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    • 11. 发明申请
    • ULTRASONSOGRAPHIC DEVICE
    • 超声波设备
    • US20100121193A1
    • 2010-05-13
    • US12594665
    • 2008-04-22
    • Hiroshi FukukitaTakenori Fukumoto
    • Hiroshi FukukitaTakenori Fukumoto
    • A61B8/14
    • A61B8/00A61B5/0456A61B8/543
    • A technique for providing an ultrasonographic device which can transmit and receive a signal by using a complementary code is provided. According to the technique, an output of a coded waveform generation unit 3 is supplied to a transmission unit 2 which drives a prove 1 in accordance with an output of a complementary code generator 4, and an output of a reception amplification unit 6 is inputted to velocity detection means 8, and an output of the velocity detection means 8 is inputted to the complementary code generator 4, and a correlator 7 performs a correlation calculation between the output of the complementary code generator 4 and the output of the reception amplification unit 6, and a memory 9 stores the output of the correlator 7, and addition means 13 adds the outputs of the correlator 7 and the memory 9.
    • 提供了一种用于提供可以通过使用互补码来发送和接收信号的超声波装置的技术。 根据该技术,编码波形生成单元3的输出被提供给根据互补码发生器4的输出驱动证明1的发送单元2,并且接收放大单元6的输出被输入到 速度检测装置8,并且速度检测装置8的输出被输入到互补码发生器4,相关器7在互补码发生器4的输出和接收放大单元6的输出之间进行相关计算, 并且存储器9存储相关器7的输出,加法装置13将相关器7和存储器9的输出相加。
    • 12. 发明申请
    • ULTRASOUND DIAGNOSTIC APPARATUS
    • 超声诊断装置
    • US20110096958A1
    • 2011-04-28
    • US12999357
    • 2009-06-26
    • Takenori Fukumoto
    • Takenori Fukumoto
    • G06K9/00
    • A61B8/08A61B5/0048A61B5/02007A61B5/021A61B5/0456A61B8/543G01S7/52036G01S7/52087
    • The ultrasonic diagnostic apparatus of this invention includes: a transmitting section 102 for generating first, second and third drive signals to drive a probe that sends ultrasonic waves to a subject; a receiving section 103 for getting echoes, produced by reflection of the ultrasonic waves from the subject responsive to those drive signals, received by the probe and amplifying signals generated with first, second and third gains, thereby generating first, second and third received echo signals; a storage section 110 to store the first received echo signal; an adjusting section 111 for defining intense and faint echo regions within a measuring range on the acoustic line of the first received echo signal based on a feature quantity of the first received echo signal stored in the storage section and for determining the second and third gains based on the feature quantities of the first received echo signal in the intense and faint echo regions; a displacement measuring section 112 for measuring the magnitudes of displacement in the intense and faint echo regions based on the second and third received echo signals; and a qualitative value calculating section 105 for calculating the attribute property value of the subject within the measuring range based on the magnitudes of displacement in the intense and faint echo regions.
    • 本发明的超声波诊断装置包括:发送部102,用于产生第一,第二和第三驱动信号,以驱动向对象发送超声波的探针; 接收部分103,用于通过由探头接收的响应于那些驱动信号的来自对象的超声波的反射而产生的回波,以及放大由第一,第二和第三增益产生的信号,从而产生第一,第二和第三接收的回波信号 ; 存储部分110,用于存储第一接收的回波信号; 调整部分111,用于基于存储在存储部分中的第一接收到的回波信号的特征量,在第一接收到的回波信号的声学线上的测量范围内定义强烈和微弱的回波区域,并且用于基于第二和第三增益来确定 关于强烈和微弱回波区域中的第一接收回波信号的特征量; 位移测量部分112,用于基于第二和第三接收到的回波信号来测量强和微弱回波区域中的位移大小; 以及定性值计算部105,用于基于强弱回波区域中的位移大小计算测量范围内的被摄体的属性属性值。
    • 13. 发明申请
    • SKIN CONDUCTION MEASURING APPARATUS
    • 皮肤导电测量装置
    • US20090312666A1
    • 2009-12-17
    • US12307807
    • 2007-07-09
    • Takenori FukumotoHisashi Akiyama
    • Takenori FukumotoHisashi Akiyama
    • A61B5/053
    • A61B5/0532A61B2562/0215A61H39/02A61H2230/65
    • In this skin conduction measuring apparatus, bipolar pulse currents generated by current generator sections 11a to 11i are applied to plural measurement points of a skin 30 of a subject through nonpolarizable electrodes 3a to 3i. The conducted currents and voltages generated by the conduction are measured by a measuring section 6. A feature quantity that characterizes current conductivity at each of the measurement points is extracted by a feature quantity extracting section 7 and then the result is displayed by a display section 8. An index extracted in the feature quantity extracting section 7 is calculated based on electrical equivalent circuit parameters Rp, Cp, and Rs of the skin 30. Quantitative measurement results with sufficient reliability and reproducibility can be obtained.
