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    • 21. 发明授权
    • Display device, output device and computer-readable recording medium storing output control program
    • 显示设备,输出设备和存储输出控制程序的计算机可读记录介质
    • US08294724B2
    • 2012-10-23
    • US12340422
    • 2008-12-19
    • Hiroaki Suzuki
    • Hiroaki Suzuki
    • G06F13/00G06F3/041
    • G09G5/363G06F1/1616G06F1/1643G06F1/1649G06F1/1677G06F1/1683G06F3/1431G06F3/1446G09G3/001G09G5/393G09G2330/02G09G2340/02G09G2380/02
    • A display device includes a plurality of electronic papers that are each provided with a display surface outputting a piece of display data, a binding member that binds together the plurality of electronic papers, and an output device that controls output of the piece of display data to each of the plurality of electronic papers, a first storage device that stores rewrite information, a second storage device that stores a plurality of pieces of display data to be displayed on the plurality of electronic papers, an allocation device that respectively allocates the plurality of pieces of display data stored in the second storage device to a consecutive series of electronic papers for which the rewrite information permits rewriting, and a display control device that respectively displays the plurality of pieces of display data allocated by the allocation device on the consecutive series of electronic papers.
    • 显示装置包括多个电子纸,每个电子纸具有输出一条显示数据的显示表面,将多个电子纸粘合在一起的装订构件和控制该显示数据的输出的输出装置 多个电子纸中的每一个,存储重写信息的第一存储装置,存储要在多个电子纸上显示的多个显示数据的第二存储装置,分配分配多个片段的分配装置 将存储在第二存储装置中的显示数据存储到重写信息允许重写的连续的一系列电子纸;以及显示控制装置,其分别在连续的电子系列电子显示分配装置分配的多条显示数据 文件。
    • 22. 发明申请
    • PRINT CONTROL APPARATUS, IMAGE FORMING SYSTEM, PRINT CONTROL METHOD, AND PRINTED-MATTER MANUFACTURING METHOD
    • 打印控制装置,图像形成系统,打印控制方法和打印制造方法
    • US20120063802A1
    • 2012-03-15
    • US13233791
    • 2011-09-15
    • Hiroaki SuzukiHiroo Kitagawa
    • Hiroaki SuzukiHiroo Kitagawa
    • G03G15/00G03G15/20G06F15/00H04N1/405
    • G03G15/6585G03G15/01G03G15/205G03G2215/00805G03G2215/0081
    • A print control apparatus includes a generating unit that generates color image data based on gloss-control image data, the gloss-control image data containing a gloss control value for identifying a type of a surface effect being a visual or a tactile effect applied to the recording medium and for identifying a region to which the surface effect is applied in the recording medium, and generates clear-toner image data based on presence or absence of at least one post processing device connected to the printing device and based on a type of the post processing device; a post-processing control unit that controls the post processing device in accordance with the presence or absence of the post processing device connected to the printing device and the type of the post processing device; and an output unit that outputs the clear-toner image data.
    • 打印控制装置包括:生成单元,其基于光泽控制图像数据生成彩色图像数据,所述光泽控制图像数据包含用于识别表面效果的类型的光泽度控制值,所述表面效果是视觉效果或触觉效果 并且用于识别在记录介质中施加表面效应的区域,并且基于连接到打印装置的至少一个后处理装置的存在或不存在,并基于所述打印装置的类型来生成透明调色剂图像数据 后处理装置; 后处理控制单元,其根据连接到打印装置的后处理装置的存在或不存在以及后处理装置的类型来控制后处理装置; 以及输出单色调色剂图像数据的输出单元。
    • 24. 发明授权
    • Shock absorbing member
    • 减震器
    • US08104805B2
    • 2012-01-31
    • US12520102
    • 2008-04-24
    • Hiroaki SuzukiYasuhiro ToyoguchiSoshi Mitsuyama
    • Hiroaki SuzukiYasuhiro ToyoguchiSoshi Mitsuyama
    • B60R19/26
    • B60R19/18B60R2019/1893
    • An object of the invention is to provide a shock absorbing member enabled to reduce stress applied at the moment of impact to each part serving as an attaching portion. The shock absorbing member 10A includes a pressure receiving wall portion 11A to be pressed at the moment of impact, a side wall portion 21A formed on one end portion side in a direction H perpendicular to a longitudinal direction L of the pressure receiving wall portion 11A to extend along the longitudinal direction L towards a rear of the pressure receiving wall portion 11A, a plurality of vertical ribs 31A that are formed on the other end portion side of the pressure receiving wall portion 11A opposite to the one end portion side, on which the side wall portion 21A is formed, that are provided towards the rear of said pressure receiving wall portion 11A to intersect with the longitudinal direction L, that are arranged like rows to the longitudinal direction L, and flange portions 41A and 51A respectively formed on one end portion side of the side wall portion 21A, which is opposite to the pressure receiving wall portion 11A, and on one end portion side of each of the vertical ribs 31A, which is opposite to the pressure receiving wall portion 11A.
