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    • 32. 发明授权
    • Recording medium discriminating method and recording apparatus
    • 记录介质识别方法和记录装置
    • US07125114B2
    • 2006-10-24
    • US11111955
    • 2005-04-22
    • Takuya Tsujimoto
    • Takuya Tsujimoto
    • B41J2/01
    • G01N21/57B41J11/009
    • Discrimination of the type of a recording medium with high accuracy is obtained by using the intensity of a specular reflection light from the recording medium and a feature of the recording medium surface derived from an image of the recording medium surface as discrimination parameters. In particular, the accuracy in discrimination between plain paper and ink-jet coated paper and between photographic glossy paper and a glossy film is improved. Also, the type of the recording medium is discriminated based on a detected value of the intensity of the specular reflection light from the recording medium and a parameter representing surface conditions of the recording medium which is derived from an image information made up of a plurality of pixels corresponding to a predetermined area of the recording medium surface.
    • 通过使用来自记录介质的镜面反射光的强度和从记录介质表面的图像导出的记录介质表面的特征作为鉴别参数,可以获得高精度的记录介质的类型。 特别地,提高了普通纸和喷墨涂布纸之间以及照相光泽纸和光泽膜之间的辨别精度。 此外,基于来自记录介质的镜面反射光的强度的检测值和表示记录介质的表面条件的参数来识别记录介质的类型,该参数是从由多个 对应于记录介质表面的预定区域的像素。
    • 34. 发明申请
    • Nonwoven fabric composed of ultra-fine continuous fibers, and production process and application thereof
    • 由超细连续纤维组成的无纺布及其生产工艺及其应用
    • US20050079781A1
    • 2005-04-14
    • US10949452
    • 2004-09-27
    • Takuya TsujimotoNaoki FujiwaraMidori OkazakiNozomu Sugo
    • Takuya TsujimotoNaoki FujiwaraMidori OkazakiNozomu Sugo
    • D04H3/16D04H3/12D04H13/00B32B3/00B32B5/02B32B9/00B32B27/04D04H1/00D04H3/00
    • D04H3/12D04H3/016Y10T442/20Y10T442/2484Y10T442/637Y10T442/64
    • A nonwoven fabric composed of ultra-fine continuous fibers having a mean fineness of not more than 0.5 dtex is prepared. The nonwoven fabric comprises a water-soluble thermoplastic resin in a proportion of not more than 5% by weight relative to the nonwoven fabric, has an absorbing height of not less than 30 mm as determined at 20° C. after 10 minutes based on Byreck method when the nonwoven fabric immersion-treated for 60 minutes in a water of 80° C. is used, and satisfies the following formula: (B)/(A)≧0.25, wherein the symbol (B) represents a tensile strength [N/5 cm] in the longitudinal direction and the lateral direction of the nonwoven fabric and the symbol (A) represents a fabric weight [g/m] of the nonwoven fabric. In the nonwoven fabric, not less than 30% of the surface may be coated with the water-soluble thermoplastic resin. The water-soluble thermoplastic resin may be a water-soluble thermoplastic polyvinyl alcohol, e.g., a modified polyvinyl alcohol containing an ethylene unit in a proportion of 3 to 20 mol %. The present invention provides a nonwoven fabric composed of ultra-fine continuous fibers, having a high flexibility or softness, and having a high mechanical strength even when the fiber diameter is small, and having an excellent water absorbency, as well as a production process and an application thereof.
    • 制备由平均细度不超过0.5dtex的超细连续纤维构成的无纺布。 无纺织物相对于无纺布的比例不超过5重量%的水溶性热塑性树脂,基于Byreck,在20℃下测定的吸收高度不小于30mm。 使用在80℃的水中浸渍处理60分钟的无纺布的方法,满足下式:(B)/(A)> = 0.25,其中符号(B)表示抗拉强度[ N / 5cm)的无纺布的长度方向和横向,符号(A)表示无纺织物的织物重量[g / m]。 在无纺布中,表面的不少于30%可以用水溶性热塑性树脂涂布。 水溶性热塑性树脂可以是水溶性热塑性聚乙烯醇,例如含有3〜20摩尔%的乙烯单元的改性聚乙烯醇。 本发明提供一种由超细连续纤维构成的无纺布,其具有高的柔软性或柔软性,并且即使纤维直径小,具有优异的吸水性也具有高的机械强度,以及制造方法和 其应用。
    • 35. 发明授权
    • Image processing apparatus, system, and method with adaptive transfer
    • 具有自适应传输的图像处理装置,系统和方法
    • US06307974B1
    • 2001-10-23
    • US09099819
    • 1998-06-19
    • Takuya Tsujimoto
    • Takuya Tsujimoto
    • G06K936
    • H04N1/00204H04N2201/0015H04N2201/0081H04N2201/0416H04N2201/33364
    • This invention is to transmit read image data to a host device using a transfer mode which guarantees a predetermined band and does not perform error check or retransmission time suitable for the original purpose of prescanning. When a prescanning instruction is received from a host computer (112), a scanner (115) is driven to read an original image, and thinning/interpolation and compression are performed. In addition, transfer through a communication interface USB to the host computer (112) is performed in the isochronous transfer mode which guarantees a predetermined band within a periodically continuous time and does not perform retransmission in response to error occurrence, thereby realizing high-speed transfer.
