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    • 1. 发明申请
    • Ultrasonic diagnostic apparatus
    • 超声波诊断仪
    • US20100262005A1
    • 2010-10-14
    • US12662326
    • 2010-04-12
    • Hiroyuki Karasawa
    • Hiroyuki Karasawa
    • A61B8/14
    • G01S7/52017A61B8/00A61B8/4472A61B8/5207A61B8/56G01S7/003G01S7/5208G01S7/52085
    • In an ultrasonic diagnostic apparatus for performing serial transfer between an ultrasonic probe and an apparatus main body, stable image formation can be performed even when transfer quality is poor while realizing downsizing of the ultrasonic probe. The apparatus includes: (i) an ultrasonic probe including a reception signal processing unit for generating parallel sample data based on reception signals outputted from plural ultrasonic transducers, a parallel/serial conversion unit for converting the parallel sample data into serial sample data, and a communication unit for transmitting the sample data; and (ii) an ultrasonic diagnostic apparatus main body including a storage unit for storing the sample data of at least one frame transmitted from the ultrasonic probe, and an image forming unit for generating an image signal by performing reception focusing processing on the sample data with respect to every one frame read out from the storage unit.
    • 在超声波探头与装置主体之间进行串行传送的超声波诊断装置中,即使在超声波探头小型化的情况下,即使在转印质量差的情况下也能够进行稳定的图像形成。 该装置包括:(i)超声波探头,包括:接收信号处理单元,用于根据从多个超声波换能器输出的接收信号产生并行采样数据;并行/串行转换单元,用于将并行采样数据转换成串行采样数据;以及 用于发送样本数据的通信单元; 以及(ii)超声波诊断装置主体,包括存储单元,用于存储从超声波探头发送的至少一帧的样本数据;以及图像形成单元,用于通过对样本数据进行接收聚焦处理来生成图像信号, 相对于从存储单元读出的每一帧。
    • 2. 发明授权
    • Ultrasonic imaging apparatus
    • 超声波成像装置
    • US07713206B2
    • 2010-05-11
    • US11234088
    • 2005-09-26
    • Hiroyuki Karasawa
    • Hiroyuki Karasawa
    • A61B8/00
    • A61B8/14
    • Tissue property of a reflector is detected based on plural reception signals outputted from plural ultrasonic transducers by receiving ultrasonic echoes. An ultrasonic imaging apparatus includes: an ultrasonic probe including plural ultrasonic transducers for transmitting ultrasonic waves toward an object to be inspected and receiving ultrasonic waves reflected from the object to output plural reception signals; and a tissue property image generating unit for generating information on tissue property in a region within the object based on interrelationship among at least one group of reception signals on the region from among the plural reception signals respectively outputted from the plural ultrasonic transducers.
    • 基于通过接收超声波回波从多个超声换能器输出的多个接收信号来检测反射体的组织特性。 一种超声波成像装置,包括:超声波探头,包括多个超声波换能器,用于向待检查物体发送超声波,并接收从物体反射的超声波,以输出多个接收信号; 以及组织属性图像生成单元,用于根据从多个超声波换能器分别输出的多个接收信号中的区域中的至少一组接收信号之间的相互关系,生成关于对象内的区域中的组织属性的信息。
    • 3. 发明授权
    • Ultrasonic diagnosing apparatus
    • 超声诊断仪
    • US07481769B2
    • 2009-01-27
    • US10944800
    • 2004-09-21
    • Hiroyuki Karasawa
    • Hiroyuki Karasawa
    • A61B8/00
    • A61B8/483A61B8/0858A61B8/0875A61B8/4438G01S7/52026G01S7/52036G01S7/5206
    • An ultrasonic diagnosing apparatus capable of improving an SN ratio and emphatically displaying characteristic tissues by acquiring information unique to tissues such as organs, bones, etc. in a living body. The ultrasonic diagnosing apparatus includes: a B-mode image data generating unit for generating first image data based on intensity of detection signals obtained by transmitting and receiving ultrasonic waves having a plurality of frequency components; a frequency component extracting unit for extracting at least one frequency component from the detection signals; a frequency image data generating unit for generating second image data based on intensity of the extracted at least one frequency component; and an image selecting unit for selecting at least one of the first image data and the second image data.
