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    • 3. 发明授权
    • Synthetic resin bottle
    • 合成树脂瓶
    • US08739995B2
    • 2014-06-03
    • US11990980
    • 2006-08-25
    • Masaaki SasakiTakayuki KobayashiTomoyuki OzawaTakao Iizuka
    • Masaaki SasakiTakayuki KobayashiTomoyuki OzawaTakao Iizuka
    • B65D1/02
    • B65D1/0223B65D1/46B65D23/102
    • A technical problem of this invention especially in the case of large-size bottles is to form a grip, without changing the bottle shape to a large extent, so that the body can be firmly held. The object of this invention is to provide a synthetic resin square bottle that can be used reliably because the bottle can be held firmly with a hand. A major means of solving the problem is a synthetic resin square bottle comprising a body having a rectangular shape in a plane cross-section and a groove-like waist portion disposed at a middle height of the bottle, wherein a pair of recessed portions for use as finger stops are formed in respective long side walls of said rectangular body over a predetermined area ranging from said waist portion downward to ensure that a plural number of fingers can be placed in at least one recessed portion for a finger stop purpose, and wherein a grip for holding the bottle is formed from both the pair of recessed portions and the waist portion.
    • 特别是在大型瓶子的情况下,本发明的技术问题是在不改变瓶子形状的情况下形成把手,从而可以牢固地保持身体。 本发明的目的是提供一种能够可靠地使用的合成树脂方瓶,因为可以用手牢固地保持瓶子。 解决问题的主要方法是合成树脂方瓶,其包括在平面横截面中具有矩形形状的主体和设置在瓶的中间高度处的凹槽状腰部,其中一对凹部用于 由于在所述矩形体的各个长侧壁上形成有从所述腰部向下的规定区域上的手指止动件,以确保能够将多个指状物放置在至少一个凹部中以进行手指停止目的,并且其中 用于保持瓶子的把手由一对凹进部分和腰部部分形成。
    • 9. 发明授权
    • Image processor and image processing program
    • 图像处理器和图像处理程序
    • US07496287B2
    • 2009-02-24
    • US11313072
    • 2005-12-20
    • Masaaki SasakiShinichi Matsui
    • Masaaki SasakiShinichi Matsui
    • G03B17/00
    • H04N5/23248G06T5/003G06T5/50G06T7/246G06T2207/20201H04N5/23254H04N5/23258H04N5/23277
    • Feature points are extracted from an image of a plurality of frames. A blurring direction component of a previous frame image is judged from motion vectors of the next frame image acquired with reference to feature points of the extracted previous frame image. Images of the same blurring direction are selected and grouped from the image of a plurality of frames based on that judgment result. After performing position compensation, an additive composite of a grouped composite image is created for each group so that feature points conform to grouped images. Subsequently, inverse transform filter processing is applied to the grouped composite image data and hand shake compensation by group is accomplished which compensates the blurring direction component matched to a group. Upon position compensation, an additive composite is generated of a hand shake compensated image so that feature points of each grouped composite image conform to hand shake compensation.
    • 从多个帧的图像中提取特征点。 从参考所提取的前一帧图像的特征点获取的下一帧图像的运动矢量来判断先前帧图像的模糊方向分量。 基于该判断结果,从多个帧的图像中选择并分组相同模糊方向的图像。 在执行位置补偿之后,为每个组创建分组合成图像的添加组合,使得特征点符合分组图像。 随后,将逆变换滤波处理应用于分组的合成图像数据,并且通过组完成手抖动补偿,其补偿与组匹配的模糊方向分量。 在位置补偿时,产生手抖补偿图像的添加复合物,使得每个分组合成图像的特征点符合手抖动补偿。