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    • 1. 发明授权
    • Ultrasound diagnostic apparatus
    • 超声诊断仪
    • US06258031B1
    • 2001-07-10
    • US09594487
    • 2000-06-16
    • Kazuhiro SunagawaYoshinao TannakaHiroshi Kanai
    • Kazuhiro SunagawaYoshinao TannakaHiroshi Kanai
    • A61B800
    • G01S15/8979A61B8/488G01S15/8984
    • An ultrasound diagnostic apparatus includes a transmitting device having an ultrasound probe. The transmitting device operates for transmitting a ultrasound pulse beam from the ultrasound probe into a body. A receiving device includes the ultrasound probe. The receiving device operates for receiving an ultrasound echo beam caused in the body, and converting the received ultrasound echo beam into a corresponding electric echo signal via the ultrasound probe. A delay controlling device is operative for controlling an acoustic line direction of transmission and reception of the ultrasound pulse beam and the ultrasound echo beam. A phase detection device is operative for subjecting the electric echo signal to phase detection to generate a phase-detection result signal. A tissue velocity calculating device operates for calculating a velocity of a tissue in the body from the phase-detection result signal. A display device is operative for indicating the calculated velocity of the tissue. The delay controlling device is operative for changing the acoustic line direction of transmission and reception of the ultrasound pulse beam and the ultrasound echo beam with respect to a same object.
    • 超声波诊断装置包括具有超声波探头的发送装置。 发射装置用于将超声波脉冲束从超声波探头发射到体内。 接收装置包括超声波探头。 所述接收装置用于接收在体内引起的超声回波束,并且经由超声波探头将所接收的超声回波束转换成相应的电回波信号。 延迟控制装置用于控制超声脉冲束和超声回波束的发送和接收的声线方向。 相位检测装置用于对电回波信号进行相位检测以产生相位检测结果信号。 组织速度计算装置用于从相位检测结果信号计算体内组织的速度。 显示装置用于指示计算出的组织的速度。 该延迟控制装置用于相对于同一物体改变超声波束和超声回波束的发送和接收的声线方向。
    • 2. 发明授权
    • Ultrasonic diagnostic apparatus
    • 超声波诊断仪
    • US06770034B2
    • 2004-08-03
    • US10174979
    • 2002-06-20
    • Kazuhiro SunagawaYoshinao TannakaHiroshi Kanai
    • Kazuhiro SunagawaYoshinao TannakaHiroshi Kanai
    • A61B800
    • A61B8/0858A61B5/02007A61B8/06A61B8/13A61B8/469A61B8/488
    • The present invention provides an ultrasonic diagnostic apparatus. The ultrasonic diagnostic apparatus comprises an ultrasonic probe (1) for transmitting ultrasonic pulses into a living body and receiving ultrasonic reflected waves from the living body, a phase-detecting section (5) for detecting each phase of the ultrasonic reflected waves, and a phase-difference detecting section (6) for determining a phase difference in the repetition period of the ultrasonic transmitting/receiving operation according to the detected phase signals. The ultrasonic diagnostic apparatus further includes a data analyzing section (7) for calculating the movement velocity of the living body tissue and the blood flow velocity according to the phase difference of the ultrasonic reflected waves and tracking the movements of the living body tissue and the blood according to the movement values calculated by the velocities, and a display section (13) for displaying the tracked results and the movement value and velocity waveform of the living body tissue and the blood simultaneously through a display control section (10).
    • 本发明提供一种超声波诊断装置。 超声波诊断装置包括:超声波探头(1),用于将超声波脉冲发射到生物体中并接收来自生物体的超声波反射波;相位检测部(5),用于检测超声波反射波的各相;以及相位 - 差分检测部分(6),用于根据检测到的相位信号确定超声波发送/接收操作的重复周期中的相位差。 超声波诊断装置还包括:数据分析部(7),用于根据超声波反射波的相位差计算生物体组织的移动速度和血流速度,并跟踪活体组织和血液的运动 以及通过显示控制部(10)同时显示生物体组织和血液的跟踪结果和移动值以及速度波形的显示部(13)。
    • 3. 发明授权
    • Ultrasonic diagnostic apparatus
    • 超声波诊断仪
    • US08052602B2
    • 2011-11-08
    • US12095381
    • 2006-06-15
    • Kazuhiro SunagawaHiroshi Kanai
    • Kazuhiro SunagawaHiroshi Kanai
    • A61B8/00
    • A61B8/08A61B8/485G01S7/52042G01S7/52074G01S15/8979
    • An object of the invention is to provide an ultrasonic diagnostic apparatus that can conduct elastic modulus measurement with high accuracy without enlarging the circuit scale.A calculator 3 uses a signal from a receiver-transmitter 2 to calculate the motion velocity or the move displacement of body tissue and the strain variation of the body tissue. A frequency analyzer 4 conducts frequency analysis of the motion velocity and the move displacement of the body tissue found in the calculator 3. A strain induced by stress and elastic wave separator 5 separates a frequency component with strain of an arterial wall caused by blood pressure change caused by pulsation of the heart, a frequency component of vibration caused by flow of blood into the lumen of artery, and a frequency component of noise based on the determination result of the frequency analyzer 4. An elastic modulus calculator 6 calculates the elastic modulus of the body tissue based on the calculation result of the motion of the body tissue obtained in the calculator 3, etc.