    • 本发明的目的是提供一种减震构件,能够减小在作为附着部的各部件的冲击时施加的应力。 冲击吸收构件10A包括在冲击时被按压的受压壁部11A,在垂直于受压壁部11A的长度方向L的方向H上的一个端部侧上形成的侧壁部21A, 沿着纵向L延伸到受压壁部分11A的后部,多个垂直肋31A形成在压力接收壁部11A的与一个端部侧相对的另一端部侧上, 形成侧壁部21A,其朝向与压力接收壁部11A相反的长度方向L相对于纵向方向L排成一列,并且分别形成在一端的凸缘部41A,51A 侧壁部21A的与受压壁部11A相对的部分侧,以及每个纵向肋3的一个端部侧 其与压力接收壁部分11A相对。
    • 25. 发明申请
    • METHOD FOR MEASURING SCATTERING ABSORBER AND DEVICE FOR MEASURING SCATTERING ABSORBER
    • 用于测量散射吸收器的方法和用于测量散射吸收器的装置
    • US20110224931A1
    • 2011-09-15
    • US13130117
    • 2009-09-01
    • Kenji YoshimotoKazuyoshi OhtaDaisuke YamashitaHiroaki Suzuki
    • Kenji YoshimotoKazuyoshi OhtaDaisuke YamashitaHiroaki Suzuki
    • G06F19/00
    • A61B5/0091A61B5/0059A61B5/4312G01N21/4795
    • Acquired is the internal information of a scattering medium more accurately and easily, with the influence of an instrumental function taken into account, even where noise is contained in a measurement waveform.In a method for measuring a scattering medium, pulse light with a predetermined wavelength is made incident on a scattering medium which is a measurement object and a scattering medium for reference (S01b, S02b), the pulse light transmitted inside each of the scattering media is detected to acquire a light detection signal (S01c, S02c), the measurement waveform is acquired on the basis of the detected light detection signal (S01d, S02d), a parameter of a function showing the theoretical waveform of the measurement object is specified in such a manner that the result of convolution operation on the theoretical waveform of the measurement object and the measurement waveform of the reference is made equal to the result of convolution operation on the theoretical waveform of the reference and the measurement waveform of the measurement object (S03), and calculation is made for the internal information of the scattering medium on the basis of the theoretical waveform shown by the function (S04).
