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    • 1. 发明授权
    • Slide fastener
    • 滑动紧固件
    • US08327508B2
    • 2012-12-11
    • US13342352
    • 2012-01-03
    • Masaki Matsumoto
    • Masaki Matsumoto
    • A44B19/06
    • A44B19/20Y10T24/25Y10T24/2502Y10T24/2552
    • The slide fastener comprises elements, and a slider, the slide fastener opening and closing a horizontal opening/closing portion and a vertical opening/closing portion with one operation by sliding the slider along the elements. The slide fastener includes a horizontal functional section and a vertical functional section. The horizontal functional section includes element heads which are meshed with and unmeshed from each other, and horizontal fastener tapes. The vertical functional section includes element legs extending vertically to the horizontal direction and bending into a hook-like shape, holding portions which are formed by distal ends of the element legs, and a vertical fastener tape.
    • 拉链包括元件和滑块,拉链通过沿着元件滑动滑块而打开和关闭水平开/关部分和垂直打开/关闭部分,具有一个操作。 拉链包括水平功能部分和垂直功能部分。 水平功能部分包括与彼此啮合和不啮合的元件头和水平拉链带。 垂直功能部分包括垂直于水平方向延伸并弯曲成钩状形状的元件支柱,由元件支脚的远端形成的保持部分和垂直拉链带。
    • 2. 发明授权
    • Optical disk device
    • 光盘装置
    • US08238206B2
    • 2012-08-07
    • US12817673
    • 2010-06-17
    • Masaki Matsumoto
    • Masaki Matsumoto
    • G11B7/00
    • G11B7/0945G11B7/08541
    • The optical disk device includes a generation means and a LC servo means. The generation means generates a lens error signal based on an electrical signal output from a pickup head. After amplifying the lens error signal with a predetermined gain, the generation means outputs the lens error signal. The LC servo means performs lens center servo control based on the lens error signal. The optical disk device further includes a measurement means which measures, before the lens center servo control, a first and a second amplitude values of the lens error signal. The measurement means calculates a current gain based on the first and second amplitude values, the latest gain which is currently set, and a predetermined target amplitude value. Then the measurement means sets the current gain to the generation means.
    • 光盘装置包括生成装置和LC伺服装置。 产生装置基于从拾取头输出的电信号产生透镜误差信号。 在以预定的增益放大镜头误差信号之后,产生装置输出镜头误差信号。 LC伺服装置根据镜头误差信号执行镜头中心伺服控制。 光盘装置还包括测量装置,其在透镜中心伺服控制之前测量透镜误差信号的第一和第二幅度值。 测量装置基于第一和第二振幅值,当前设置的最新增益和预定目标振幅值来计算电流增益。 然后,测量装置将当前增益设置为产生装置。
    • 3. 发明申请
    • SLIDE FASTENER
    • 滑动紧固件
    • US20120159746A1
    • 2012-06-28
    • US13412031
    • 2012-03-05
    • Masaki Matsumoto
    • Masaki Matsumoto
    • A44B19/02A44B19/26
    • A44B19/02A44B19/20A44B19/26Y10T24/2502Y10T24/2509Y10T24/2532Y10T24/2552Y10T24/2584
    • The slide fastener comprises elements and a slider, wherein each of the elements includes a horizontal functional section an upper vertical functional section and a lower vertical functional section the slide fastener includes a plurality of fastener units in each of which the elements are arranged to oppositely face each other and the meshing portions are meshed with each other by sliding the slider between the oppositely-positioned elements, whereby the engagement pieces of the oppositely-positioned elements form an engagement portion and the engagement holding pieces of the oppositely-positioned elements in pair form an engagement holding portion, and the plurality of fastener units are constituted in a multilayered structure by engaging the engagement holding portions of a second fastener with the engagement portions of a first fastener such that the engagement holding portions of a new fastener unit are engaged with the engagement portions of a preceding fastener unit.