    • 本发明是使用保证预定频带的传送模式将读取的图像数据发送到主机设备,并且不执行适合于预扫描的原始目的的错误检查或重传时间。 当从主计算机(112)接收到预扫描指令时,驱动扫描仪(115)读取原始图像,并执行间隔/内插和压缩。 此外,通过通信接口USB向主计算机(112)的转移是在等时传输模式下执行的,其保证周期性连续时间内的预定频带并且不响应于错误发生进行重传,从而实现高速传输 。
    • 38. 发明授权
    • Focus stacking image processing apparatus, imaging system, and image processing system
    • 聚焦图像处理装置,成像系统和图像处理系统
    • US09224193B2
    • 2015-12-29
    • US13539936
    • 2012-07-02
    • Takuya Tsujimoto
    • Takuya Tsujimoto
    • G06T5/00G06T5/50
    • G06T5/003G06T5/50G06T2207/10056G06T2207/20221G06T2207/30024
    • An image processing apparatus comprises: an image acquisition unit for acquiring a plurality of original images acquired by imaging a specimen including a structure in various focal positions using a microscope apparatus; an image generation unit for generating, on the basis of the plurality of original images, a first image on which blurring of an image of the structure has been reduced in comparison with the original images; and an analysis unit for obtaining information relating to the structure included in the first image by applying image analysis processing to the first image. The image generation unit selects a part of the original images having focal positions included within a smaller depth range than a thickness of the specimen from the plurality of original images obtained from the specimen, and generates the first image using the selected original images.
    • 一种图像处理装置,包括:图像获取单元,用于通过使用显微镜装置获取通过使包括各种焦点位置的结构的样本成像而获得的多个原始图像; 图像生成单元,用于基于所述多个原始图像,生成与原始图像相比已经减少了结构的图像的模糊的第一图像; 以及分析单元,用于通过对第一图像应用图像分析处理来获得与包括在第一图像中的结构有关的信息。 图像生成单元从从样本获得的多个原始图像中选择具有包含在比样本的厚度更小的深度范围内的焦点位置的原始图像的一部分,并且使用所选择的原始图像来生成第一图像。
    • 39. 发明申请
    • MEASUREMENT SYSTEM, IMAGE CORRECTION METHOD, AND COMPUTER PROGRAM
    • 测量系统,图像校正方法和计算机程序
    • US20110157353A1
    • 2011-06-30
    • US12975287
    • 2010-12-21
    • Tomohiko TakayamaTakuya Tsujimoto
    • Tomohiko TakayamaTakuya Tsujimoto
    • H04N7/18
    • H04N7/183G01B11/24G01B11/2504G01B21/30G01C11/26G06T5/007H04N5/235H04N13/254
    • A measurement system includes an illumination unit configured to irradiate a measurement target with illumination light, an imaging unit configured to capture an image of light reflected by or transmitted through the measurement target, an acquisition unit configured to acquire positional relationship information representing a positional relationship between the illumination unit and the measurement target and a positional relationship between the imaging unit and the measurement target, and a correction unit configured to correct a luminance of at least one of the illumination light emitted by the illumination unit and the image captured by the imaging unit based on the positional relationship information in such a way as to correct a luminance change of the measurement target image captured by the imaging unit, wherein at least two of the measurement target, the illumination unit, and the imaging unit are variable in spatial position.
    • 一种测量系统,包括:被配置为用照射光照射测量对象的照明单元,被配置为捕获由测量对象反射或透射的光的图像的摄像单元,被配置为获取表示所述测量对象之间的位置关系的位置关系信息; 所述照明单元和所述测量对象以及所述摄像单元与所述测量对象之间的位置关系,以及校正单元,被配置为校正由所述照明单元发射的照明光和由所述摄像单元拍摄的图像中的至少一个的亮度 基于所述位置关系信息,以校正由所述摄像单元拍摄的所述测量对象图像的亮度变化,其中所述测量对象,所述照明单元和所述摄像单元中的至少两个在空间位置上是可变的。