    • 即使在测量波形中包含噪声的情况下,也可以考虑到仪器功能的影响,更准确,更容易地获取散射介质的内部信息。 在用于测量散射介质的方法中,将具有预定波长的脉冲光入射到作为测量对象的散射介质和用于参考的散射介质(S01b,S02b),在每个散射介质内传输的脉冲光为 检测以获取光检测信号(S01c,S02c)时,基于检测到的光检测信号(S01d,S02d)获取测量波形,表示测量对象的理论波形的函数的参数被指定 使对测量对象的理论波形的卷积运算结果和基准的测量波形的结果等于对基准的理论波形和测量对象的测量波形的卷积运算的结果(S03) ,并根据功能所示的理论波形对散射介质的内部信息进行计算( S04)。
    • 27. 发明授权
    • Contact lens user support system and support method
    • 隐形眼镜用户支持系统和支持方法
    • US07837327B2
    • 2010-11-23
    • US10510516
    • 2003-04-10
    • Hidenari TanakaKazuhiko NakadaHiroaki SuzukiSadanori OhnoTetsuji Kawai
    • Hidenari TanakaKazuhiko NakadaHiroaki SuzukiSadanori OhnoTetsuji Kawai
    • A61B3/10
    • G06Q30/02G02C7/04G02C13/003G06Q30/016G06Q30/0613
    • It is an object to provide a novel system for supporting contact lens users, who has not been provided with an after-selling support sufficiently, which is able to provide an appropriate support to individual contact lens user so that he can use contact lenses with comfortable. In order to attain the object, an image signal of the user's currently used contact lenses (20) acquired by a user client apparatus (18) is transmitted via communication network means (38), to a server apparatus (12) of a supporting entity (10). The server apparatus (12) then obtains lens condition evaluation data, which are stored in memory means (14) and transmitted via the communication network means (38) to the user client apparatus (18) so that the user (16) can be provided with the lens condition evaluation data.
    • 本发明的目的是提供一种用于支持隐形眼镜用户的新型系统,其未被提供足够的售后支持,其能够为个人隐形眼镜用户提供适当的支持,使得他可以使用舒适的隐形眼镜 。 为了实现该目的,由用户客户端装置(18)获取的用户当前使用的隐形眼镜(20)的图像信号经由通信网络装置(38)发送到支持实体的服务器装置(12) (10)。 服务器装置(12)然后获得存储在存储装置(14)中并经由通信网络装置(38)发送到用户客户端装置(18)的镜头条件评估数据,从而可以提供用户(16) 与镜头状态评估数据。
    • 29. 发明申请
    • METHOD OF FORMING BILAYER MEMBRANE BY CONTACT BETWEEN AMPHIPATHIC MONOLAYERS AND APPARATUS THEREFOR
    • 通过大孔单体与其设备之间的接触形成双层膜的方法
    • US20100147450A1
    • 2010-06-17
    • US11997058
    • 2006-07-26
    • Shoji TakeuchiHiroaki SuzukiKei Funakoshi
    • Shoji TakeuchiHiroaki SuzukiKei Funakoshi
    • B29C65/70B32B37/02B32B38/00
    • G01N33/92B01L3/502769G01N33/68
    • The present invention provides a simple and an accurate method of forming a bilayer membrane by the contact of amphipathic monolayers and an apparatus therefor. The method is characterized in that the organic solvent (2) containing lipid molecules is introduced into a first microchannel (1) formed on a substrate (5). A liquid (4) immiscible with the organic solvent (2) containing lipid molecules is introduced into a second microchannel (3), which crosses the first microchannel (1) from both sides to form an intersection, from both ends of the second microchannel (3) toward the intersection. Amphipathic monolayers (2A) opposing each other are formed at the interfaces between the liquid (4) and the organic solvent (2), and finally a lipid bilayer membrane (2B) is obtained by bringing the amphipathic monolayers (2A) into contact and fusing, by the contact of the interfaces of the liquid (4) introduced from the both ends of the second microchannel (3) with the control of the pressure of the liquid (4) using syringe pumps.
    • 本发明提供了通过两亲性单层接触形成双层膜的简单且精确的方法及其装置。 该方法的特征在于,将含有脂质分子的有机溶剂(2)引入到形成在基板(5)上的第一微通道(1)中。 将含有脂质分子的有机溶剂(2)不混溶的液体(4)被引入第二微通道(3),第二微通道(3)从两侧穿过第一微通道(1)以形成交叉点,从第二微通道 3)朝向十字路口。 在液体(4)和有机溶剂(2)之间的界面处形成彼此相对的两亲性单层(2A),最后通过使两亲性单层(2A)接触和融合获得脂质双层膜(2B) 通过从第二微通道(3)的两端引入的液体(4)的界面与使用注射泵的液体(4)的压力的控制接触。