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    • 3. 发明申请
    • METHOD FOR PRODUCING MICROCAPSULES USING SOLID FAT
    • 使用固体脂肪生产微球的方法
    • US20110091553A1
    • 2011-04-21
    • US12995819
    • 2009-06-02
    • Kento KanayaMasao Sato
    • Kento KanayaMasao Sato
    • A61K9/00A61K38/40A61P31/04A23D9/00A23D9/05
    • A61K35/20A23L33/19A23P10/35A61K9/1617A61K9/1694A61K38/00A61K47/14A61K47/24A61K47/26A61K47/28A61K47/44
    • An object of the present invention is to provide a method for production of fine microcapsules which encapsulate a hydrophilic bioactive substance at a high content and can be used in wide range of applications such as foods and medical drugs, which method enabling efficient industrial production. The present invention is directed to a method for production of S/O type microcapsules in which a hydrophilic bioactive substance is polydispersed in a solid fat matrix, including steps of: dispersing a complex of the hydrophilic bioactive substance with a surfactant (A) in a solid fat at a temperature not lower than the melting point of the solid fat to obtain an S/O suspension, followed by permitting liquid droplet dispersion of the S/O suspension, and hardening the solid fat by cooling the S/O suspension liquid droplets to lower than the melting point of the solid fat to obtain solid particles; and an S/O type microcapsule wherein a milk protein-derived ingredient such as lactoferrin is polydispersed in a solid fat matrix.
    • 本发明的目的在于提供一种以高含量包封亲水性生物活性物质的精细微胶囊的制造方法,能够广泛应用于食品,医药等领域,能够实现高效的工业化生产。 本发明涉及一种生产S / O型微胶囊的方法,其中亲水性生物活性物质多分散在固体脂肪基质中,包括以下步骤:将亲水性生物活性物质与表面活性剂(A)的配合物分散在 固体脂肪在固体脂肪的熔点以上的温度下得到S / O悬浮液,然后允许S / O悬浮液的液滴分散,并通过冷却S / O悬浮液液滴硬化固体脂肪 低于固体脂肪的熔点,得到固体颗粒; 和S / O型微胶囊,其中乳蛋白衍生成分如乳铁蛋白多分散在固体脂肪基质中。
    • 5. 发明授权
    • Cooling device
    • 冷却装置
    • US06865200B2
    • 2005-03-08
    • US10178454
    • 2002-06-25
    • Hiroshi TakigawaTetsuro SakanoYuji NishikawaMasao SatoShinya NaitoRyusuke MiyataKoji Hayano
    • Hiroshi TakigawaTetsuro SakanoYuji NishikawaMasao SatoShinya NaitoRyusuke MiyataKoji Hayano
    • H05K7/20F28F3/08H01L23/473H01S5/024H01S5/40H01S3/04
    • F28F3/086H01S5/024H01S5/02423H01S5/4031H01S5/405
    • A cooling device suitable for cooling a laser diode bar constituting a surface illuminating device as a light source for exciting a laser medium of a solid-state laser oscillator of high power. The cooling device is capable of flowing coolant at sufficient flow rate by reducing the pressure loss in the flow passage of the coolant in the device, to realize a light source device of small thickness with high cooling capability and high reliability. The cooling device comprises a first plate member, one or more second plate member and a third plate member to be joined together to form a laminated body. The second plate member has grooved paths formed on both surfaces thereof and having depths greater than a half of thickness of the plate member, and also opened paths for communicating grooved paths formed on the first plate member and the third plate member. The pressure loss in the flow passage of coolant is reduced by increasing a sectional area of the flow passage by the grooved paths and the opened path of the second plate member without lowering mechanical strength of the device and without increasing a manufacturing cost of the device.
    • 一种适于冷却构成表面照明装置的激光二极管条的冷却装置,作为用于激发高功率的固态激光振荡器的激光介质的光源。 冷却装置能够通过减小装置内的冷却剂的流路中的压力损失,以足够的流量流动冷却剂,实现具有高冷却能力和高可靠性的小厚度的光源装置。 冷却装置包括第一板构件,一个或多个第二板构件和第三板构件,以将其接合在一起以形成层压体。 第二板构件具有形成在其两个表面上并且具有大于板构件的厚度的一半的深度的凹槽路径,以及用于连通形成在第一板构件和第三板构件上的沟槽路径的开口路径。 通过在不降低装置的机械强度的情况下增加通过槽形路径和第二板构件的打开路径的流动通道的截面积而减小冷却剂的流动通道中的压力损失,并且不增加装置的制造成本。
    • 6. 发明授权
    • In-line fluorescent x-ray film thickness monitor
    • 直列荧光X光胶片厚度监视器
    • US06175612B1
    • 2001-01-16
    • US09243919
    • 1999-02-03
    • Masao Sato
    • Masao Sato
    • G01N23223
    • G01N23/223G01N2223/076
    • In order to improve detection efficiency and angular detection characteristics of an in-line X-ray film thickness monitor for monitoring the film thickness of a coated part during production of a product formed using the coated part, the film thickness monitor is provided with an X-ray tube of an end-window type for irradiating an X-ray beam onto the coated part, and an X-ray detector having an annular detecting plane arranged coaxially with the axis of irradiation of the X-ray beam. The X-ray detector detects fluorescent X-rays emitted by the coated part in response to irradiation thereof by the X-ray beam so that the thickness of the coating film can be determined based upon the intensity of the detected fluorescent X-rays.