    • 本发明的目的是提供一种能够在不扩大电路规模的情况下高精度地进行弹性模量测定的超声波诊断装置。 计算器3使用来自接收器 - 发射器2的信号来计算身体组织的运动速度或移动位移以及身体组织的应变变化。 频率分析器4对计算器3中发现的运动速度和身体组织的移动位移进行频率分析。由应力和弹性波分离器5引起的应变分离由血压变化引起的动脉壁应变的频率分量 由心脏的脉动引起的,由血液流入动脉内腔引起的振动的频率分量,以及基于频率分析仪4的判定结果的噪声的频率分量。弹性模量计算器6计算弹性模量 基于在计算器3中获得的身体组织的运动的计算结果等的身体组织
    • 4. 发明申请
    • ULTRASONIC DIAGNOSTIC APPARATUS
    • 超声诊断设备
    • US20090163805A1
    • 2009-06-25
    • US12095381
    • 2006-06-15
    • Kazuhiro SunagawaHiroshi Kanai
    • Kazuhiro SunagawaHiroshi Kanai
    • A61B8/00
    • A61B8/08A61B8/485G01S7/52042G01S7/52074G01S15/8979
    • An object of the invention is to provide an ultrasonic diagnostic apparatus that can conduct elastic modulus measurement with high accuracy without enlarging the circuit scale.A calculator 3 uses a signal from a receiver-transmitter 2 to calculate the motion velocity or the move displacement of body tissue and the strain variation of the body tissue. A frequency analyzer 4 conducts frequency analysis of the motion velocity and the move displacement of the body tissue found in the calculator 3. A strain induced by stress and elastic wave separator 5 separates a frequency component with strain of an arterial wall caused by blood pressure change caused by pulsation of the heart, a frequency component of vibration caused by flow of blood into the lumen of artery, and a frequency component of noise based on the determination result of the frequency analyzer 4. An elastic modulus calculator 6 calculates the elastic modulus of the body tissue based on the calculation result of the motion of the body tissue obtained in the calculator 3, etc.
    • 本发明的目的是提供一种能够在不扩大电路规模的情况下高精度地进行弹性模量测定的超声波诊断装置。 计算器3使用来自接收器 - 发射器2的信号来计算身体组织的运动速度或移动位移以及身体组织的应变变化。 频率分析器4对计算器3中发现的运动速度和身体组织的移动位移进行频率分析。由应力和弹性波分离器5引起的应变分离由血压变化引起的动脉壁应变的频率分量 由心脏的脉动引起的,由血液流入动脉内腔引起的振动的频率分量,以及基于频率分析仪4的判定结果的噪声的频率分量。弹性模量计算器6计算弹性模量 基于在计算器3中获得的身体组织的运动的计算结果等的身体组织
    • 5. 发明申请
    • SURFACE-TREATED PRECOATED METAL SHEET, PROCESS FOR PRODUCING SAME, AND SURFACE-TREATING SOLUTION
    • 表面处理预处理金属片,其生产方法和表面处理溶液
    • US20120040194A1
    • 2012-02-16
    • US13201868
    • 2010-02-17
    • Takao KanaiHiromasa NomuraTomonari HamamuraHiroshi KanaiHiroyuki Oyokawa
    • Takao KanaiHiromasa NomuraTomonari HamamuraHiroshi KanaiHiroyuki Oyokawa
    • B32B15/08B05D3/02B01J31/06
    • C09D183/04B01J35/004B01J37/0217B01J37/0244B05D5/08B05D2202/00C08K3/22C09D5/08C09D7/61Y10T428/31663
    • Disclosed is a surface-treated precoated metal sheet of which resistance against contamination with a photocatalyst and a self-cleaning function can be retained for a long period. Also disclosed are a method and a surface-treating solution for producing the surface-treated precoated metal sheet properly. The surface-treated precoated metal sheet is characterized by comprising a precoated metal sheet comprising an under metal sheet and an organic resin coating layer provided on the surface of the under metal sheet and a coating film having at least two layers, having a photocatalytic activity and formed on the precoated metal sheet, wherein the coating film having at least two layers comprises an inorganic-organic composite resin composed of a condensed product of an alkoxysilane selected from a group consisting of an alkoxysilane having an organic group selected from a group consisting of an alkyl group having 1 to 12 carbon atoms, an aryl group, a carboxyl group, a hydroxy group and a combination of two or more of these groups, an alkoxysilane having an epoxy group, an alkoxysilane having an amino group, a tetraalkoxysilane and a combination of two or more of the alkoxysilanes and contains a substance having a photocatalytic activity in such an amount that the content of the substance is highest in the outermost layer of the coating film and is gradually decreased toward an inner layer of the coating film.
