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    • 22. 发明申请
    • Ultrasonic diagnosis apparatus and ultrasonic diagnosis method
    • 超声诊断仪和超声诊断方法
    • US20060116582A1
    • 2006-06-01
    • US11280326
    • 2005-11-17
    • Tetsuya YoshidaNaohisa Kamiyama
    • Tetsuya YoshidaNaohisa Kamiyama
    • A61B8/14
    • A61B8/06A61B8/481G01S7/52041G01S7/52084G01S7/52085G01S15/8979
    • An ultrasonic diagnostic apparatus comprises a transmitting and receiving section which transmits and receives a first ultrasonic wave that has such a sound pressure as practically does not destroy a contrast agent bubble given to a subject and that is for obtaining a bloodstream circulating image about a target area of the subject and which transmits a second ultrasonic wave that has such a sound pressure as destroys the contrast agent bubble and that is for causing the contrast agent bubble passing through a part of the target area to disappear from the circulating image, a timing specify section which informs the transmitting and receiving section of the timing of the transmission of the second ultrasonic wave, an image generating section which generates an ultrasonic image on the basis of each signal obtained by the transmission and reception of the first ultrasonic wave.
    • 一种超声波诊断装置,具备发送和接收具有实际上不破坏对象的造影剂气泡的这样的声压的第一超声波的发送和接收部,并且用于获得关于目标区域的血流循环图像 并且其传递具有破坏造影剂气泡的具有这样的声压的第二超声波,并且其是用于使通过目标区域的一部分的造影剂气泡从循环图像消失的定时指定部分 其通知发送和接收部分发送第二超声波的定时;图像生成部,其基于通过发送和接收第一超声波而获得的每个信号生成超声波图像。
    • 23. 发明授权
    • Radiant heating device for vehicle
    • 车辆辐射加热装置
    • US09025942B2
    • 2015-05-05
    • US13699166
    • 2011-05-13
    • Naohisa Kamiyama
    • Naohisa Kamiyama
    • A45D20/40F24H9/00B60H1/22B60H1/00
    • B60H1/2218B60H1/00849B60H1/00878B60H2001/00228
    • A radiant heating device for a vehicle includes a radiant heater that radiates radiant heat toward a passenger and is provided together with an air-conditioner that selectively introduces air outside a passenger compartment or air inside the passenger compartment and then supplies conditioned air generated from the introduced air into the passenger compartment. The radiant heating device includes a controller that differentiates a radiant energy amount of the radiant heater when the introduced air into the air-conditioner is the air outside the passenger compartment from when the introduced air is the air inside the passenger compartment. According to the radiant heating device, the passenger can be provided with warm comfort feeling both in an outside air intake mode and in an inside air intake mode of the air-conditioner.
    • 用于车辆的辐射加热装置包括辐射加热器,其朝向乘客辐射辐射热,并且与选择性地将乘客舱外的空气或乘客舱内的空气选择性地引入的空调一起设置,然后提供从引入的 空气进入客舱。 辐射加热装置包括控制器,当从引入的空气是乘客舱内的空气时,当进入空调的引入空气是乘客室外的空气时,区分辐射加热器的辐射能量。 根据辐射加热装置,乘客可以在空调的外部空气进入模式和内部空气进入模式中被赋予温暖的舒适感。
    • 26. 发明授权
    • Ultrasonic diagnosis apparatus and ultrasonic diagnosis apparatus control method
    • 超声波诊断仪和超声波诊断仪控制方法
    • US08360980B2
    • 2013-01-29
    • US11064096
    • 2005-02-24
    • Naohisa Kamiyama
    • Naohisa Kamiyama
    • A61B8/00
    • A61B8/481A61B8/06A61B8/13
    • After executing a second transmission constituting an ultrasonic wave of an amount of one frame from an ultrasonic wave having a high sound pressure of destructing bubbles in a predetermined section for making a blood stream image or a tissue image in a circulation image of a blood stream disappear by making the bubbles in the predetermined section disappear, there is carried out a third transmission by an ultrasonic wave having a low sound pressure of not substantially destructing the bubbles for acquiring the circulation image of the blood stream with regard to the predetermined section. The first transmission is executed by the ultrasonic wave for making a portion of the blood stream image in the circulation image disappear by making the bubbles at the predetermined region present in the predetermined section disappear as necessary while executing the third transmission.
