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    • 13. 发明授权
    • Optical line monitoring apparatus and optical line monitoring method
    • 光线路监控装置及光线路监控方法
    • US08270828B2
    • 2012-09-18
    • US13218681
    • 2011-08-26
    • Toshiaki NakajimaKenji Yasuhara
    • Toshiaki NakajimaKenji Yasuhara
    • H04B10/08
    • G01M11/3136H04B10/071
    • An optical line monitoring apparatus, including: a group information recording portion which records group information about to which splitter respective terminators are connected; a normal information recording portion which records intensities of reflected lights from a plurality of terminators in a state in which a failure is not occurring in optical lines; a monitored information recording portion which records intensities of reflected lights from the plurality of terminators in failure monitoring time; an attenuation amount determination portion which determines a terminator the reflected light intensity of which is attenuated compared with the corresponding reflected light intensity in normal information; and a control portion which determines, if the intensities of the reflected lights of all the terminators connected to the same splitter are attenuated by the same value, that a failure has occurred between the test apparatus and the splitter to which all the terminators are connected.
    • 一种光线路监视装置,包括:组信息记录部分,其记录关于哪个分离器各个终端器连接到的组信息; 正常信息记录部分,其在光线路中不发生故障的状态下记录来自多个终端器的反射光的强度; 监视信息记录部分,其在故障监视时间中记录来自多个终端器的反射光的强度; 衰减量判定部,其与正常信息中的相应的反射光强度相比,确定其反射光强度被衰减的终止器; 以及控制部分,如果连接到相同分离器的所有终端器的反射光的强度衰减相同的值,则确定测试装置与所有终端器连接的分路器之间发生故障。
    • 15. 发明申请
    • OPTICAL LINE MONITORING APPARATUS AND OPTICAL LINE MONITORING METHOD
    • 光线监测装置和光线监测方法
    • US20110311220A1
    • 2011-12-22
    • US13218681
    • 2011-08-26
    • Toshiaki NakajimaKenji Yasuhara
    • Toshiaki NakajimaKenji Yasuhara
    • H04B10/08
    • G01M11/3136H04B10/071
    • An optical line monitoring apparatus, including: a group information recording portion which records group information about to which splitter respective terminators are connected; a normal information recording portion which records intensities of reflected lights from a plurality of terminators in a state in which a failure is not occurring in optical lines; a monitored information recording portion which records intensities of reflected lights from the plurality of terminators in failure monitoring time; an attenuation amount determination portion which determines a terminator the reflected light intensity of which is attenuated compared with the corresponding reflected light intensity in normal information; and a control portion which determines, if the intensities of the reflected lights of all the terminators connected to the same splitter are attenuated by the same value, that a failure has occurred between the test apparatus and the splitter to which all the terminators are connected.
    • 一种光线路监视装置,包括:组信息记录部分,其记录关于哪个分离器各个终端器连接到的组信息; 正常信息记录部分,其在光线路中不发生故障的状态下记录来自多个终端器的反射光的强度; 监视信息记录部分,其在故障监视时间中记录来自多个终端器的反射光的强度; 衰减量判定部,其与正常信息中的相应的反射光强度相比,确定其反射光强度被衰减的终止器; 以及控制部分,如果连接到相同分离器的所有终端器的反射光的强度衰减相同的值,则确定测试装置与所有终端器连接的分路器之间发生故障。
    • 16. 发明申请
    • THERAPEUTIC SYSTEM, THERAPEUTIC DEVICE, AND CONTROL METHOD
    • 治疗系统,治疗设备和控制方法
    • US20110125036A1
    • 2011-05-26
    • US12446144
    • 2007-10-03
    • Toshiaki NakajimaYoshiaki Sato
    • Toshiaki NakajimaYoshiaki Sato
    • A61B5/024
    • A61B5/0285A61B5/021A61B17/132A61F5/34A61H9/0078A61H9/0092A61H2201/165A61H2201/5002A61H2201/5007A61H2201/5071
    • To provide a therapeutic system which is based on the KAATSU training and which is suitable for treating metabolic syndrome.A therapeutic system is comprised of a tight fitting device 100, a body segment 200, a measuring segment 300, and a control segment 400. The tight fitting device 100 is wrapped around a predetermined range on the limb. The tight fitting device 100 has an air-tight gas bag and can change a compression pressure to be applied to the limb by means of introducing and removing air into and from the gas bag. The body segment 200 controls the flow of the air into and from the gas bag. The measuring segment 300 is attached to the limb around which the tight fitting device 100 is wrapped and measures the amplitude of pulse wave. The control segment 400 determines an air pressure within the gas bag at the time point at which the amplitude of the pulse wave reaches its maximum, during preprocessing that is performed prior to the treatment, and uses it as the pressure within the gas bag for the treatment.
    • 提供基于KAATSU训练并适用于治疗代谢综合征的治疗系统。 治疗系统包括紧配装置100,主体段200,测量段300和控制段400.紧密装置100围绕肢体上的预定范围缠绕。 紧固装置100具有气密气囊,并且可以通过将气体引入和从气袋中取出而改变施加到肢体的压缩压力。 主体段200控制进出气囊的空气的流动。 测量段300附接到围绕紧固装置100缠绕的肢体并测量脉搏波的幅度。 控制段400在处理之前进行的预处理期间,在脉搏波的振幅达到最大的时间点,确定气囊内的气压,并将其用作气囊内的压力 治疗。