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    • 6. 发明授权
    • Steering force detection device for steering handle of vehicle
    • 车辆转向手柄转向力检测装置
    • US07430466B2
    • 2008-09-30
    • US11146728
    • 2005-06-07
    • Yoshiyuki KanekoTomoyoshi KoyanagiYoshinori HaradaYutaka Mizuno
    • Yoshiyuki KanekoTomoyoshi KoyanagiYoshinori HaradaYutaka Mizuno
    • B63H5/125
    • B63H25/02
    • A watercraft has steering force detection sections. Each steering force detection section includes a pressure receiving section. The pressure receiving sections are spaced from each other and are in the vicinity of a steering shaft. A pressing member is coupled to the steering shaft. The pressing member can press on at least one of the pressure receiving sections when the steering handlebars are rotated to a maximum steering angle. A received pressure detection section detects the pressure applied to the pressure receiving section. The pressure receiving section and the received pressure detection section are coaxially mounted in a pressure receiving section casing and a detection section casing. A guide tube can engage the pressure receiving section and the received pressure detection section. The guide tube is formed with ribs and grooves. The pressure receiving section has a pressure receiving member, a bolt, a plain washer, and a spring member.
    • 船舶具有转向力检测部分。 每个转向力检测部分包括压力接收部分。 压力接收部彼此间隔开并且在转向轴附近。 按压构件联接到转向轴。 当转向手把旋转到最大转向角时,按压构件可以压靠至少一个压力接收部分。 接收压力检测部分检测施加到压力接收部分的压力。 受压部和接收压力检测部同轴地安装在受压部壳体和检测部壳体中。 引导管可以接合压力接收部分和接收的压力检测部分。 引导管形成有肋和槽。 受压部具有受压部件,螺栓,平垫圈和弹簧部件。
    • 7. 发明申请
    • Steering-force detection device for steering handle of vehicle
    • 车辆转向手柄转向力检测装置
    • US20060037522A1
    • 2006-02-23
    • US11146980
    • 2005-06-07
    • Yoshiyuki KanekoYoshinori HaradaYutaka MizunoTomoyoshi Koyanagi
    • Yoshiyuki KanekoYoshinori HaradaYutaka MizunoTomoyoshi Koyanagi
    • B63B35/73
    • G01L5/221B63B35/731B63H25/02B63H25/52
    • Steering-force detection sections, including a pressure-receiving section and a received-pressure detection section, are spaced from one another in the vicinity of a steering shaft. The steering shaft can include a pressing member for applying pressure to the pressure-receiving section when steering handlebars are rotated in either direction to the maximum steering angle. The pressure-receiving section and the received-pressure detection section are coaxially mounted in a pressure-receiving section casing and a detection section casing, respectively, through a guide tube, so that the pressure-receiving directions of both the pressure-receiving sections are parallel to one another and perpendicular to the direction in which the steering-force detection sections are spaced. The detection section casing includes mounting openings for mounting the received-pressure detecting sections and an electric circuit board, which is integrally connected to the received-pressure detecting sections. The mounting openings are formed in the same direction as each other and perpendicularly to the pressure-receiving direction of the pressure-receiving section.
    • 包括压力接收部和接收压力检测部的转向力检测部在转向轴附近彼此间隔开。 转向轴可以包括用于在转向把手沿任一方向旋转到最大转向角时向压力接收部分施加压力的按压部件。 受压部和接收压力检测部分别通过导管同轴地安装在受压部壳体和检测部壳体中,使得两个受压部的受压方向为 彼此平行并且垂直于方向力检测部分间隔开的方向。 检测部分壳体包括用于安装接收压力检测部分的安装开口和与接收压力检测部分一体地连接的电路板。 安装开口形成在彼此相同的方向上并且垂直于压力接收部的受压方向。
    • 10. 发明申请
    • BODY TISSUE IMAGING USING RAMAN SCATTERING LIGHT
    • 身体组织使用拉曼散射光成像
    • US20120046555A1
    • 2012-02-23
    • US13256259
    • 2009-03-13
    • Tetsuro TakamatsuMitsugu OgawaYoshinori Harada
    • Tetsuro TakamatsuMitsugu OgawaYoshinori Harada
    • A61B6/00
    • G01N21/65
    • An object of the present invention is to provide a method for the noninvasive imaging of a tissue (in particular, a cardiac tissue) in real time, and a device therefor. The present invention provides a method for imaging a sample that contains myocardial tissue and one or more blood vessels and/or one or more collagen-rich regions, the method comprising the steps of: (1) irradiating the sample that contains myocardial tissue and one or more blood vessels and/or one or more collagen-rich regions with an excitation light; (2) detecting Raman scattering light from the sample; and (3) analyzing the thus obtained Raman scattering light by using Raman scattering spectra that are characteristic of myocardial cells and red blood cells and/or collagen as indexes and thus imaging the sample.
    • 本发明的目的是提供一种用于实时地对组织(特别是心脏组织)进行无创成像的方法及其装置。 本发明提供了一种对包含心肌组织和一个或多个血管和/或一个或多个富含胶原蛋白的区域进行成像的方法,所述方法包括以下步骤:(1)照射含有心肌组织的样品和一个 或更多的血管和/或具有激发光的一个或多个富含胶原蛋白的区域; (2)检测来自样品的拉曼散射光; (3)通过使用作为心肌细胞和红细胞和/或胶原的特征的拉曼散射光谱作为指标,分析由此获得的拉曼散射光,从而对样品进行成像。