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    • 1. 发明授权
    • Laser scanning microscope
    • 激光扫描显微镜
    • US07936503B2
    • 2011-05-03
    • US12069519
    • 2008-02-11
    • Tetsuya KoikeToshiyuki Hattori
    • Tetsuya KoikeToshiyuki Hattori
    • G02B21/06G02B21/00
    • G02B21/16G02B21/0076
    • A laser scanning microscope separates fluorescence signals of different fluorophores in accurate unmixing by eliminating positional pixels shifts between different fluorescence images obtained through irradiation of different-wavelength laser lights. The microscope includes a laser light source capable of emitting a wavelength-changeable laser light, a correction amount determination unit that determines a correction amount for correcting an optical axis shift of the laser light, an optical axis adjusting unit that adjusts an optical axis, a scanning unit that performs two-dimensional scanning, an objective lens that focuses the laser scanning light to a specimen and fluorescence emitted from the specimen, a light detector that detects the fluorescence, and a control unit that changes the wavelength of the laser light synchronously with the scanning by the scanning unit while controlling the optical axis adjusting unit based on the correction amount determined by correction amount determination unit.
    • 激光扫描显微镜通过消除通过不同波长激光照射获得的不同荧光图像之间的位置像素偏移,在精确的混合中分离不同荧光团的荧光信号。 显微镜包括能够发射波长可变的激光的激光光源,确定用于校正激光的光轴偏移的校正量的校正量确定单元,调节光轴的光轴调节单元, 执行二维扫描的扫描单元,将激光扫描光聚焦到样本的物镜和从样本发出的荧光,检测荧光的光检测器,以及控制单元,其将激光的波长与 在通过校正量确定单元确定的校正量来控制光轴调节单元的同时由扫描单元扫描。
    • 2. 发明申请
    • WATER JET PROPULSION WATERCRAFT
    • 水喷射推进水
    • US20100151752A1
    • 2010-06-17
    • US12619718
    • 2009-11-17
    • Toshiyuki HATTORIHitoshi MURAMATSU
    • Toshiyuki HATTORIHitoshi MURAMATSU
    • B63H11/11
    • B63H11/11B63B35/731
    • A water jet propulsion watercraft includes a hull, an engine attached to the hull, a jet propulsion device arranged to be driven using an output of the engine and to jet water toward a rear of the hull from a jet port provided on an outer side of the hull, a bucket arranged to be disposed in a manner enabling movement between a forward drive position of not blocking the water jetted from the jet port of the jet propulsion device and a reverse drive position of blocking the water jetted from the jet port and, at the reverse drive position, to convert a jetting direction of the water jetted rearward from the jet port to a forward direction, a hydraulic cylinder arranged to be disposed in an interior of the hull and to move the bucket between the forward drive position and the reverse drive position, and an oil passage arranged to connect the engine and the hydraulic cylinder and to cause a lubricating oil inside of the engine to pass through as a hydraulic oil of the hydraulic cylinder.
    • 喷水推进船舶包括船体,附接到船体的发动机,布置成使用发动机的输出驱动的喷射推进装置,并且从设置在船体的外侧的喷气口向船体的后部喷射水 所述船体设置成能够以不阻挡从所述喷射推进装置的喷射口喷射的水的前进驱动位置与阻止从所述喷射口喷射的水的反向驱动位置之间的运动的方式设置, 在反向驱动位置处,将从喷射口向后喷射的水的喷射方向转换成向前方向;液压缸,布置成设置在船体的内部,并使铲斗在前进驱动位置和 反向驱动位置,以及布置成连接发动机和液压缸并使发动机内部的润滑油作为液压缸的液压油通过的油路。
    • 9. 发明授权
    • Throttle control for small watercraft
    • 节气门控制小船只
    • US06551153B1
    • 2003-04-22
    • US09494392
    • 2000-01-31
    • Toshiyuki Hattori
    • Toshiyuki Hattori
    • B60K4100
    • B63H21/213H01H2009/068Y10T74/20287Y10T74/20396
    • A throttle control system eases operation of the throttle lever on a small watercraft to improve rider comfort. The small watercraft includes an internal combustion engine and a steering mechanism for steering the watercraft. The steering mechanism includes a handlebar assembly. The engine includes an air induction system that supplies air to the engine and includes a throttle device configured for controlling the amount of air supplied to the engine. The control system includes a throttle operator, an operator position sensor, a controller and an actuator. The throttle operator is located on the handlebar assembly. The operator position sensor is configured to detect the position of the throttle operator and to communicate with the controller. The actuator is configured to adjust the throttle device in response to the controller.
    • 节气门控制系统简化了小型船只上的油门杆的操作,以提高车手的舒适度。 小型船只包括内燃机和用于转向船只的转向机构。 转向机构包括车把组件。 发动机包括将空气供给到发动机的空气感应系统,并且包括构造成用于控制供给发动机的空气量的节流装置。 控制系统包括节气门操作器,操作者位置传感器,控制器和致动器。 节气门操作器位于车把组件上。 操作员位置传感器被配置为检测节气门操作器的位置并与控制器通信。 致动器被配置为响应于控制器来调节节流装置。