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    • 1. 发明申请
    • APPARATUS FOR EVALUATING VASCULAR ENDOTHELIAL FUNCTION
    • 评估血管内皮功能的装置
    • US20110066048A1
    • 2011-03-17
    • US12878374
    • 2010-09-09
    • Toshio TSUJIMasao YOSHIZUMIYukihito HIGASHIMasashi KAWAMOTOHideo OZAWATeiji UKAWATsuneo TAKAYANAGI
    • Toshio TSUJIMasao YOSHIZUMIYukihito HIGASHIMasashi KAWAMOTOHideo OZAWATeiji UKAWATsuneo TAKAYANAGI
    • A61B5/022
    • A61B5/02A61B5/02007
    • An apparatus for evaluating a vascular endothelial function, includes: a first cuff, to be wound around a first body part of a subject; a second cuff, to be wound around a second body part of the subject; a cuff pressure controller, configured to control a cuff pressure of each of the first and second cuffs, and configured to perform continuous pressure stimulation on the first body part of the subject for a time period by using the first cuff; a cuff pressure detector, configured to detect the cuff pressure of the second cuff from an output of a pressure sensor connected to the second cuff; a pulse wave detector, configured to detect, from the output of the pressure sensor, pulse waves before and after the continuous pressure stimulation is performed; and an analyzer, configured to evaluate the vascular endothelial function by comparing the pulse waves detected before and after the continuous pressure stimulation is performed.
    • 一种用于评估血管内皮功能的装置,包括:围绕受试者的第一身体部位缠绕的第一箍; 要缠绕在受试者的第二身体部位的第二个袖带; 袖带压力控制器,被配置为控制所述第一和第二袖带中的每一个的袖带压力,并且被配置为通过使用所述第一袖口对所述对象的所述第一身体部分持续一段时间的持续压力刺激; 袖带压力检测器,被配置为从连接到所述第二袖带的压力传感器的输出检测所述第二袖带的袖带压力; 脉波检测器,被配置为从所述压力传感器的输出检测在进行连续压力刺激之前和之后的脉搏波; 以及分析器,其被配置为通过比较在执行连续压力刺激之前和之后检测到的脉搏波来评估血管内皮功能。
    • 7. 发明申请
    • CARDIOPULMONARY RESUSCITATION MONITORING APPARATUS
    • 心脏电磁监护仪
    • US20120232365A1
    • 2012-09-13
    • US13416318
    • 2012-03-09
    • Teiji UKAWA
    • Teiji UKAWA
    • A61B5/1455
    • A61B5/14551A61B5/0261A61B5/4848A61H31/005A61H31/007A61H2201/5007A61H2201/5043A61H2201/5071A61H2230/208A61H2230/255
    • A cardiopulmonary resuscitation monitoring apparatus includes: a light source section configured to cause light, which includes at least infrared light, to be incident on a living body; a light receiving unit configured to receive at least one of transmitted light that is transmitted through the living body and reflected light that is reflected from the living body; a calculating unit, based on DC components of received light intensities of the received light, configured to calculate a ratio of the DC components of the received light intensities of the received light during execution of cardiopulmonary resuscitation; an evaluating unit configured to perform evaluation related to the cardiopulmonary resuscitation based on the ratio calculated by the calculating unit; and an outputting unit configured to perform an output in accordance with a result of the evaluation performed by the evaluating unit.
    • 心肺复苏监测装置包括:光源部,被配置为使至少包含红外光的光入射到生物体上; 光接收单元,被配置为接收透过所述活体的透射光和从所述生物体反射的反射光中的至少一种; 计算单元,基于所接收的光的接收光强度的DC分量,被配置为计算在心肺复苏的执行期间所接收的光的接收光强度的直流分量的比率; 评估单元,被配置为基于由所述计算单元计算的比率来执行与所述心肺复苏有关的评估; 以及输出单元,被配置为根据评估单元执行的评估结果执行输出。
    • 8. 发明申请
    • BIOLOGICAL INFORMATION MONITOR
    • 生物信息监测
    • US20110054328A1
    • 2011-03-03
    • US12872099
    • 2010-08-31
    • Mitsushi HYOGOTeiji UKAWAYoshihiro SUGOHiroko HAGIWARA
    • Mitsushi HYOGOTeiji UKAWAYoshihiro SUGOHiroko HAGIWARA
    • A61B5/021
    • A61B5/0225A61B5/02125A61B5/02225
    • A biological information monitor includes: a first measuring unit which measures a pulse wave propagation time of a patient; a second measuring unit which measures a blood pressure of the patient; a calculating unit which calculates an estimated blood pressure value of the patient based on the pulse wave propagation time of the patient; a setting unit which sets a threshold; and a determining unit which compares the estimated blood pressure value with the threshold. The second measuring unit is activated to measure the blood pressure of the patient at least one of at time intervals and at a time when an operator operates the second measuring unit, and the second measuring unit is activated to measure the blood pressure of the patient by the determining unit based on the comparison result.
