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    • 1. 发明授权
    • Ultrasonic diagnostic apparatus
    • 超声波诊断仪
    • US09119556B2
    • 2015-09-01
    • US13037538
    • 2011-03-01
    • Masahiko NakataEiji KasaharaMasaru MurashitaYasuhiro Ito
    • Masahiko NakataEiji KasaharaMasaru MurashitaYasuhiro Ito
    • A61B8/00A61B8/08G01S7/52
    • A61B8/08A61B8/0866A61B8/0883G01S7/52074
    • An ultrasonic diagnostic apparatus which can measure a time difference of motion between a plurality of sites of a cardiac muscle for the heart of a fetus is provided. On a tomographic image of the heart, a user sets a plurality of observation points. Each observation point is tracked, and a plurality of displacement waveforms representing a temporal displacement of the plurality of observation points are generated. A time difference between a plurality of representative points is calculated between the plurality of displacement waveforms. Such a time difference is displayed as a numerical value or as a graph. The representative point is a peak point, a zero-cross point, an inflection point, or the like. The plurality of observation points are set along conduction pathways in the heart for the electric signal.
    • 提供一种超声波诊断装置,其可以测量胎儿心脏的心肌的多个部位之间的运动时间差。 在心脏的断层图像上,用户设定多个观察点。 跟踪每个观察点,并且生成表示多个观察点的时间位移的多个位移波形。 在多个位移波形之间计算多个代表点之间的时间差。 这样的时间差被显示为数值或图形。 代表点是峰值点,零交叉点,拐点等。 多个观察点沿着电信号的心脏中的传导路径设置。
    • 2. 发明申请
    • ULTRASONIC DIAGNOSTIC APPARATUS
    • 超声诊断设备
    • US20110213249A1
    • 2011-09-01
    • US13037538
    • 2011-03-01
    • Masahiko NakataEiji KasaharaMasaru MurashitaYasuhiro Ito
    • Masahiko NakataEiji KasaharaMasaru MurashitaYasuhiro Ito
    • A61B8/14
    • A61B8/08A61B8/0866A61B8/0883G01S7/52074
    • An ultrasonic diagnostic apparatus which can measure a time difference of motion between a plurality of sites of a cardiac muscle for the heart of a fetus is provided. On a tomographic image of the heart, a user sets a plurality of observation points. Each observation point is tracked, and a plurality of displacement waveforms representing a temporal displacement of the plurality of observation points are generated. A time difference between a plurality of representative points is calculated between the plurality of displacement waveforms. Such a time difference is displayed as a numerical value or as a graph. The representative point is a peak point, a zero-cross point, an inflection point, or the like. The plurality of observation points are set along conduction pathways in the heart for the electric signal.
    • 提供一种超声波诊断装置,其可以测量胎儿心脏的心肌的多个部位之间的运动时间差。 在心脏的断层图像上,用户设定多个观察点。 跟踪每个观察点,并且生成表示多个观察点的时间位移的多个位移波形。 在多个位移波形之间计算多个代表点之间的时间差。 这样的时间差被显示为数值或图形。 代表点是峰值点,零交叉点,拐点等。 多个观察点沿着电信号的心脏中的传导路径设置。
    • 5. 发明申请
    • DIAGNOSTIC ULTRASOUND APPARATUS
    • 诊断超声仪
    • US20150032001A1
    • 2015-01-29
    • US14373851
    • 2013-02-26
    • Masahiko NakataHITACHI ALOKA MEDICAL, LTD.
    • Masahiko NakataEiji KasaharaMasaru Murashita
    • A61B8/08A61B8/14A61B8/00A61B8/02
    • A61B8/0866A61B8/02A61B8/0883A61B8/14A61B8/463A61B8/469A61B8/5223G06T7/248G06T2207/10136G06T2207/30044G06T2207/30048
    • In tomographic image data, a reference region-setting unit (30) sets a body reference region for the body of a fetus and sets a cardiac reference region for the heart of the fetus. A body shift analysis unit (50) analyzes the movement of the fetus' body in the tomographic image data using the body reference region and obtains body shift information. A cardiac motion analysis unit (60) analyzes the movement of the fetus' heart in the tomographic image data using the cardiac reference region and obtains cardiac motion information. Once body shift information and cardiac motion information are obtained in this manner, a pulse information-processing unit (70) obtains fetal pulse information on the basis of the cardiac motion information from which the body shift information has been subtracted. The pulse information obtained by the pulse information-processing unit (70) is displayed on the display unit (80).
    • 在断层图像数据中,参考区域设定单元(30)设定胎儿体的身体参照区域,并设定胎儿心脏的心脏参考区域。 身体移动分析单元(50)使用身体参考区域分析在断层图像数据中的胎儿身体的移动,并获得体移信息。 心脏运动分析单元(60)使用心脏参考区域在断层图像数据中分析胎儿心脏的运动并获得心脏运动信息。 一旦以这种方式获得身体移动信息和心脏运动信息,脉冲信息处理单元(70)根据减去身体移位信息的心脏运动信息获得胎儿脉搏信息。 在显示单元(80)上显示由脉冲信息处理单元(70)获得的脉冲信息。