    • 在用于使血流图像或血流循环图像中的组织图像消失的预定部分中,从具有破坏性气泡的高声压的超声波执行构成一帧量的超声波的第二传输 通过使预定部分中的气泡消失,通过具有基本不破坏气泡的低声压的超声波进行第三次透射,以获取关于预定部分的血流的循环图像。 通过超声波执行第一次发送,以使循环图像中的血流图像的一部分通过使预定区域中存在的预定区域的气泡在执行第三次透射时根据需要消失。
    • 28. 发明申请
    • ULTRASONIC DIAGNOSIS APPARATUS, MEDICAL IMAGE PROCESSING APPARATUS, AND MEDICAL IMAGE DIAGNOSIS APPARATUS
    • 超声波诊断装置,医学图像处理装置和医学图像诊断装置
    • US20110172531A1
    • 2011-07-14
    • US12976382
    • 2010-12-22
    • Yuko KANAYAMANaohisa KamiyamaYoko OKAMURA
    • Yuko KANAYAMANaohisa KamiyamaYoko OKAMURA
    • A61B8/14G06K9/00
    • A61B8/461A61B8/14A61B8/483G01S7/52063G01S15/8993G06T15/08
    • According to one embodiment, an ultrasonic diagnosis apparatus includes an ultrasonic probe, an ultrasonic transmission/reception unit, a volume data generating unit, a projected image generating unit, a two dimensional region-of-interest setting unit, a specifying unit, a calculation unit and a three-dimensional region-of-interest determination unit. The specifying unit specifies cells on rays which pass through the respective pixels in the 2D-ROI and are used to acquire a VR image. The calculation unit calculates the contribution degree of each cell based on the voxel value and opacity of each cell specified and calculates the average value of the contribution degrees of cells equal in distance from the screen of the VR image along the line-of-sight direction. The three-dimensional region-of-interest determination unit specifies the distances from the screen of the VR image which correspond to average contribution values exceeding the predetermined threshold and determines the position of the 3D-ROI in the volume data.
    • 根据一个实施例,超声波诊断装置包括超声波探头,超声波发送/接收单元,音量数据生成单元,投影图像生成单元,二维感兴趣区域设置单元,指定单元,计算 单位和三维感兴趣区域确定单元。 指定单元在通过2D-ROI中的各个像素的光线上指定单元格,并且用于获取VR图像。 计算单元基于规定的每个单元的体素值和不透明度来计算每个单元的贡献度,并且计算沿着视线方向从VR图像的屏幕的距离相等的单元的贡献度的平均值 。 三维感兴趣区域确定单元指定与从超过预定阈值的平均贡献值相对应的VR图像的屏幕的距离,并确定体积数据中的3D-ROI的位置。
    • 29. 发明申请
    • ULTRASONIC DIAGNOSTIC APPARATUS, POSITIONAL INFORMATION ACQUIRING METHOD, AND COMPUTER PROGRAM PRODUCT
    • 超声波诊断设备,获取信息的方法和计算机程序产品
    • US20100185092A1
    • 2010-07-22
    • US12688259
    • 2010-01-15
    • Cong YAONaohisa KamiyamaYoko Okamura
    • Cong YAONaohisa KamiyamaYoko Okamura
    • A61B8/14
    • A61B8/5223A61B8/0825A61B8/14A61B8/463A61B8/54
    • The analysis image generating unit generates section images from volume analysis data that is collected by sending an ultrasound wave down to a region under the ribs. The right/left identifying unit identifies the right or left breast from cyclic motion components in the section images. The extending direction detecting unit analyzes plane-A images or plane-B images generated from the same volume analysis data, or a plane-C thickness-added MIP image, and detects the rib extending direction. The extending direction detecting unit also determines the position of the ultrasound probe based on the relative displacement of the extending direction. The body mark generating unit generates a body mark from the analysis results obtained by the right/left identifying unit and the extending direction detecting unit. The image synthesizing unit integrates the display image generated by the display image generating unit and the body mark, and displays it on the monitor.
    • 分析图像生成单元从通过将超声波发送到肋下的区域而收集的体积分析数据生成截面图像。 右/左识别单元从截面图像中的循环运动分量识别右乳房或左乳房。 延伸方向检测单元分析从相同体积分析数据或平面C厚度增加的MIP图像生成的平面A图像或平面B图像,并且检测肋延伸方向。 延伸方向检测单元还基于延伸方向的相对位移来确定超声波探头的位置。 体标记生成单元根据由左右识别单元和延伸方向检测单元获得的分析结果生成体标记。 图像合成单元将由显示图像生成单元生成的显示图像和体标记进行积分,并将其显示在监视器上。