    • 生物信息监视器包括:测量患者的脉搏波传播时间的第一测量单元; 测量患者的血压的第二测量单元; 计算单元,其基于患者的脉搏波传播时间计算患者的估计血压值; 设定单元,设定阈值; 以及确定单元,其将估计的血压值与阈值进行比较。 第二测量单元被激活以在时间间隔和操作者操作第二测量单元时的时间间隔中的至少一个被测量患者的血压,并且第二测量单元被激活以通过以下步骤来测量患者的血压 所述确定单元基于所述比较结果。
    • 9. 发明申请
    • PULSE OXIMETRY AND PULSE OXIMETER
    • 脉冲氧化和脉冲氧化
    • US20090318787A1
    • 2009-12-24
    • US12486843
    • 2009-06-18
    • Takuo AOYAGIMichio KANEMOTOMasayoshi FUSETeiji UKAWA
    • Takuo AOYAGIMichio KANEMOTOMasayoshi FUSETeiji UKAWA
    • A61B5/1455
    • A61B5/7207A61B5/1455
    • A pulse oximetry includes: irradiating living tissue with a plurality of light beams of different wavelengths; receiving the light beams transmitted through or reflected from the living tissue and converting the received light beams to electric signals which correspond to the different wavelengths; time-segmenting time series data of the electric signals; calculating, with respect to each of the segmented time series data of the electric signals, a slope value of a regression line between each two of the electric signals; calculating SaO2 based on the slope value of each of the segmented time series data of the electric signals; constructing a histogram of SaO2 for each predetermined number of time segments; and obtaining a mode value from the histogram as SpO2 to be output of the pulse oximetry.
    • 脉搏血氧测定法包括:用多个不同波长的光束照射生物体组织; 接收通过生物体组织传播或反射的光束,并将接收的光束转换成对应于不同波长的电信号; 时间分段电信号的时间序列数据; 针对电信号的每个分段时间序列数据计算每个两个电信号之间的回归线的斜率值; 根据电信号分段时间序列数据的斜率值计算SaO2; 为每个预定数量的时间段构建SaO2的直方图; 并且从直方图获得作为脉搏血氧饱和度的SpO2的模式值。
    • 10. 发明申请
    • PROBE ADAPTED TO MEASURE BIOLOGICAL SIGNAL
    • 探头适应生物信号测量
    • US20090018452A1
    • 2009-01-15
    • US12059719
    • 2008-03-31
    • Keiichi SUGIURAToru MAEDATeiji UKAWAShinji YAMAMORI
    • Keiichi SUGIURAToru MAEDATeiji UKAWAShinji YAMAMORI
    • A61B6/00
    • A61B5/02433
    • A probe is adapted to emit light having at least one wavelength as irradiation light with respect to a measured portion on a biological body in order to measure a biological signal. A light emitting element is configured to emit the light having the at least one wavelength. A light guiding member is provided with: a first end face, being light-reflective and having a first part opposing the light emitting element and a second part surrounding the first part; a second end face, being light-reflective and intersecting the first end face; and a third end face, being light-permeable, opposing the first end face and intersecting the second end face. The light guiding member is configured such that at least part of the light emitted from the light emitting element is reflected by at least one of the first end face and the second end face, and emitted from the third end face as the irradiation light. A light receiving element is configured to receive light reflected by the measured portion. A section shape of the first end face in a direction along an optical axis of the light emitting element is such a shape that at least the second part is coincident with a circumference of an ellipse intersecting a minor axis of the ellipse, and the optical axis of the light emitting element is coincident with the minor axis of the ellipse.
    • 探针适于发射相对于生物体上的被测量部分具有至少一个波长的光作为照射光,以测量生物信号。 发光元件被配置为发射具有至少一个波长的光。 导光构件设置有:第一端面,其是光反射的并且具有与发光元件相对的第一部分和围绕第一部分的第二部分; 第二端面,其是反光的并与第一端面相交; 以及第三端面,其是可透光的,与所述第一端面相对并与所述第二端面相交。 导光构件被配置为使得从发光元件发射的光的至少一部分被第一端面和第二端面中的至少一个反射,并且作为照射光从第三端面发射。 光接收元件被配置为接收被测量部分反射的光。 沿着发光元件的光轴的方向的第一端面的截面形状是这样的形状:至少第二部分与椭圆相交的椭圆的圆周重合,并且光轴 的发光元件与椭圆的短轴重合。