器包括具有透光光学系统和光接收光学系统的光学距离计,所述光接收光学系统包括光接收元件; 第一波长选择滤光器和第二波长选择滤光器,其仅允许第一波长范围内的光通过,然后入射到光接收元件上,其中第一波长选择滤光器允许波长等于或更大的光 比第一特定波长通过,第二波长选择滤光器允许波长等于或短于第一特定波长的波长的光通过其中; 以及用于调整第一和第二波长选择滤光器相对于其光路的倾斜角度的角度调节装置。
    • 6. 发明授权
    • Surveying instrument having an optical distance meter
    • 具有光学距离计的测量仪器
    • US06469777B2
    • 2002-10-22
    • US09877082
    • 2001-06-11
    • Masami Shirai
    • Masami Shirai
    • G01C308
    • G01C3/08
    • A surveying instrument includes a distance-measuring optical system having an objective lens via which a distance from the surveying instrument to an object is measured; and an optical distance meter which includes a reflection member positioned behind the objective lens, a light-transmitting optical system for transmitting a measuring light toward the object via the reflection member and the objective lens, and a light-receiving optical system for receiving a portion of the measuring light which is reflected by the object, subsequently passed through the objective lens, and not interrupted by the reflection member. The light-receiving optical system includes a plurality of light-guiding optical systems, so that the measuring light which is reflected by the object is selectively incident on an end of one of the plurality of light-guiding optical systems in accordance with the distance from the surveying instrument to the object.
    • 测量仪器包括具有物镜的距离测量光学系统,通过该距离测量光学系统测量到测量仪器到物体的距离; 以及光学距离计,其包括位于物镜后面的反射构件,用于经由反射构件和物镜将测量光透射到物体的光透射光学系统,以及用于接收部分的光接收光学系统 被物体反射的测量光随后通过物镜,不被反射构件中断。 光接收光学系统包括多个导光光学系统,使得被物体反射的测量光根据距离被摄体的距离选择性地入射到多个导光光学系统中的一个的一端 测量仪器对象。
    • 10. 发明授权
    • Body cavity pressure adjusting device for endoscope and laser medical
treatment apparatus including body cavity pressure adjusting device
    • 用于内窥镜的体腔压力调节装置和包括体腔压力调节装置的激光治疗装置
    • US4971034A
    • 1990-11-20
    • US375469
    • 1989-07-05
    • Yuzuru DoiRyoji HondaMasami ShiraiHitoshi Osawa
    • Yuzuru DoiRyoji HondaMasami ShiraiHitoshi Osawa
    • A61B1/012A61B1/015A61B1/12A61B1/273A61B5/03A61B17/34A61B18/20A61B18/22A61M1/00A61M13/00F16K7/04A61B1/00
    • F16K7/045A61B1/00068A61B1/015A61B1/2736A61B18/20A61B18/22A61B5/03A61B5/4238A61M1/0031A61M1/0035A61M13/003A61B17/3474A61B2018/00636
    • An endoscope system is provided in which air is pumped into a first channel into the endoscope in order to pressurize the body cavity and a forceps channel is connected to a suction pump in order to drain the body cavity of fluid, air and debris. Either a second suction pump or a second supply of air is connected to the forceps channel along with a pressure detector for controlling suction. Further, a suction tube is also provided which is connected to, and which communicates with, a forceps channel in which a medical tool is adapted to be inserted, and a suction device is, in turn, connected to and communicates with the suction tube. Pressure within the suction tube is detected by a pressure detecting device, and the detected pressure is indicated on the display. A suction control device is provided which controls operation of the suction device by operating based upon an output signal from a pressure setting device for setting a maximum value for the body cavity pressure and an output signal from the pressure detecting device. A laser knife is also provided which includes a protective pipe surrounding a fiber optic laser transmitting member for forming a first gap and a tube surrounding the protective pipe to form a second gap. Gas is passed through the first gap to cleanse the emitting end of the laser transmission member. A pressure detecting device is coupled to the second gap in order to monitor pressure within the stomach, and a suction device which is responsive to the pressure detecting device is also connected to the second gap in order to control gas pressure within the stomach.
    • 提供了一种内窥镜系统,其中空气被泵入到内窥镜的第一通道中,以便对体腔加压,并且镊子通道连接到抽吸泵,以便排出流体,空气和碎屑的体腔。 第二抽吸泵或第二供应的空气连同用于控制吸力的压力检测器连接到镊子通道。 此外,还设置有吸入管,其连接到医用工具适于插入的镊子通道并与其连通,并且抽吸装置又连接到抽吸管并与吸管连通。 通过压力检测装置检测吸入管内的压力,在显示器上显示检测到的压力。 提供一种吸入控制装置,其基于来自用于设定体腔压力的最大值的压力设定装置的输出信号和来自压力检测装置的输出信号,通过操作来控制吸引装置的操作。 还提供了一种激光刀,其包括围绕用于形成第一间隙的光纤激光传输构件的保护管和围绕保护管的管以形成第二间隙。 气体通过第一间隙以清洁激光传输构件的发射端。 压力检测装置联接到第二间隙以便监测胃内的压力,并且响应于压力检测装置的抽吸装置也连接到第二间隙,以便控制胃内的气体压力。