    • 拉链包括元件和滑块,其中每个元件包括水平功能部分,上垂直功能部分和下垂直功能部分,拉链包括多个紧固件单元,每个紧固件单元中的元件布置成相对地 彼此相互啮合,并且通过在相对定位的元件之间滑动滑块来彼此啮合,由此相对定位的元件的接合件形成接合部分,并且相对定位的元件的接合保持件成对形成 接合保持部分,并且多个紧固件单元通过将第二紧固件的接合保持部分与第一紧固件的接合部分接合而以多层结构构成,使得新的紧固件单元的接合保持部分与 前一个紧固件单元的接合部分。
    • 4. 发明授权
    • Optical disk replay device
    • 光盘重放装置
    • US07755987B2
    • 2010-07-13
    • US11702647
    • 2007-02-06
    • Masaki Matsumoto
    • Masaki Matsumoto
    • G11B7/00
    • G11B7/0901
    • An optical pickup irradiates laser light upon a track of an optical disk and receives light reflected therefrom. A tracking actuator shifts an objective lens of this optical pickup in a tracking direction. A tracking error signal detection circuit outputs a tracking error signal based upon the reflected light received by the optical pickup. A phase compensation circuit generates a tracking drive signal based upon the tracking error signal, and outputs this tracking drive signal to the tracking actuator. A balance compensation value calculation circuit calculates a balance compensation value for the tracking error signal according to the tracking drive signal outputted by the phase compensation circuit. And a balance compensation circuit adds this balance compensation value to the tracking error signal detected by the tracking error signal detection circuit, and inputs this compensated value to the phase compensation circuit.
    • 光学拾取器将激光照射到光盘的轨道上并接收从其反射的光。 跟踪致动器沿跟踪方向移动该光学拾取器的物镜。 跟踪误差信号检测电路基于由光学拾取器接收的反射光输出跟踪误差信号。 相位补偿电路基于跟踪误差信号产生跟踪驱动信号,并将该跟踪驱动信号输出到追踪致动器。 平衡补偿值计算电路根据由相位补偿电路输出的跟踪驱动信号,计算跟踪误差信号的平衡补偿值。 平衡补偿电路将该平衡补偿值与跟踪误差信号检测电路所检测的跟踪误差信号相加,并将该补偿值输入到相位补偿电路。
    • 6. 发明申请
    • Optical disk apparatus
    • 光盘装置
    • US20060158978A1
    • 2006-07-20
    • US11328056
    • 2006-01-10
    • Masaki Matsumoto
    • Masaki Matsumoto
    • G11B7/00
    • G11B7/0945G11B7/0053G11B7/0943G11B7/0953
    • There is provided an optical disk apparatus having a function of speedily calculating the amount of optical axis misalignment of an optical pickup to allow a wobble signal to be obtained early when initially spinning up an optical disk. Servo control means 27 turns the focusing servo on while turns the tracking servo off when initially spinning up an optical disk. In this state, optical axis misalignment calculating means 28 calculates the amount of optical axis misalignment X by a calculation formula X=[(A+B)−(C+D)]/(A+B+C+D) [%]. Subsequently, offset adding means 29 adds an offset value according to the amount of optical axis misalignment X to a tracking drive voltage after turning the tracking servo on. Then, wobble detecting means 30 detects a wobble signal by (A+B)−(C+D) after the offset value is added.
    • 提供了具有快速计算光学拾取器的光轴未对准量的功能的光盘装置,以允许在最初旋转光盘时提前获得摆动信号。 当最初旋转光盘时,伺服控制装置27打开聚焦伺服打开,同时关闭跟踪伺服。 在这种状态下,光轴未对准计算装置28通过计算公式X = [(A + B) - (C + D)] /(A + B + C + D)[%]计算光轴未对准X的量 。 随后,偏移加法装置29在跟踪伺服打开之后,根据光轴未对准量X将偏移值加到跟踪驱动电压上。 然后,摆动检测装置30在添加了偏移值之后,通过(A + B) - (C + D)检测摆动信号。
    • 8. 发明授权
    • Method and apparatus for applying liquid samples
    • 用于应用液体样品的方法和装置
    • US5204268A
    • 1993-04-20
    • US825843
    • 1992-01-28
    • Masaki Matsumoto
    • Masaki Matsumoto
    • G01N35/00G01N35/10
    • G01N35/1009G01N2035/00445G01N2035/00455G01N2035/1025G01N35/00029Y10T436/110833Y10T436/112499Y10T436/113332Y10T436/114998Y10T436/115831
    • A method for applying a droplet of a liquid sample from a sample applying nozzle, which is movable between a retracted position and a sample applying position, to a test film which contains a reagent which will react with a liquid sample and give rise to a change in optical density, includes providing the leading edge of the sample applying nozzle with a test film sensor. Prior to the application of the droplet of the liquid sample to the test film, the sample applying nozzle is moved down until the test film sensor comes into contact with the test film, and the distance by which the sample applying nozzle was moved down is stored. At the time the liquid sample is applied to the test film, the distance by which the sample applying nozzle is moved down is adjusted in accordance with the stored distance so that the sample applying nozzle is moved down to a sample applying position spaced a predetermined distance from the test film.
