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    • 3. 发明授权
    • Method of sector probe driving and ultrasound diagnostic apparatus
    • 扇形探头驱动方法及超声波诊断仪
    • US07775112B2
    • 2010-08-17
    • US10862718
    • 2004-06-07
    • Shinichi Amemiya
    • Shinichi Amemiya
    • G01R33/20
    • G01S7/52049A61B8/06A61B8/08A61B8/13A61B8/4411A61B8/488B06B2201/76G10K11/341
    • The transmitter/receiver for a convex probe and linear probe are used to drive a sector probe. Usually, when an ultrasound diagnostic apparatus using a convex probe and linear probe uses a sector probe, it selects vibration elements of N in number, which is equal to the number of channels of the sector probe, out of vibration elements of L in number (N is smaller than L), so that the selected elements are distributed at a virtually constant pitch in the alignment of vibration elements, and turns on only high voltage switches which are connected with the selected vibration elements to implement the sector scanning with the transmitter/receiver. It becomes possible to implement the sector scanning by using the transmitter/receiver having channels less than the number of vibration elements of the sector probe.
    • 用于凸型探针和线性探头的发射器/接收器用于驱动扇形探针。 通常,当使用凸形探针和线性探针的超声波诊断装置使用扇形探头时,从数量L的振动元素中选出与数量相等的扇区探头的通道数N的振动元素( N小于L),使得所选择的元件在振动元件的对准中以实质上恒定的间距分布,并且仅接通与选择的振动元件连接的高电压开关,以实现与发射机/ 接收器。 可以通过使用具有小于扇区探测器的振动元素的数量的信道的发射机/接收机来实现扇区扫描。
    • 4. 发明申请
    • ULTRASONIC IMAGING APPARATUS AND ULTRASONIC IMAGING SYSTEM
    • 超声波成像设备和超声波成像系统
    • US20090292203A1
    • 2009-11-26
    • US12469529
    • 2009-05-20
    • Shinichi Amemiya
    • Shinichi Amemiya
    • A61B8/00G06F21/00
    • A61B8/56A61B8/00A61B8/565G06F19/321G16H40/20G16H40/40G16H40/63
    • An ultrasonic imaging apparatus includes a plurality of transmission/reception units each having a probe connector, a transmission/reception section, and a power supply, a plurality of display units each having an image display section and a power supply, a plurality of operation units each having an operation section and a power supply, a single control unit, and a communication means for communicably connecting said control unit to said transmission/reception units, said display units, and said operation units. The control unit has a unit control means for individually controlling said plurality of transmission/reception units, said plurality of display units, and said plurality of operation units, all of which are connected to said control unit, and a software management section for managing enable/disable of softwares for respectively controlling said plurality of display units and said plurality of operation units.
    • 超声波成像装置包括多个发送/接收单元,每个发送/接收单元均具有探针连接器,发送/接收部分和电源,多个显示单元,每个显示单元均具有图像显示部分和电源,多个操作单元 每个具有操作部分和电源,单个控制单元和用于将所述控制单元可通信地连接到所述发送/接收单元,所述显示单元和所述操作单元的通信装置。 控制单元具有单独控制装置,用于分别控制所有多个发送/接收单元,所述多个显示单元和所有多个操作单元,所有操作单元都连接到所述控制单元,以及用于管理启用的软件管理部分 /禁用用于分别控制所述多个显示单元和所述多个操作单元的软件。
    • 5. 发明申请
    • ULTRASONIC PROBE AND ULTRASONIC DIAGNOSTIC APPARATUS
    • 超声探头和超声诊断装置
    • US20090213897A1
    • 2009-08-27
    • US12163148
    • 2008-06-27
    • Shinichi Amemiya
    • Shinichi Amemiya
    • G01K11/22
    • G01S15/899A61B8/4455A61B8/546G01S7/5208
    • An ultrasonic diagnostic apparatus includes: an ultrasonic probe in which a first temperature sensor and a second temperature sensor are located posterior to an oscillator; and a surface temperature calculation device for calculating a surface temperature of the ultrasonic probe on the basis of a first detection temperature Ta detected by the first temperature sensor and a second detection temperature Tb detected by the second temperature sensor. Also, an ultrasonic diagnostic apparatus includes: an ultrasonic probe in which a first temperature sensor and a second temperature sensor are embedded in a backing material; and a surface temperature calculation device for calculating a surface temperature Ts of the ultrasonic probe on the basis of a first detection temperature Ta detected by the first temperature sensor and a second detection temperature Tb detected by the second temperature sensor.
    • 超声波诊断装置包括:超声波探头,其中第一温度传感器和第二温度传感器位于振荡器后面; 以及表面温度计算装置,用于基于由第一温度传感器检测的第一检测温度Ta和由第二温度传感器检测的第二检测温度Tb来计算超声波探头的表面温度。 此外,超声波诊断装置包括:超声波探头,其中第一温度传感器和第二温度传感器嵌入在背衬材料中; 以及表面温度计算装置,用于基于由第一温度传感器检测的第一检测温度Ta和由第二温度传感器检测的第二检测温度Tb来计算超声波探头的表面温度Ts。
    • 10. 发明申请
    • Ultrasonic diagnostic apparatus and driving method therefor
    • 超声诊断装置及其驱动方法
    • US20050124891A1
    • 2005-06-09
    • US11008314
    • 2004-12-09
    • Shinichi Amemiya
    • Shinichi Amemiya
    • A61B8/06A61B8/00A61B8/02A61B8/13G01S7/52G01S15/89
    • A61B8/06G01S7/5203G01S7/52046G01S15/8918
    • An ultrasonic diagnostic apparatus for continuously transmitting ultrasonic signal toward a subject, continuously receiving signals reflected from the subject in response to the transmitted ultrasonic signals, and producing a tomographic image of a subject based on the received signals, comprises transmitting/receiving means for transmitting/receiving ultrasonic signals via a plurality of channels, and a sector probe having transducers connectable to the channels via switches, the transducers being in a number larger than the number of the channels and arranged in one direction, in which probe, ones among said transducers arranged in one direction that are spaced at intervals of a predetermined number of said transducers are connected to channels for transmitting ultrasonic signals.
    • 一种超声波诊断装置,用于向对象连续地发送超声信号,响应于所发送的超声信号连续地接收从被检体反射的信号,并且基于接收信号产生被检者的断层图像,包括发送/接收装置, 通过多个通道接收超声波信号,以及扇形探测器,其具有可经由开关连接到所述通道的换能器,所述换能器的数量大于所述通道的数量,并且布置在一个方向上,所述探头中的所述换能器中的一个布置 在以预定数量的所述换能器间隔开的一个方向上连接到用于发射超声波信号的通道。