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    • 1. 发明授权
    • Electronic blood pressure measuring device
    • 电子血压测量装置
    • US4793360A
    • 1988-12-27
    • US80463
    • 1987-07-30
    • Yoshinori MiyawakiSatoshi UenoSatoshi EgawaOsamu Shirasaki
    • Yoshinori MiyawakiSatoshi UenoSatoshi EgawaOsamu Shirasaki
    • A61B5/022G06F17/00A61B5/02
    • A61B5/022A61B5/02116A61B5/02225A61B5/7239
    • An electronic blood pressure monitor includes a cuff, a system for pressurizing the cuff, and pressure and pulse wave sensors in the cuff. In the monitor the maximum amplitude of the pulse wave is extracted and an area between the envelope lines of certain data is computed. Maximum area values are computed on the higher and lower sides of the cuff pressure corresponding to the maximum value of the pulse wave amplitude; from these area values are computed maximum and minimum blood pressure values. In another aspect, the pulse wave signal from the pulse wave sensor is separated into signal components greater and less than a reference value, these signal components are smoothed and combined and blood pressure values are determined from the combined signals and the cuff pressure values derived from the pressure sensor in the cuff.
    • 电子血压计包括袖带,用于对袖带加压的系统,以及袖带中的压力和脉搏波传感器。 在监视器中,提取脉搏波的最大幅度,并计算某些数据的包络线之间的区域。 最大面积值是根据脉搏波幅值的最大值对袖口压力的上下两边计算的; 从这些区域值计算最大和最小血压值。 另一方面,来自脉波传感器的脉波信号被分离成大于参考值的信号分量,这些信号分量被平滑和组合,并且从组合信号和从袖珍压力值得到的袖带压值确定血压值 袖带中的压力传感器。
    • 4. 发明授权
    • Device for measuring blood pressure
    • 用于测量血压的装置
    • US4754406A
    • 1988-06-28
    • US711417
    • 1985-03-13
    • Yoshinori MiyawakiOsamu ShirasakiSatoshi Ueno
    • Yoshinori MiyawakiOsamu ShirasakiSatoshi Ueno
    • A61B5/022G06F17/00A61B5/02
    • A61B5/022
    • An electronic device for measuring blood pressure, according to which either systolic pressure may be derived from mean pressure and diastolic pressure, or diastolic pressure may be derived from systolic pressure and mean pressure, whereby the time duration of the application of pressure to the patient's arm may be reduced because the pressure to be applied may only range substantially over between mean pressure and diastolic pressure or between systolic pressure and mean pressure. Additionally proposed is a means for improving the accuracy of the above-mentioned derivation of systolic pressure or diastolic pressure. As a result, considerable reduction in the time duration required for measurement may be reduced without any increase in measurement errors.
    • 一种用于测量血压的电子装置,根据该装置可以从平均压力和舒张压获得收缩压,或者可以从收缩压和平均压力导出舒张压,由此向患者的手臂施加压力的持续时间 可能会减少,因为要施加的压力可能仅在平均压力和舒张压之间或收缩压和平均压力之间的范围内。 另外提出的是用于提高上述收缩压或舒张压的推导精度的方法。 结果,可以减少测量所需时间的显着减少,而不会增加测量误差。
    • 8. 发明授权
    • Fixing device and image forming apparatus
    • 固定装置和成像装置
    • US09052650B2
    • 2015-06-09
    • US13671082
    • 2012-11-07
    • Motoyoshi YamanoJun OkamotoTetsuo TokudaTakashi SakamakiSatoshi UenoNaoto SuzukiFumihiro Hirose
    • Motoyoshi YamanoJun OkamotoTetsuo TokudaTakashi SakamakiSatoshi UenoNaoto SuzukiFumihiro Hirose
    • G03G15/20
    • G03G15/2053
    • A fixing device fixes a toner image on a recording medium by heating the recording medium, with a heating area and a non-heating area selected in accordance with a magnetic flux and a repulsive magnetic flux. The fixing device includes a heat generating layer, an exciting coil, and a demagnetizing member. The heat generating layer generates heat. The exciting coil generates the magnetic flux, and thereby inductively heats the heat generating layer. The demagnetizing member faces the heat generating layer in the non-heating area. The demagnetizing member generates the repulsive magnetic flux against the magnetic flux generated by the exciting coil, and thereby demagnetizes the magnetic flux and suppresses the heating. Further, the demagnetizing member has a demagnetization effect different between at least a portion of the non-heating area adjacent to the heating area and the remaining portion of the non-heating area.
    • 定影装置通过加热记录介质,根据磁通量和排斥磁通量选择加热区域和非加热区域,将调色剂图像定影在记录介质上。 固定装置包括发热层,励磁线圈和退磁构件。 发热层产生热量。 励磁线圈产生磁通量,从而感应加热发热层。 退磁构件面向非加热区域中的发热层。 退磁构件产生抵抗由励磁线圈产生的磁通的斥力磁通,从而使磁通消磁,并抑制加热。 此外,退磁构件在与加热区域相邻的非加热区域的至少一部分与非加热区域的剩余部分之间具有不同的退磁效果。