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    • 1. 发明申请
    • METHOD AND KIT FOR DETECTION OF GUAIACOL-PRODUCING BACTERIUM
    • 用于检测生产GUAIACOL生产细菌的方法和试剂盒
    • US20120135456A1
    • 2012-05-31
    • US13378274
    • 2010-06-15
    • Hiroaki MurakamiMasanori Takase
    • Hiroaki MurakamiMasanori Takase
    • C12Q1/04C07C65/03
    • C12Q1/04C12Q1/045
    • Disclosed is a method for detecting guaiacol-producing bacteria in a specimen comprising culturing the specimen or a dilution thereof on a plate of a solid medium for acidophilic bacteria comprising a compound represented by the following formula, wherein R is —H, —OH, —C(O)H, —C(O)CH3, —COOH, C1-C3 alkyl or C1-C3 alkenyl, wherein alkyl and alkenyl may optionally be substituted by —OH, —C(O)H or —COOH); and detecting a colony formed on the solid medium. According to preferred embodiments, the solid medium for acidophilic bacteria comprises 50 ppm or more of vanillic acid and the plate culture is carried out at 20° C. to 55° C. The present invention also provides a solid medium for acidophilic bacteria and a kit for detection of guaiacol-producing bacteria in a specimen. According to the present invention, guaiacol-producing bacteria present in a specimen such as fruit juice raw materials can be detected rapidly in a simple manner.
    • 本发明公开了一种检测试样中愈创木酚生产菌的方法,包括将试样或其稀释液培养在含有下式表示的化合物的嗜酸细菌固体培养基板上,其中R为-H,-OH, - C(O)H,-C(O)CH 3,-COOH,C 1 -C 3烷基或C 1 -C 3烯基,其中烷基和烯基可任选被-OH,-C(O)H或-COOH取代); 并检测在固体培养基上形成的菌落。 根据优选实施方案,用于嗜酸细菌的固体培养基包含50ppm或更多的香草酸,并且板温培养在20℃至55℃下进行。本发明还提供了用于嗜酸细菌和试剂盒的固体培养基 用于在样品中检测愈创木酚生成细菌。 根据本发明,能够以简单的方式快速检测存在于果汁原料等样品中的愈创木酚生产菌。
    • 2. 发明授权
    • Method and kit for detection of guaiacol-producing bacterium
    • 用于检测愈创木酚生产菌的方法和试剂盒
    • US08921059B2
    • 2014-12-30
    • US13378274
    • 2010-06-15
    • Hiroaki MurakamiMasanori Takase
    • Hiroaki MurakamiMasanori Takase
    • G01N33/554C12Q1/04
    • C12Q1/04C12Q1/045
    • Disclosed is a method for detecting guaiacol-producing bacteria in a specimen comprising culturing the specimen or a dilution thereof on a plate of a solid medium for acidophilic bacteria comprising a compound represented by the following formula, wherein R is —H, —OH, —C(O)H, —C(O)CH3, —COOH, C1-C3 alkyl or C1-C3 alkenyl, wherein alkyl and alkenyl may optionally be substituted by —OH, —C(O)H or —COOH); and detecting a colony formed on the solid medium. According to preferred embodiments, the solid medium for acidophilic bacteria comprises 50 ppm or more of vanillic acid and the plate culture is carried out at 20° C. to 55° C. The present invention also provides a solid medium for acidophilic bacteria and a kit for detection of guaiacol-producing bacteria in a specimen. According to the present invention, guaiacol-producing bacteria present in a specimen such as fruit juice raw materials can be detected rapidly in a simple manner.