    • 公开了一种表面处理的预涂金属片,其可以长时间保留耐光感染性和自清洁功能的污染。 还公开了适当地制造表面处理的预涂金属片的方法和表面处理溶液。 表面处理的预涂金属片的特征在于包括预涂金属片,其包含下金属片和设置在金属片下表面的有机树脂涂层和具有至少两层具有光催化活性的涂膜, 形成在预涂金属片上,其中具有至少两层的涂膜包括无机 - 有机复合树脂,该无机 - 有机复合树脂由选自以下的烷氧基硅烷的烷氧基硅烷的缩合产物构成,所述烷氧基硅烷具有选自以下的有机基团: 具有1至12个碳原子的烷基,芳基,羧基,羟基和这些基团中的两个或更多个的组合,具有环氧基的烷氧基硅烷,具有氨基的烷氧基硅烷,四烷氧基硅烷和组合 的两种或更多种烷氧基硅烷,并且含有具有光催化活性的物质,其量使得物质的含量 在涂膜的最外层中最高,并且朝向涂膜的内层逐渐减小。
    • 7. 发明申请
    • ULTRASONOGRAPH
    • US20090318806A1
    • 2009-12-24
    • US11915884
    • 2006-05-25
    • Hiroshi KanaiHideyuki HasegawaHisashi Hagiwara
    • Hiroshi KanaiHideyuki HasegawaHisashi Hagiwara
    • A61B8/14
    • A61B8/0858A61B5/02007A61B5/7221A61B5/7239A61B8/463A61B8/485G01S7/52042G01S7/5205G01S7/52077
    • An ultrasonic diagnostic apparatus according to the present invention includes: a transmitting section that generates a drive signal to drive a probe in order to transmit an ultrasonic wave toward a subject to be deformed periodically under stress; a receiving section for receiving an echo, produced when the ultrasonic wave is reflected from the subject, at the probe to generate a received echo signal; a computing section for figuring out a thickness change waveform, representing a variation in distance between two arbitrary measuring points on the subject, based on the received echo signal; and a reference waveform generating section for outputting a reference waveform. The apparatus obtains subject's internal information by comparing the thickness change waveform and the reference waveform to each other.
    • 根据本发明的超声波诊断装置包括:发送部,其产生用于驱动探头的驱动信号,以便在应力下周期性地朝向被摄体发送超声波; 接收部,其在所述探头处接收在所述超声波从所述被检体反射时产生的回波,以产生接收到的回波信号; 计算部,用于根据所接收的回波信号求出厚度变化波形,表示被检体上两个任意的测量点之间的距离的变化; 以及用于输出参考波形的参考波形生成部。 该装置通过将厚度变化波形和参考波形相互比较来获得被摄体的内部信息。
    • 8. 发明授权
    • Precoated metal sheet for light reflectors
    • 光反射器预涂金属板
    • US07393578B2
    • 2008-07-01
    • US10545619
    • 2004-02-23
    • Kohei UedaHiroshi KanaiIkuya InoueNobukatsu Komatsu
    • Kohei UedaHiroshi KanaiIkuya InoueNobukatsu Komatsu
    • B32B15/08B32B15/18B32B27/20
    • G02B5/021B05D5/083B05D7/16B05D7/52F21V7/22G02B5/0242G02B5/0284G02B5/08Y10T428/24355Y10T428/24975Y10T428/3154Y10T428/31678
    • The present invention provides a precoated metal sheet, for light reflectors, having a high diffuse reflectance of visible light, and also provides the electric or electronic apparatus using it. The precoated metal sheet comprises a metal sheet or plated metal sheet, a visible light reflective undercoat having a thickness of 3 to 30 micrometers provided on at least one surface of the metal sheet or plated metal sheet, and a visible light reflective overcoat having a thickness of 10 to 40 micrometers provided on the visible light reflective undercoat. The visible light reflective undercoat comprises a binder resin and a titanium oxide, a content of the titanium oxide in the visible light reflective undercoat being 40 to 150 parts by weight based on 100 parts by weight of a solid content of the binder resin, and the visible light reflective overcoat comprises a fluororesin-containing binder resin and a titanium oxide, a content of the titanium oxide in the visible light reflective overcoat being 40 to 150 parts by weight based on 100 parts by weight of a solid content of the binder resin.
    • 本发明提供了一种用于光反射器的具有高可见光漫反射率的预涂金属片,并且还提供了使用它的电子或电子设备。 预涂金属片包括金属片或电镀金属片,设置在金属片或电镀金属片的至少一个表面上的厚度为3至30微米的可见光反射底涂层和具有厚度的可见光反射外涂层 设置在可见光反射底涂层上的10至40微米。 可见光反射底涂层包含粘合剂树脂和氧化钛,基于100重量份的粘合剂树脂的固体含量,可见光反射底涂层中的氧化钛的含量为40〜150重量份, 可见光反射外涂层包含含氟树脂的粘合剂树脂和氧化钛,基于100重量份的粘合剂树脂的固体含量,可见光反射外涂层中的氧化钛的含量为40〜150重量份。