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    • 2. 发明授权
    • Ultrasonic pulse temperature determination method and apparatus
    • 超声脉冲温度测定方法及装置
    • US4754760A
    • 1988-07-05
    • US31372
    • 1987-03-30
    • Hiroshi FukukitaShinichirou Ueno
    • Hiroshi FukukitaShinichirou Ueno
    • G01K11/22A61B5/01A61B8/00G01H5/00G01S7/52G01S7/527A61B10/00G01N29/00
    • G01S7/527A61B5/01A61B8/5223G01H5/00G01S7/52036
    • A first ultrasonic pulse formed by the superposition of a probe pulse on a pump pulse having a frequency lower than the center frequency of the ultrasonic probe pulse where the particle velocity of the pump pulse is in the vicinity of zero in addition to which the particle acceleration of which is at a constant portion, and a second pulse formed by the superposition of the probe pulse center frequency on the peak particle velocity portion of the pump pulse, as well as a probe pulse alone, are transmitted into a specimen before and after it is heated and the reflections of the transmitted signals from two or more reflecting points that are at different depths in the specimen are received. The received signals are subjected to frequency analysis and the spectral shift and the phase shift of the probe pulse and superposed pulses are obtained, and from these values the attenuation of the probe pulse between the differing depths is determined. Such an attenuation determination is obtained before and after heating of the specimen and the change in temperature of the specimen is determined from the obtained attenuation values on the basis of a pre-prepared table of changes in attenuation factor in accordance with changes in the temperature of the specimen.
    • 第一超声波脉冲是通过将探针脉冲叠加在具有低于泵浦脉冲的粒子速度在零附近的超声波探针脉冲的中心频率的泵脉冲上而形成的,除此之外,粒子加速度 并且通过将泵脉冲的峰值粒子速度部分上的探针脉冲中心频率叠加形成的第二脉冲以及单独的探针脉冲在其前后被传送到样品中 被加热,并且接收来自样品中不同深度的两个或多个反射点的透射信号的反射。 对接收的信号进行频率分析,并且获得探测脉冲和叠加脉冲的光谱偏移和相移,并且从这些值确定不同深度之间的探针脉冲的衰减。 在样本加热之前和之后获得这样的衰减确定,并根据所获得的衰减值根据预先准备的衰减因子变化表根据温度变化确定样品的温度变化 标本。
    • 3. 发明授权
    • Ultrasonic tomographic with alternate image scaling
    • 具有交替图像缩放的超声断层扫描
    • US4787393A
    • 1988-11-29
    • US932828
    • 1986-11-20
    • Hiroshi FukukitaShinichiro UenoTsutomu Yano
    • Hiroshi FukukitaShinichiro UenoTsutomu Yano
    • A61B8/14G01S7/52A61B10/00
    • G01S7/52074A61B8/14
    • An ultrasonic tomographic diagnosis apparatus suitable for skin disease displays a first ultrasonic tomographic image (12) of an object of a fairly broad area, wherein sizes in depthwise direction (X in FIG. 1) displayed in an enlarged scale in relation to sizes in a direction (Y in FIG. 1) on the skin surface, and further a second ultrasonic tomographic image (13) of an object wherein sizes in depthwise direction and sizes in the direction on the skin surface are displayed in substantially proportional to actual size relations, for a selected part marked by a marker (14) on the first tomographic image (12).While specific embodiments of the invention have been illustrated and described herein, it is realized that modifications and changes will occur to those skilled in the art. It is therefore to be understood that the appended claims are intended to cover all modifications and changes as fall within the true spirit and scope of the invention.
    • 适用于皮肤病的超声波断层摄影诊断装置显示相当宽的区域的物体的第一超声波断层摄影图像(12),其中在深度方向(图1中的X)中的尺寸相对于 方向(图1中的Y),以及进一步的物体的第二超声波断层图像(13),其中以与实际尺寸关系基本成比例的方式显示在皮肤表面上的方向上的深度方向和尺寸的尺寸, 对于由所述第一断层图像(12)上的标记(14)标记的选定部分。 尽管在本文中已经说明和描述了本发明的具体实施例,但是认识到本领域技术人员将想到修改和改变。 因此,应当理解,所附权利要求旨在覆盖落入本发明的真实精神和范围内的所有修改和变化。
    • 8. 发明授权
    • Ultrasonic imaging system using plural square wave pulse trains of
successively delayed intervals
    • 超声波成像系统采用多个方波脉冲序列连续延时
    • US4348902A
    • 1982-09-14
    • US206827
    • 1980-11-14
    • Ryobun TachitaYoshihiro HayakawaKazuyoshi IriokaHiroshi FukukitaTsutomu YanoAkira Fukumoto
    • Ryobun TachitaYoshihiro HayakawaKazuyoshi IriokaHiroshi FukukitaTsutomu YanoAkira Fukumoto
    • A61B8/00A61B8/14G01S7/52G01N29/00
    • G01S7/52063
    • A sector scan ultrasonic imaging system comprises a source of a plurality of square wave pulse trains each being delayed by a unit quantization time with respect to adjacent trains, and a plurality of transmitter circuits corresponding to the elements of a transducer array. The duration of each square wave pulse is an integral multiple of the unit quantization time interval. Each transmitter circuit includes a read only memory in which a set of different digital delay time data is stored for the corresponding transducer element and is arranged to be retrieved in response to each angle increment of the ultrasonic beam transmitted from the array. Further included are a data selector for selecting a pulse train in response to a pulse train selection data retrieved from the memory and a programmable counter for counting the pulses of the selected train to generate an output in accordance with a pulse selection data retrieved from the memory. An Exclusive-OR gate is further included to provide bit inversion of the selected pulse train in selective response to the binary state of a data retrieved from the memory so that the number of available square wave pulse trains is doubled. A gating circuit responds to the output of the counter by gating a pulse of the selected pulse train to the corresponding transducer element.
    • 扇区扫描超声成像系统包括多个方波脉冲串的源,每个方波延迟相对于相邻列的单位量化时间,以及对应于换能器阵列的元件的多个发射器电路。 每个方波脉冲的持续时间是单位量化时间间隔的整数倍。 每个发射机电路包括只读存储器,其中针对相应的换能器元件存储一组不同的数字延迟时间数据,并且被布置为响应于从阵列发射的超声波束的每个角度增量而被检索。 还包括一个数据选择器,用于响应于从存储器检索的脉冲序列选择数据选择一个脉冲序列,以及一个可编程计数器,用于根据从存储器检索的脉冲选择数据计算所选择的列车的脉冲以产生一个输出 。 进一步包括异或门以提供选择性响应于从存储器检索的数据的二进制状态的所选脉冲序列的位反转,使​​得可用的矩形波脉冲序列的数量加倍。 门控电路通过将所选择的脉冲串的脉冲门控到相应的换能器元件来响应计数器的输出。