    • 本发明公开了一种检测试样中愈创木酚生产菌的方法,包括将试样或其稀释液培养在含有下式表示的化合物的嗜酸细菌固体培养基板上,其中R为-H,-OH, - C(O)H,-C(O)CH 3,-COOH,C 1 -C 3烷基或C 1 -C 3烯基,其中烷基和烯基可任选被-OH,-C(O)H或-COOH取代); 并检测在固体培养基上形成的菌落。 根据优选实施方案,用于嗜酸细菌的固体培养基包含50ppm或更多的香草酸,并且板温培养在20℃至55℃下进行。本发明还提供了用于嗜酸细菌和试剂盒的固体培养基 用于在样品中检测愈创木酚生成细菌。 根据本发明,能够以简单的方式快速检测存在于果汁原料等样品中的愈创木酚生产菌。
    • 4. 发明授权
    • Apparatus and method for forming image
    • 用于形成图像的装置和方法
    • US09471021B2
    • 2016-10-18
    • US14732127
    • 2015-06-05
    • Akihiko TosakaToshiyuki UchidaKazuhiro KobayashiHiroaki Murakami
    • Akihiko TosakaToshiyuki UchidaKazuhiro KobayashiHiroaki Murakami
    • G03G15/00
    • G03G15/5058G03G2215/0132G03G2215/0161
    • An image forming apparatus includes a multi-color misalignment calculator that calculates an amount of multi-color misalignment of multiple color misalignment detection test pattern images based on position readings outputted by multiple test pattern image detectors, an image formation condition adjusting unit that adjusts an image formation condition of the image forming apparatus in accordance with the amount of multi-color misalignment of the multiple color misalignment detection test pattern images calculated by the multi-color misalignment calculator, and a process control unit that initiates a first multi-color misalignment correction control mode including a skew misalignment correction process and a second multi-color misalignment correction control mode excluding the skew misalignment correction process to correct multi-color misalignment of the multiple color misalignment detection test pattern images. A memory stores the amount of skew misalignment calculated by the multi-color misalignment calculator when the process control unit initiates the second multi-color misalignment correction control mode.
    • 一种图像形成装置,包括:多色偏移计算器,其基于由多个测试图案图像检测器输出的位置读数计算多个颜色不对准检测图案图像的多色未对准量;调整图像的图像形成条件调整单元 根据由多色未对准计算器计算的多色未对准检测图案图像的多色未对准量的图像形成装置的形成条件以及启动第一多色未对准校正控制的处理控制单元 模式,其包括偏斜偏移校正处理和除了偏斜不对准校正处理之外的第二多色未对准校正控制模式,以校正多色未对准检测测试图案图像的多色未对准。 当处理控制单元启动第二多色未对准校正控制模式时,存储器存储由多色未对准计算器计算出的偏斜偏移量。
    • 9. 发明授权
    • Torque limiting mechanism
    • 扭矩限制机构
    • US08105171B2
    • 2012-01-31
    • US12373422
    • 2006-08-11
    • Hiroaki Murakami
    • Hiroaki Murakami
    • F16D7/02
    • F16D7/027F16D43/216F16D2023/123
    • A high-precision torque limiting mechanism capable of limiting an output torque to a magnitude of not more than a prescribed value, as well as to reduce a frictional torque produced upon occurrence of a slip. To accomplish this object, a ball ramp section (13) is attached to a slip clutch section (3) for reducing friction between friction plates (31) and (32) forming the slip clutch section (3) and limiting a torque to be transmitted by utilizing an axial thrust produced at the ball ramp section (13) in accordance with the magnitude of an input torque. The precision with which the torque to be transmitted is limited is enhanced by making improvements to the shape of an internal side surface of a recess (G) formed in each of cam elements (131) and (132) of the ball ramp section (13).
    • 一种高精度的扭矩限制机构,其能够将输出扭矩限制在规定值以下的大小,并且能够减少滑动发生时产生的摩擦转矩。 为了实现该目的,将滚珠坡道部分(13)安装到滑动离合器部分(3)上,以减少形成滑动离合器部分(3)的摩擦板(31)和(32)之间的摩擦,并限制要传递的扭矩 通过根据输入转矩的大小利用在球坡道段(13)处产生的轴向推力。 通过改进形成在滚珠坡道部分(13)的每个凸轮元件(131)和(132)中的凹部(G)的内侧表面的形状来提高要传递扭矩受限的精度 )。