    • 为了提高直线X射线胶片厚度监视器的检测效率和角度检测特性,用于在使用涂布部件形成的产品的制造期间监视涂布部件的膜厚度,膜厚监视器设置有X 用于将X射线束照射到涂覆部分上的端窗型射线管,以及具有与X射线束的照射轴同轴布置的环状检测面的X射线检测器。 X射线检测器响应于X射线束的照射而检测由涂布部发射的荧光X射线,使得可以基于检测到的荧光X射线的强度来确定涂膜的厚度。
    • 7. 发明授权
    • Coating thickness gauge by X-ray fluorescence
    • 涂层厚度计通过X射线荧光
    • US6061425A
    • 2000-05-09
    • US194369
    • 1994-02-09
    • Masao Sato
    • Masao Sato
    • G01B15/02G01N23/223
    • G01B15/02G01N23/223G01N2223/076
    • In order to automatically measure the thickness of coatings on a sample, a plurality of calibration curves are stored in a memory circuit beforehand, and X-ray fluorescence generated by irradiation of the sample with primary X-rays is detected by an X-ray fluorescence coating thickness gauge. The X-ray fluorescence is differentiated according to wavelength (energy) by a differentiating circuit. By this differential manipulation, the materials of a sample are identified. Based on the identified constituents of a sample, automatic selection can be made of the most probable and suitable calibration curve out of the plural number of calibration curves stored in a memory and finally coating thickness can be measured on the basis of the selected calibration curve and the intensity of X-ray fluorescence of the sample obtained by the coating thickness gauge.
    • 为了自动测量样品上的涂层的厚度,预先将多个校准曲线存储在存储器电路中,并且通过用X射线荧光检测样品与原始X射线的照射产生的X射线荧光 涂层厚度计。 通过微分电路根据波长(能量)来区分X射线荧光。 通过该微分操作,可以确定样品的材料。 基于样品的鉴定成分,可以自动选择存储在存储器中的多个校准曲线中最可能和合适的校准曲线,并且可以基于所选择的校准曲线来测量涂层厚度, 通过涂层厚度计获得的样品的X射线荧光强度。
    • 9. 发明授权
    • Video data edit/reproduction apparatus for video data which mixedly
includes moving and still images
    • 用于视频数据的视频数据编辑/再现设备,其混合地包括移动和静止图像
    • US5937136A
    • 1999-08-10
    • US812468
    • 1997-03-06
    • Masao Sato
    • Masao Sato
    • H04N5/7826G11B19/02G11B20/12G11B27/02G11B27/031G11B27/034G11B27/10G11B27/11G11B27/32G11B27/34H04N5/91H04N5/93H04N5/937H04N5/76
    • G11B27/105G11B19/02G11B27/034G11B27/11G11B27/326G11B27/329G11B2220/216G11B2220/2562G11B2220/2575G11B2220/65G11B27/34
    • A video data edit/reproduction apparatus includes an operation unit, a recording unit, a storage unit, and a reproduction unit in order to edit and reproduce video data recorded in a predetermined recording medium together with at least one of address information and time information on the recording medium. The operation unit designates desired portions of the video data recorded in the predetermined recording medium, and designates the reproduction order of the video data at the desired portions. The recording unit records, as edit information in a preset area of the predetermined recording medium together with the reproduction order, at least one of address information and time information on the predetermined recording medium for the video data at the desired portions designated by the operation unit. The storage unit reproduces and stores the edit information recorded by the recording unit in the preset area of the predetermined recording medium. The reproduction unit reproduces the video data at the desired portions from the video data recorded in the predetermined recording medium in the reproduction order in accordance with the edit information from the storage unit.
    • 视频数据编辑/再现装置包括操作单元,记录单元,存储单元和再现单元,以便编辑和再现记录在预定记录介质中的视频数据以及至少一个地址信息和时间信息 记录介质。 操作单元指定记录在预定记录介质中的视频数据的所需部分,并在期望的部分指定视频数据的再现顺序。 记录单元将预定记录介质的预设区域中的编辑信息与再现顺序一起记录在操作单元指定的期望部分处的用于视频数据的预定记录介质上的地址信息和时间信息中的至少一个 。 存储单元将由记录单元记录的编辑信息再现并存储在预定记录介质的预设区域中。 再现单元根据来自存储单元的编辑信息以再现顺序从记录在预定记录介质中的视频数据的期望部分再现视频数据。