Method for recording and reproduction on a magneto-optical recording medium
    1.
    发明授权
    Method for recording and reproduction on a magneto-optical recording medium 失效
    在磁光记录介质上进行记录和再现的方法

    公开(公告)号:US07113453B1

    公开(公告)日:2006-09-26

    申请号:US09321795

    申请日:1999-05-28

    CPC classification number: G11B11/10508 G11B11/10515 G11B11/10586

    Abstract: A magneto-optical recording medium and a method for recording and reproduction thereon are provided in order to reproduce information recorded by multi-valued recording at a high S/N ratio. Disclosed is a magneto-optical recording medium including two magnetic layers capable of four-valued recording based on four combined magnetization states. Magnitudes of reproduction signals concerning the four magnetization states, obtained upon reproduction at a wavelength λ1, are different from those obtained upon reproduction at a wavelength λ2. The two magnetic layers, on which a signal (a) is recorded, are irradiated with light beams having the wavelengths λ1 and λ2 respectively. Signals (d), (e) reproduced from respective reflected light beams are sliced by using at least one slice level to obtain two-valued or higher multi-valued reproduction signals respectively. The two-valued or higher multi-valued reproduction signals (f), (g) from the respective wavelengths are mutually subjected to logical operation to reproduce recorded information (i).

    Abstract translation: 提供磁光记录介质及其上的记录和再现方法,以便以高S / N比再现通过多值记录记录的信息。 公开了一种包括基于四个组合磁化状态能够进行四值记录的两个磁性层的磁光记录介质。 在波长λ1 1再现时获得的关于四个磁化状态的再现信号的幅度与在波长λ2 2再现时获得的重现信号的大小不同。 在其上记录有信号(a)的两个磁性层分别用波长λ1和λ2的光束照射。 通过使用至少一个限幅电平对从各反射光束再现的信号(d),(e)进行分片,以分别获得二值或更高的多值再现信号。 来自各个波长的两值或更高的多值再生信号(f),(g))相互进行逻辑运算以再现记录信息(i)。

    Magneto-optical recording medium and method for recording and
reproduction thereon
    2.
    发明授权
    Magneto-optical recording medium and method for recording and reproduction thereon 失效
    磁光记录介质及其上的记录和再现方法

    公开(公告)号:US5923625A

    公开(公告)日:1999-07-13

    申请号:US981308

    申请日:1997-12-16

    CPC classification number: G11B11/10508 G11B11/10515 G11B11/10586

    Abstract: A magneto-optical recording medium and a method for recording and reproduction thereon are provided in order to reproduce information recorded by multi-valued recording at a high S/N ratio. Disclosed is a magneto-optical recording medium including two magnetic layers capable of four-valued recording based on four combined magnetization states. Magnitudes of reproduction signals concerning the four magnetization states, obtained upon reproduction at a wavelength .lambda..sub.1, are different from those obtained upon reproduction at a wavelength .lambda..sub.2. The two magnetic layers, on which a signal (a) is recorded, are irradiated with light beams having the wavelengths .lambda..sub.1 and .lambda..sub.2 respectively. Signals (d), (e) reproduced from respective reflected light beams are sliced by using at least one slice level to obtain two-valued or higher multi-valued reproduction signals respectively. The two-valued or higher multi-valued reproduction signals (f), (g) from the respective wavelengths are mutually subjected to logical operation to reproduce recorded information (i).

    Abstract translation: PCT No.PCT / JP96 / 01938 Sec。 371日期:1997年12月16日 102(e)日期1997年12月16日PCT提交1996年7月12日PCT公布。 公开号WO97 / 03439 日期1997年1月30日提供磁光记录介质及其上的记录和再现方法,以便以高S / N比再现由多值记录记录的信息。 公开了一种包括基于四个组合磁化状态能够进行四值记录的两个磁性层的磁光记录介质。 关于在波长λ1再现时获得的四种磁化状态的再现信号的幅度与在波长λ2再现时获得的不同。将记录有信号(a)的两个磁性层照射 分别具有波长λ1和λ2的光束。 通过使用至少一个限幅电平对从各反射光束再现的信号(d),(e)进行分片,以分别获得二值或更高的多值再现信号。 来自各个波长的两值或更高的多值再生信号(f),(g))相互进行逻辑运算以再现记录信息(i)。

    Method of Detecting Reactive Metabolite
    3.
    发明申请
    Method of Detecting Reactive Metabolite 审中-公开
    检测活性代谢物的方法

    公开(公告)号:US20090075319A1

    公开(公告)日:2009-03-19

    申请号:US11991829

    申请日:2006-09-13

    CPC classification number: G21H5/02 G01N33/60

    Abstract: A method of detecting a reactive metabolite which comprises steps of conducting a metabolic reaction of a test compound in the presence of two labeled nucleophiles, and detecting the label of the nucleophiles bound to the reactive metabolite, and a method of detecting a reactive metabolite which further comprises separating liquid layer using ammonium acetate to obtain an organic layer after the aforementioned reaction step are disclosed. In these detection methods, a reactive metabolite can be quantitatively detected by easy preparation. Furthermore, generation of a false positive signal can be prevented, and generation of a false negative signal can be decreased. Accordingly, screening of a test compound can be efficiently performed with higher accuracy.

    Abstract translation: 一种检测反应性代谢物的方法,其包括在两个标记的亲核试剂存在下进行测试化合物的代谢反应并检测与活性代谢物结合的亲核试剂的标记的步骤,以及进一步检测反应性代谢物的方法 包括在公开上述反应步骤之后使用乙酸铵分离液体层以获得有机层。 在这些检测方法中,可以通过容易的制备定量检测反应性代谢物。 此外,可以防止产生假阳性信号,并且可以减少假阴性信号的产生。 因此,可以更高精度有效地进行试验化合物的筛选。

    OPTICAL ADJUSTING MEMBER, AND ILLUMINATION DEVICE AND LIQUID CRYSTAL DISPLAY DEVICE INCLUDING THE SAME
    6.
    发明申请
    OPTICAL ADJUSTING MEMBER, AND ILLUMINATION DEVICE AND LIQUID CRYSTAL DISPLAY DEVICE INCLUDING THE SAME 审中-公开
    光学调整构件,以及照明装置和包括其的液晶显示装置

    公开(公告)号:US20080303777A1

    公开(公告)日:2008-12-11

    申请号:US12134937

    申请日:2008-06-06

    Abstract: An optical adjusting member according to the invention includes a base member, a plurality of lenses, and a light diffusion layer. The base member has optical transparency. The plurality of lenses are formed on the base member. The light diffusion layer is formed on the plurality of lenses, and at least top edge parts of the lenses are buried in the light diffusion layer. In the optical adjusting member according to the invention, at least the top edge parts of the plurality of lenses are buried in the light diffusion layer and therefore the lenses are less susceptible to damages. The optical adjusting member according to the invention has a light collecting function by the lenses and a diffusion function by the light diffusion layer.

    Abstract translation: 根据本发明的光学调节构件包括基底构件,多个透镜和光扩散层。 基座部件具有光学透明性。 多个透镜形成在基底构件上。 光扩散层形成在多个透镜上,并且透镜的至少上边缘部分被掩埋在光扩散层中。 在根据本发明的光学调节构件中,多个透镜的至少顶部边缘部分被掩埋在光扩散层中,因此透镜不易受损害。 根据本发明的光学调节构件通过透镜具有聚光功能和通过光扩散层的扩散功能。

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