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    • 2. 发明授权
    • Apparatus for measuring bio-magnetic fields
    • 用于测量生物磁场的装置
    • US06681131B2
    • 2004-01-20
    • US09977213
    • 2001-10-16
    • Akihiko KandoriTsuyoshi MiyashitaDaisuke SuzukiKoichi YokosawaKeiji Tsukada
    • Akihiko KandoriTsuyoshi MiyashitaDaisuke SuzukiKoichi YokosawaKeiji Tsukada
    • A61B505
    • A61B5/04007A61B5/7239A61B5/7285
    • An apparatus for measuring bio-magnetic fields includes a plurality of magnetometers for detecting magnetic fields generated from a live body; a driving circuit for driving the magnetometers; a computer for collecting output signals of the driving circuit in the form of data representing at least one waveform of the magnetic fields generated from the live body and for performing an arithmetic processing on the data representing the waveform of magnetic fields, a display unit, and at least one signal processing circuit for processing output signals of the driving circuit. The computer further performs an arithmetic processing of first-order differentiation on the waveform of the magnetic fields in a z direction with respect to time in order to create an arrow map and a contour map. The apparatus can also detect mechanical movement which occurs as blood flows in organs and organs move.
    • 一种用于测量生物磁场的装置包括:用于检测从活体产生的磁场的多个磁力计; 用于驱动磁力计的驱动电路; 用于以表示从活体产生的磁场的至少一个波形的数据形式收集驱动电路的输出信号并且对表示磁场波形的数据执行算术处理的计算机,显示单元和 至少一个信号处理电路,用于处理驱动电路的输出信号。 计算机进一步对z方向上的磁场波形进行一阶微分的运算处理,以便产生箭头图和轮廓图。 该装置还可以检测器官和器官中的血液流动时发生的机械运动。
    • 7. 发明授权
    • Magnetic field measuring apparatus which enables external magnetic noise cancellation
    • 能够进行外部磁噪声消除的磁场测量装置
    • US06462540B1
    • 2002-10-08
    • US09635450
    • 2000-08-10
    • Akihiko KandoriTsuyoshi MiyashitaKeiji Tsukada
    • Akihiko KandoriTsuyoshi MiyashitaKeiji Tsukada
    • G01R33035
    • G01R33/025A61B5/0046A61B5/04005G01R33/0354Y10S505/846
    • A magnetic field measuring apparatus for precise cancellation of environmental noise includes a plurality of first SQUID gradiometers to detect noise and biomagnetic fields, a plurality of second SQUID gradiometers to detect noise, a driving circuit to drive these gradiometers, and a computer to execute signal processing after collecting the signals detected by these gradiometers. First and second SQUID gradiometers are provided which include first-order gradient pickup coils with the baselines formed by the coils of second gradiometers being shorter than those of first gradiometers. The apparatus cancels noise, from detected biomagnetic signal waveforms, caused by variant noise cancellation rates of the coils of first gradiometers, different baselines of the coils of second gradiometers, and the frequency property of a magnetically shielded room in which the apparatus is installed.
    • 用于精确地消除环境噪声的磁场测量装置包括多个用于检测噪声和生物磁场的第一SQUID梯度计,用于检测噪声的多个第二SQUID梯度计,用于驱动这些梯度计的驱动电路以及计算机执行信号处理 收集这些梯度仪检测到的信号后。 提供了第一和第二SQUID梯度计,其包括一级梯度拾取线圈,其中由第二梯度仪的线圈形成的基线比第一梯度计的线圈短。 该装置从由第一梯度仪的线圈的不同噪声消除率,第二梯度仪的线圈的不同基线以及安装该装置的磁屏蔽室的频率特性引起的检测到的生物磁信号波形中消除噪声。
    • 10. 发明授权
    • Physiological magnetic field measuring instrument for measuring magnetic field at plural positions of living body
    • 生物磁场测量仪,用于测量活体多个位置的磁场
    • US06609019B1
    • 2003-08-19
    • US09493798
    • 2000-01-28
    • Kenji TeshigawaraHiroyuki SuzukiKeiji TsukadaKazuhisa MachidaAkihiko KandoriTsuyoshi MiyashitaHitoshi Sasabuchi
    • Kenji TeshigawaraHiroyuki SuzukiKeiji TsukadaKazuhisa MachidaAkihiko KandoriTsuyoshi MiyashitaHitoshi Sasabuchi
    • A61B505
    • A61B5/04007A61B5/0402A61B5/742
    • The present invention, in the physiological magnetic field measuring instrument, recognizes characteristic waveforms (for example, heart beats) repeatedly appearing by physiological activity from measured signal waveforms, registers one of measured heart beats as a reference waveform, evaluates the difference degree of each measured heart beat data from the reference waveform, and executes the averaging process using only waveforms whose difference degrees are less than the allowable value. The present invention registers waveforms whose difference degrees are more than the allowable value as abnormal data and puts them into the display enabled state. Discrimination information is as signed to measurement conditions necessary for measuring the physiological magnetic field and data analysis conditions and when the discrimination information is designated for measurement, the measurement conditions and analysis conditions can be read. By doing this, the physiological magnetic field measuring instrument independently selects good or defective data automatically, and a reliable automatic averaging process can be obtained, and the data processing and operation can be simplified.
    • 本发明在生理磁场测量仪器中,从测量信号波形中识别由生理活动重复出现的特征波形(例如,心跳),将测量的心跳中的一个记录为参考波形,评估每个测量的差异程度 从参考波形心跳数据,并且仅使用差值小于允许值的波形执行平均处理。 本发明将差异度大于容许值的波形记录为异常数据,并将其置于显示使能状态。 鉴别信息符合测量生理磁场和数据分析条件所需的测量条件,并且当识别信息被指定用于测量时,可以读取测量条件和分析条件。 通过这样做,生理磁场测量仪器自动选择好的或有缺陷的数据,可以获得可靠的自动平均过程,可以简化数据处理和操作。