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    • 5. 发明申请
    • Pulse oximeter
    • 脉搏血氧仪
    • US20050049469A1
    • 2005-03-03
    • US10927016
    • 2004-08-27
    • Takuo AoyagiMasayoshi FuseNaoki KobayashiTeiji Ukawa
    • Takuo AoyagiMasayoshi FuseNaoki KobayashiTeiji Ukawa
    • A61B5/00
    • A61B5/14551
    • In a pulse oximeter for obtaining an oxygen saturation in a blood, a light emitter irradiates a living tissue with light beams having five different wavelengths. A light receiver receives respective light beams reflected from or transmitted through the living tissue, and converts the received light beams to electric signals. A first calculator calculates five attenuation changes of the living tissue based on fluctuations of the respective electric signals. A second calculator calculates at least four attenuation change ratios from the five attenuation changes. Each of the attenuation change ratios is defined by a ratio between any two of the five attenuation changes. A third calculator calculates the oxygen saturation based on the attenuation change ratios, while taking an oxygen saturation of arterial blood, an oxygen saturation of venous blood, a ratio between changes in arterial blood and venous blood, and a tissue term as four unknown values.
    • 在用于获得血液中的氧饱和度的脉搏血氧计中,发光体用具有五个不同波长的光束照射活体组织。 光接收器接收从生物体组织反射或透过的各种光束,并将接收到的光束转换为电信号。 第一计算器基于相应的电信号的波动来计算活体组织的五个衰减变化。 第二计算器根据五个衰减变化计算出至少四个衰减变化率。 每个衰减变化率由五个衰减变化中的任何两个之间的比率定义。 第三计算器基于衰减变化率计算氧饱和度,同时采取动脉血的氧饱和度,静脉血的氧饱和度,动脉血和静脉血的变化之间的比率以及组织术语作为四个未知值。
    • 6. 发明授权
    • Time-segmented pulse oximetry and pulse oximeter performing the same
    • 时间分段脉搏血氧仪和脉搏血氧仪进行相同操作
    • US08024021B2
    • 2011-09-20
    • US11511476
    • 2006-08-29
    • Takuo AoyagiMasayoshi FuseNaoki Kobayashi
    • Takuo AoyagiMasayoshi FuseNaoki Kobayashi
    • A61B5/1455
    • A61B5/14551A61B5/7207
    • To measure oxygen saturation in blood, living tissue is irradiated with a first light beam having a first wavelength and a second light beam having a second wavelength. A first electrical signal is generated from the first light beam reflected from or transmitted through the tissue. A second electrical signal is generated from the second light beam reflected from or transmitted through the tissue. The first electrical signal is divided into a plurality of first segments, each including a part of the first electrical signal for a predetermined time period. The second electrical signal is divided into a plurality of second segments, each including a part of the second electrical signal for the predetermined time period. A gradient of a regression line is calculated between every one of the first segments and an associated one of the second segments, thereby obtaining a plurality of gradients.
    • 为了测量血液中的氧饱和度,用具有第一波长的第一光束和具有第二波长的第二光束照射活组织。 从从组织反射或透过组织的第一光束产生第一电信号。 从从组织反射或透过组织的第二光束产生第二电信号。 第一电信号被分成多个第一段,每个第一段包括第一电信号的一部分预定时间段。 第二电信号被分成多个第二段,每个第二段包括预定时间段的第二电信号的一部分。 在第一段和第二段中的每一个之间计算回归线的梯度,从而获得多个梯度。
    • 7. 发明授权
    • Pulse oximeter
    • 脉搏血氧仪
    • US07206621B2
    • 2007-04-17
    • US10927016
    • 2004-08-27
    • Takuo AoyagiMasayoshi FuseNaoki KobayashiTeiji Ukawa
    • Takuo AoyagiMasayoshi FuseNaoki KobayashiTeiji Ukawa
    • A61B5/00
    • A61B5/14551
    • In a pulse oximeter for obtaining an oxygen saturation in a blood, a light emitter irradiates a living tissue with light beams having five different wavelengths. A light receiver receives respective light beams reflected from or transmitted through the living tissue, and converts the received light beams to electric signals. A first calculator calculates five attenuation changes of the living tissue based on fluctuations of the respective electric signals. A second calculator calculates at least four attenuation change ratios from the five attenuation changes. Each of the attenuation change ratios is defined by a ratio between any two of the five attenuation changes. A third calculator calculates the oxygen saturation based on the attenuation change ratios, while taking an oxygen saturation of arterial blood, an oxygen saturation of venous blood, a ratio between changes in arterial blood and venous blood, and a tissue term as four unknown values.
    • 在用于获得血液中的氧饱和度的脉搏血氧计中,发光体用具有五个不同波长的光束照射活体组织。 光接收器接收从生物体组织反射或透过的各种光束,并将接收到的光束转换为电信号。 第一计算器基于相应的电信号的波动来计算活体组织的五个衰减变化。 第二计算器根据五个衰减变化计算出至少四个衰减变化率。 每个衰减变化率由五个衰减变化中的任何两个之间的比率定义。 第三计算器基于衰减变化率计算氧饱和度,同时采取动脉血的氧饱和度,静脉血的氧饱和度,动脉血和静脉血的变化之间的比率以及组织术语作为四个未知值。
    • 8. 发明申请
    • Time-segmented pulse oximetry and pulse oximeter performing the same
    • 时间分段脉搏血氧仪和脉搏血氧仪进行相同操作
    • US20070049812A1
    • 2007-03-01
    • US11511476
    • 2006-08-29
    • Takuo AoyagiMasayoshi FuseNaoki Kobayashi
    • Takuo AoyagiMasayoshi FuseNaoki Kobayashi
    • A61B5/00
    • A61B5/14551A61B5/7207
    • In order to measure an oxygen saturation in blood of a subject, a living tissue of the subject is irradiated with a first light beam having a first wavelength and a second light beam having a second wavelength different from the first wavelength. A first electrical signal is generated from the first light beam reflected from or transmitted through the living tissue. A second electrical signal is generated from the second light beam reflected from or transmitted through the living tissue. The first electrical signal is divided into a plurality of first segments each of which includes a part of the first electrical signal for a predetermined time period. The second electrical signal is divided into a plurality of second segments each of which includes a part of the second electrical signal for the predetermined time period. It is calculated a gradient of a regression line between every one of the first segments and an associated one of the second segments, thereby obtaining a plurality of gradients.
    • 为了测量对象的血液中的氧饱和度,用具有第一波长的第一光束和具有不同于第一波长的第二波长的第二光束照射被检体的活体组织。 从从生物体组织反射或透过活体组织的第一光束产生第一电信号。 从通过活体组织反射或透过的第二光束产生第二电信号。 第一电信号被分成多个第一段,每个第一段在预定时间段内包括第一电信号的一部分。 第二电信号被分成多个第二段,每个第二段包括预定时间段的第二电信号的一部分。 计算出每个第一段和第二段之间的回归线的梯度,从而获得多个梯度。