    • 一种超声波诊断装置,其能够提高SN比,并且通过获取生物体中诸如器官,骨骼等的组织所特有的信息来强调显示特征性组织。 超声波诊断装置包括:B模式图像数据生成单元,用于基于通过发送和接收具有多个频率分量的超声波而获得的检测信号的强度来产生第一图像数据; 频率分量提取单元,用于从所述检测信号中提取至少一个频率分量; 频率图像数据生成单元,用于基于所提取的至少一个频率分量的强度产生第二图像数据; 以及图像选择单元,用于选择第一图像数据和第二图像数据中的至少一个。
    • 4. 发明申请
    • Ultrasonic probe and ultrasonic diagnosing apparatus
    • 超声波探头和超声波诊断仪
    • US20070232924A1
    • 2007-10-04
    • US11717102
    • 2007-03-13
    • Hiroyuki Karasawa
    • Hiroyuki Karasawa
    • A61B8/14
    • A61B8/14
    • N numbers of ultrasonic transducers are arranged at a tip of an ultrasonic probe. A wire from each transducer is connected to a multiplexer (MUX). The MUX selectively switches M numbers of the ultrasonic transducers to be driven out of the N numbers of the ultrasonic transducers. A short-circuit switch is connected to each of the ultrasonic transducers. The short-circuit switches short-circuit adjacent L numbers of the ultrasonic transducers, and simultaneously drive the L numbers of the ultrasonic transducers as a single ultrasonic transducer. A CPU changes the number L in accordance with the frequency band of the ultrasonic waves which is set by an operation unit.
    • 在超声波探头的末端配置N个超声波换能器。 来自每个传感器的导线连接到多路复用器(MUX)。 多路复用器选择性地将N个超声波换能器中的M个超声换能器转换为要被驱动。 短路开关连接到每个超声换能器。 短路开关使相邻L个超声波换能器短路,同时将L个超声波换能器作为单个超声波换能器驱动。 CPU根据由操作单元设定的超声波的频带来改变数量L.
    • 8. 发明授权
    • Ultrasonic diagnostic apparatus and ultrasonic probe
    • 超声波诊断仪和超声波探头
    • US08394028B2
    • 2013-03-12
    • US12656354
    • 2010-01-27
    • Yoshiaki SatohHiroyuki Karasawa
    • Yoshiaki SatohHiroyuki Karasawa
    • A61B8/14
    • A61B8/00A61B8/4209A61B8/4405A61B8/4438A61B8/4472A61B8/56
    • When a transfer signal according to ultrasonic echoes is wirelessly transmitted from an ultrasonic probe to an ultrasonic diagnostic apparatus main body, the main body and the probe are reliably connected without false recognition. An ultrasonic diagnostic apparatus includes an ultrasonic probe and an ultrasonic diagnostic apparatus main body, and the ultrasonic probe includes a probe ID transport unit having a transport distance shorter than that of a first wireless communication unit for transporting a probe ID for identification of itself in contact or noncontact to an outside, the ultrasonic diagnostic apparatus main body includes a probe ID acquiring unit for acquiring the probe ID transported from the probe ID transport unit, and a second wireless communication unit receives the transfer signal from the ultrasonic probe having the probe ID acquired by the probe ID acquiring unit.