    • 将来自可在缩回位置和样品施加位置之间移动的样品施加喷嘴的液体样品的液滴施加到包含将与液体样品反应并引起变化的试剂的测试膜的方法 在光密度方面,包括向样品施加喷嘴提供带有测试膜传感器的前缘。 在将液体样品的液滴施加到测试膜之前,将样品施加喷嘴向下移动直到测试膜传感器与测试膜接触,并且存储样品施加喷嘴的下降距离 。 在将液体样品施加到测试膜的同时,将样品施加喷嘴向下移动的距离根据存储的距离进行调节,使得样品施加喷嘴向下移动到预定距离间隔的样品施加位置 从测试片。
    • 9. 发明申请
    • SLIDE FASTENERS
    • US20140251771A1
    • 2014-09-11
    • US14353237
    • 2012-10-09
    • Masaki MATSUMOTO
    • Masaki Matsumoto
    • H01H15/00A44B19/24
    • H01H15/00A44B19/24F21S2/00H01R13/28
    • [Problem]To provide a slide fasteners (SF1, SF4, SF7), each of which: is interposed between a power supply unit (PU) and signal unit (SU) provided on an input side, and a powered device (DK) provided on an output side; has uniquely shaped elements (20, 50, 80) created by means of a new idea; and forms an input/output line (L12) that enables the operation of a powered device (DK) by means of the closing action of the slide fastener (SF1, SF4, SF7).[Solution]A slide fastener (SF1) is configured from: mutually facing rows of elements (20) provided along the edges of opening/closing sides of mutually opposed fastener tapes (10); and a slider (30). By means of the slider (30) being made to slide along the elements (20) placed facing each other, and the elements (20) interlocking, said slide fastener (SF1): opens/closes the horizontal-direction opening/closing sides (H1T) of the mutually opposed fastener tapes (10); and opens/closes top/bottom vertical-direction opening/closing sides by simultaneously fitting together, or joining afterward with a push-in, an input electrode section (L1P) or output electrode section (L2P), with a top holding section (20V1R) and bottom holding section (20V2R). Said slide fastener (SF1) forms a power supply and/or signal input/output line (L12): connecting either member of the group consisting of the horizontal-direction opening/closing sides the (H1T) in the horizontal direction and the top/bottom vertical-direction opening/closing sides (V11T, V12T), to a power supply input line (L1) and/or to a signal input/output line (SL), or concurrently engaging simultaneously fitting together, or joining afterward with a push-in, said member with the input electrode section (L1P) connecting the power supply input line (L1) and/or the signal input/output line (SL); and connecting the other member of said group to a power supply output line (L2) linked to the powered device and/or to the a signal input/output line (SL), or simultaneously fitting together, or joining afterward with a push-in, said member with the output electrode section (L2P) connecting the power supply output line (L2) linked to the powered device, and/or said output electrode section (L2P) connecting the signal input/output line (SL).
    • 10. 发明申请
    • METHOD FOR QUANTIFYING PROTEIN
    • 定量蛋白质的方法
    • US20120156710A1
    • 2012-06-21
    • US13383925
    • 2010-07-16
    • Keiichi NakayamaMasaki Matsumoto
    • Keiichi NakayamaMasaki Matsumoto
    • G01N27/62
    • G01N33/6848
    • The present invention provides a method that is useful for measuring the absolute amount of a target protein contained in a protein mixture, such as a biological sample. The method of the present invention includes the steps of: (A) fragmenting the sample containing the target protein and labeling with a stable isotope X; (B) adding, to the sample obtained in step (A), a known amount of an internal standard that is prepared by fragmenting a standard protein that is identical to the target protein, and labeling with a stable isotope Y; (C) placing the sample obtained in step (B) in an LC-MS/MS device and performing multiple reaction monitoring (MRM) analysis using MRM transitions selected for the internal standard; and (D) identifying, in the MRM chromatogram detected in step (C), a peptide derived from the target protein (a target peptide) that shows the same retention time as a peptide derived from the internal standard (an internal standard peptide), and quantifying the target protein in the test sample by comparing the peak area of the internal standard peptide with the peak area of the target peptide.
    • 本发明提供了用于测定蛋白质混合物(例如生物样品)中所含的靶蛋白的绝对量的方法。 本发明的方法包括以下步骤:(A)将含有靶蛋白质的样品和用稳定的同位素X进行标记; (B)向步骤(A)中获得的样品中加入已知量的内标,其通过将与靶蛋白相同的标准蛋白质片段化并用稳定同位素Y进行标记而制备; (C)将步骤(B)中获得的样品置于LC-MS / MS装置中,并使用为内标选择的MRM转变进行多反应监测(MRM)分析; 和(D)在步骤(C)中检测到的MRM色谱图中鉴定出与来自内标(内标肽)的肽显示相同保留时间的靶蛋白(目标肽)的肽, 并通过比较内标肽的峰面积与目标肽的峰面积来定量试验样品中的靶蛋白。