    • 在该皮肤导电测定装置中,由电流发生部11a〜11i产生的双极脉冲电流通过非极化电极3a〜3i施加于被检体的皮肤30的多个测定点。 通过测量部分6测量由导通产生的传导电流和电压。通过特征量提取部分7提取表征每个测量点处的电流导电性的特征量,然后由显示部分8显示结果 根据皮肤30的电等效电路参数Rp,Cp,Rs计算在特征量提取部7中提取的索引。可以获得具有足够的可靠性和再现性的定量测量结果。
    • 15. 发明授权
    • Ultrasound diagnostic apparatus
    • 超声诊断仪
    • US08550999B2
    • 2013-10-08
    • US12999357
    • 2009-06-26
    • Takenori Fukumoto
    • Takenori Fukumoto
    • A61B8/00
    • A61B8/08A61B5/0048A61B5/02007A61B5/021A61B5/0456A61B8/543G01S7/52036G01S7/52087
    • An ultrasonic diagnostic apparatus includes: a transmitting section for generating first, second and third drive signals to drive an ultrasonic probe; a receiving section for getting echoes, produced by reflection of the ultrasonic waves responsive to those drive signals and generating first, second and third received echo signals; a storage section to store the first received echo signal; an adjusting section for defining intense and faint echo regions within a measuring range for the first received echo signal based on a stored feature quantity and for determining the second and third gains based on the feature quantities in the intense and faint echo regions; a displacement measuring section for measuring the magnitudes of displacement in the echo regions based on the second and third received echo signals; and a qualitative value calculating section for calculating the attribute property value of the subject based on the magnitudes of displacement.
    • 超声波诊断装置包括:发送部,用于产生驱动超声波探头的第一,第二和第三驱动信号; 接收部分,用于通过响应于那些驱动信号的超声波的反射而产生回波,并产生第一,第二和第三接收到的回波信号; 存储部分,用于存储第一接收的回波信号; 调整部分,用于基于所存储的特征量来定义所述第一接收到的回波信号的测量范围内的强烈和微弱的回波区域,以及基于所述强弱回波区域中的特征量来确定所述第二和第三增益; 位移测量部分,用于基于第二和第三接收到的回波信号来测量回波区域中的位移幅度; 以及定性值计算部分,用于基于位移的大小计算对象的属性属性值。
    • 16. 发明授权
    • Acupuncture point position evaluating apparatus
    • 针灸点位置评估仪
    • US07818054B2
    • 2010-10-19
    • US11911464
    • 2006-04-13
    • Takenori FukumotoHisashi Akiyama
    • Takenori FukumotoHisashi Akiyama
    • A61H39/02A61B5/05A61B5/04
    • A61H39/02A61B5/05A61B5/0532A61H39/08
    • An acupuncture point position evaluating apparatus in which a current generated in a current generating section is applied to measurement points of skin of a subject through current application electrodes. The applied current and a voltage generated in the skin by the current application are measured in a measuring section. In a frequency analyzing section, the measured current and the measured voltage are provided with frequency analysis, and skin impedance Z(jf) in the respective measurement points is calculated. In a characteristics amount generating section, based on the frequency response of the skin impedance Z(jf) in the measurement points, frequency response K(f)=XZ(f)/RZ(f) as a ratio between real part RZ(f) and imaginary part XZ(f) of the skin impedance Z(jf) are calculated. In a determining section, based on the difference of the frequency response K(f), an acupuncture point position is determined from among the respective measurement points.
    • 一种针刺点位置评价装置,其中通过电流施加电极将在电流产生部分中产生的电流施加到被检体的皮肤的测量点。 在测量部分中测量施加的电流和由当前应用在皮肤中产生的电压。 在频率分析部中,对测量电流和测量电压进行频率分析,并计算各测量点的皮肤阻抗Z(jf)。 在特征量生成部中,基于测定点的皮肤阻抗Z(jf)的频率响应,作为实际部分RZ(f)之间的比率的频率响应K(f)= XZ(f)/ RZ(f) )和皮肤阻抗Z(jf)的虚部XZ(f)。 在确定部分中,基于频率响应K(f)的差异,从各个测量点中确定针刺点位置。
    • 17. 发明授权
    • Ultrasonograph
    • 超声波检查
    • US08465426B2
    • 2013-06-18
    • US12438021
    • 2007-08-15
    • Hiroshi KanaiHideyuki HasegawaTakenori Fukumoto
    • Hiroshi KanaiHideyuki HasegawaTakenori Fukumoto
    • A61B8/00A61B8/13
    • A61B8/08
    • An ultrasonic diagnostic apparatus according to the present invention includes: a transmitting section 102 that drives an ultrasonic probe to transmit an ultrasonic wave toward a measuring region of a subject including an arterial vascular wall; a receiving section 101 that receives a reflected wave, produced by getting the ultrasonic wave reflected by the subject, at the ultrasonic probe to generate a received signal; a movement information deriving section 110 for deriving information about at least the axial movement of the arterial vascular wall based on the received signal; and a boundary locating section 109 for locating at least one of the blood flow-intima boundary, the media-adventitia boundary and the adventitia-body's connective tissue boundary of the arterial vascular wall in the measuring region based on the movement information.