    • 当根据超声波回波的传送信号从超声波探头无线传输到超声波诊断装置主体时,主体和探头可靠地连接而不被错误识别。 超声波诊断装置包括超声波探头和超声波诊断装置主体,超声波探头具有探头ID传送单元,该探头ID传送单元的传送距离短于与第一无线通信单元的传送距离相比传输距离短的探针ID, 或者不与外部接触,超声波诊断装置主体包括:探头ID获取单元,用于获取从探测ID传送单元传送的探测ID,第二无线通信单元从具有获取的探测ID的超声波探头接收传输信号 由探针ID获取单元。
    • 9. 发明申请
    • ADAPTER AND ULTRASONIC DIAGNOSIS SYSTEM
    • 适应和超声诊断系统
    • US20090247877A1
    • 2009-10-01
    • US12412733
    • 2009-03-27
    • Toshizumi TanakaTomoo SatoHiroyuki Karasawa
    • Toshizumi TanakaTomoo SatoHiroyuki Karasawa
    • A61B8/14A61B1/06
    • A61B8/12A61B8/4405A61B8/4411A61B8/4427A61B8/4433A61B8/462A61B8/5238G01S7/52074G01S7/52082G01S15/899
    • An ultrasonic diagnosis system includes an ultrasonic diagnosis device for diagnosis according to a signal from a first ultrasonic probe for extracorporeal use. A second ultrasonic probe detects an object for in-vivo diagnosis. An adapter inputs and/or outputs between the ultrasonic diagnosis device and the second ultrasonic probe. The adapter includes a holder chamber for holding the ultrasonic diagnosis device. A diagnosis device connector is for connection with the ultrasonic diagnosis device. A probe connector is for connection with the second ultrasonic probe. An input/output device is for transmission and/or reception between the probe connector and the diagnosis device connector. In addition to the ultrasonic diagnosis device, a picture-in-picture processing unit operates for picture-in-picture processing of an ultrasonic or endoscopic image. Furthermore, a processor connector is for connection with an endoscope processor for receiving a signal from the endoscope to create an endoscopic image.
    • 超声波诊断系统包括根据来自用于体外使用的第一超声波探头的信号进行诊断的超声波诊断装置。 第二超声波探头检测物体进行体内诊断。 适配器在超声波诊断装置和第二超声波探头之间输入和/或输出。 适配器包括用于保持超声波诊断装置的保持室。 诊断装置连接器用于与超声波诊断装置连接。 探头连接器用于与第二超声波探头连接。 输入/输出装置用于在探针连接器和诊断装置连接器之间传输和/或接收。 除了超声波诊断装置之外,画中画处理单元还操作超声波或内窥镜图像的画中画处理。 此外,处理器连接器用于与内窥镜处理器连接,用于从内窥镜接收信号以产生内窥镜图像。
    • 10. 发明授权
    • Method of inspecting stray light that occurs in a radiation image reader
    • 检查辐射图像读取器中发生的杂散光的方法
    • US07102149B2
    • 2006-09-05
    • US09801773
    • 2001-03-09
    • Osamu KurodaHiroyuki Karasawa
    • Osamu KurodaHiroyuki Karasawa
    • G03B42/08
    • G03B42/02
    • The inspection method comprises: preparing a storage fluorescent inspection sheet that has stored and recorded a radiation inspection image which has a density pattern in which one or more low-density and high-density regions having a contrast difference of at least 1:20 are arrayed in a horizontal scanning direction; obtaining an image inspection signal representing the radiation inspection image, by photoelectrically reading the radiation inspection image from the storable fluorescent inspection sheet; and inspecting the influence of stray light, based on an image reproduced from the image inspection signal. An inspection image plate has contrast differences of high-density and low-density regions of at least 1:20.
    • 检查方法包括:准备存储和记录具有密度图案的放射线检查图像的存储荧光检查片,其中排列具有至少1:20的对比差的一个或多个低密度和高密度区域 在水平扫描方向; 通过从可存储的荧光检查片中光电读取放射线检查图像,获得表示放射线检查图像的图像检查信号; 并基于从图像检查信号再现的图像来检查杂散光的影响。 检查图像板具有至少1:20的高密度和低密度区域的对比差异。