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    • 2. 发明授权
    • Lower part structure in vehicle body rear part
    • 车身后部下部结构
    • US08371595B2
    • 2013-02-12
    • US12732830
    • 2010-03-26
    • Kodai TanedaKoji Uchida
    • Kodai TanedaKoji Uchida
    • B62D21/11B62D25/20B62D43/10
    • B62D21/11B62D21/15B62D43/10
    • A lower part structure in a vehicle body rear part has a rear suspension frame disposed in rear of a fuel tank and in front of a spare tire and has a mechanism for causing jump up of the rear part of the spare tire under load application from the vehicle rear. The lower part structure is configured so that the center in the vertical direction of the front part of the spare tire is located so as to lap on the extension line of vertical width of a frame in the vehicle width direction of the rear suspension frame, and when the spare tire is moved to the vehicle front by a load applied from the vehicle rear, the spare tire comes into contact with the rear suspension frame directly or indirectly, whereby the rear part of the spare tire is pushed up with the rear suspension frame side being the center, and is turned in the longitudinal direction.
    • 车身后部的下部结构具有设置在燃料箱的后部并且在备用轮胎的前方的后悬架,并且具有用于在负载施加下从备用轮胎的后部向上跳起的机构 车后。 下部结构被构造成使得备用轮胎的前部的垂直方向上的中心位于后悬架的车辆宽度方向上的框架的垂直宽度的延伸线上, 当通过从车辆后方施加的负载将备用轮胎移动到车辆前方时,备用轮胎直接或间接地与后悬架架接触,由此备胎的后部用后悬架架 侧为中心,沿长度方向转动。
    • 5. 发明申请
    • FUNDUS CAMERA
    • US20110032481A1
    • 2011-02-10
    • US12849618
    • 2010-08-03
    • Koji UchidaSatoshi AikawaYasuhiro Dobashi
    • Koji UchidaSatoshi AikawaYasuhiro Dobashi
    • A61B3/15A61B3/14
    • A61B3/152
    • When a bright spot image A received by an imaging unit is extracted, in step S1, a light emitting surface P of an operational distance index is minutely moved back and forth in an optical axis direction of an imaging optical system toward a cornea. In step S2, bright spots are extracted at a center and maximum positions in back and forth directions of the reciprocation movement. In steps S3 to S5, a size of the bright spot image A at each position is determined, and it is determined whether to move an optical unit forward or backward, or to stop the optical unit based on a relationship between a position of the light emitting surface P and the size of the bright spot image A. In step S5, when it is determined that the optical unit is moved to a proper position, a fundus camera enters into a shooting standby state. In step S8, shooting is performed by pressing a shooting switch.
    • 当提取由成像单元接收的亮点图像A时,在步骤S1中,将操作距离指数的发光面P在成像光学系统的光轴方向上前后朝向角膜移动。 在步骤S2中,在往复运动的前后方向的中心和最大位置处提取亮点。 在步骤S3至S5中,确定每个位置处的亮点图像A的尺寸,并且确定是否向前或向后移动光学单元,或者基于光的位置之间的关系来停止光学单元 发光面P和亮点图像A的大小。在步骤S5中,当确定光学单元被移动到适当位置时,眼底照相机进入拍摄待机状态。 在步骤S8中,通过按下拍摄开关进行拍摄。