    • 根据本发明的超声波诊断装置包括:发射部分102,其驱动超声波探头以朝向包括动脉血管壁的对象的测量区域发射超声波; 接收部101,其接收由超声波探头获取被检体反射的超声波产生的反射波,生成接收信号; 运动信息导出部分110,用于基于所接收的信号导出至少关于动脉血管壁的轴向移动的信息; 以及用于基于运动信息来定位测量区域中的动脉血管壁的血流内膜边界,介质 - 外膜边界和外膜 - 外膜结缔组织边界中的至少一个的边界定位部分109。
    • 18. 发明申请
    • ULTRASONOGRAPH
    • US20100063391A1
    • 2010-03-11
    • US12438021
    • 2007-08-15
    • Hiroshi KanaiHideyuki HasegawaTakenori Fukumoto
    • Hiroshi KanaiHideyuki HasegawaTakenori Fukumoto
    • A61B8/08
    • A61B8/08
    • An ultrasonic diagnostic apparatus according to the present invention includes: a transmitting section 102 that drives an ultrasonic probe to transmit an ultrasonic wave toward a measuring region of a subject including an arterial vascular wall; a receiving section 101 that receives a reflected wave, produced by getting the ultrasonic wave reflected by the subject, at the ultrasonic probe to generate a received signal; a movement information deriving section 110 for deriving information about at least the axial movement of the arterial vascular wall based on the received signal; and a boundary locating section 109 for locating at least one of the blood flow-intima boundary, the media-adventitia boundary and the adventitia-body's connective tissue boundary of the arterial vascular wall in the measuring region based on the movement information.
    • 根据本发明的超声波诊断装置包括:发射部分102,其驱动超声波探头以朝向包括动脉血管壁的对象的测量区域发射超声波; 接收部101,其接收由超声波探头获取被检体反射的超声波产生的反射波,生成接收信号; 运动信息导出部分110,用于基于所接收的信号导出至少关于动脉血管壁的轴向移动的信息; 以及用于基于运动信息来定位测量区域中的动脉血管壁的血流内膜边界,介质 - 外膜边界和外膜 - 外膜结缔组织边界中的至少一个的边界定位部分109。
    • 19. 发明申请
    • ACUPUNCTURE POINT POSITION EVALUATING APPARATUS
    • 行动点位置评估装置
    • US20090036798A1
    • 2009-02-05
    • US11911464
    • 2006-04-13
    • Takenori FukumotoHisashi Akiyama
    • Takenori FukumotoHisashi Akiyama
    • A61B5/00
    • A61H39/02A61B5/05A61B5/0532A61H39/08
    • A technology for determining an acupuncture point with the reliability with the use of a simple hardware configuration in an acupuncture point position evaluating apparatus is disclosed. According to the technology, a current generated in a current generating section is applied to measurement points of skin of a subject through current application electrodes. The applied current and a voltage generated in the skin by the current application are measured in a measuring section. In a frequency analyzing section, the measured current and the measured voltage are provided with frequency analysis, and skin impedance Z(jf) in the respective measurement points is calculated. In a characteristics amount generating section, based on the frequency response of the skin impedance Z(jf) in the measurement points, frequency response K(f)=XZ(f)/RZ(f) as a ratio between real part RZ(f) and imaginary part XZ(f) of the skin impedance Z(jf) are calculated. In a determining section, based on the difference of the frequency response K(f), an acupuncture point position is determined from among the respective measurement points.
    • 公开了一种用于通过使用针刺点位置评估装置中的简单硬件配置来确定具有可靠性的针灸点的技术。 根据该技术,通过电流施加电极将电流产生部中产生的电流施加到被检体的皮肤的测定点。 在测量部分中测量施加的电流和由当前应用在皮肤中产生的电压。 在频率分析部中,对测量电流和测量电压进行频率分析,并计算各测量点的皮肤阻抗Z(jf)。 在特征量生成部中,基于测定点的皮肤阻抗Z(jf)的频率响应,作为实际部分RZ(f)之间的比率的频率响应K(f)= XZ(f)/ RZ(f) )和皮肤阻抗Z(jf)的虚部XZ(f)。 在确定部分中,基于频率响应K(f)的差异,从各个测量点中确定针刺点位置。