会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明申请
    • ULTRASOUND DIAGNOSIS APPARATUS, IMAGE PROCESSING APPARATUS, AND IMAGE PROCESSING METHOD
    • 超声诊断装置,图像处理装置和图像处理方法
    • US20120165674A1
    • 2012-06-28
    • US13409713
    • 2012-03-01
    • Yasuhiko ABETetsuya Kawagishi
    • Yasuhiko ABETetsuya Kawagishi
    • A61B8/08A61B8/13
    • A61B8/0883A61B8/463A61B8/466A61B8/483A61B8/5284
    • According to one embodiment, an ultrasound diagnosis apparatus includes a motion information generating unit and a control unit. The motion information generating unit generates first motion information on cardiac wall motion of at least one of a left ventricle and a left atrium and second motion information on cardiac wall motion of at least one of a right ventricle and a right atrium, on the basis of a first volume data group and a second volume data group; generates first correction information and second correction information by correcting the first motion information and the second motion information such that the first motion information and the second motion information are substantially synchronized with each other, and generates a motion information image in which the first correction information and the second correction information are arranged along the time axis. The control unit controls to display the motion image information.
    • 根据一个实施例,超声诊断装置包括运动信息生成单元和控制单元。 运动信息生成单元基于左心室和左心房中的至少一个的心脏壁运动的第一运动信息和关于右心室和右心房中的至少一个的心房壁运动的第二运动信息,基于 第一卷数据组和第二卷数据组; 通过校正第一运动信息和第二运动信息,使得第一运动信息和第二运动信息基本上彼此同步,产生第一校正信息和第二校正信息,并且生成运动信息图像,其中第一校正信息和 第二校正信息沿着时间轴布置。 控制单元控制显示运动图像信息。
    • 6. 发明申请
    • ULTRASOUND DIAGNOSTIC APPARATUS AND IMAGE PROCESSING METHOD
    • 超声诊断装置及图像处理方法
    • US20130137987A1
    • 2013-05-30
    • US13684722
    • 2012-11-26
    • Yasuhiko ABEShinichi Hashimoto
    • Yasuhiko ABEShinichi Hashimoto
    • A61B8/06A61B8/00A61B8/08
    • A61B8/06A61B8/0883A61B8/461A61B8/463A61B8/488A61B8/5207A61B8/5223A61B8/5284
    • An ultrasound diagnostic apparatus according to an embodiment includes a detector, a determination unit, a retention controller, and a display controller. The detector is configured to detect a peak flow velocity of blood flow velocities acquired from Doppler waveforms collected in a time-serial manner or a peak value of average flow velocities of the blood flow velocities as a representative flow velocity for each predefined period. The determination unit is configured to determine a maximum value in a predefined polarity of a plurality of representative flow velocities. The retention controller is configured to control a memory unit to retain maximum waveform information that is Doppler waveform information of Doppler waveforms collected for a period in which the maximum value was detected. The display controller is configured to control a display unit to display the maximum waveform information with Doppler waveform information having been collected by a present time point.
    • 根据实施例的超声波诊断装置包括检测器,确定单元,保持控制器和显示控制器。 检测器被配置为检测以时间序列方式收集的多普勒波形获取的血流速度的峰值流速或作为每个预定周期的代表性流速的血流速度的平均流速的峰值。 确定单元被配置为以多个代表性流速的预定极性来确定最大值。 保持控制器被配置为控制存储器单元以保留最大波形信息,其是在检测到最大值的时段中收集的多普勒波形的多普勒波形信息。 显示控制器被配置为控制显示单元以当前时间点收集的多普勒波形信息显示最大波形信息。
    • 8. 发明申请
    • ULTRASONIC IMAGE PROCESSING APPARATUS AND METHOD FOR PROCESSING ULTRASONIC IMAGE
    • 超声图像处理装置和处理超声图像的方法
    • US20080304730A1
    • 2008-12-11
    • US12134538
    • 2008-06-06
    • Yasuhiko ABE
    • Yasuhiko ABE
    • A61B8/00
    • A61B8/08A61B8/0883A61B8/543G06T7/12G06T7/246G06T2207/10132G06T2207/30048
    • A contour detector detects the contour of a specific tissue based on ultrasonic image data having been acquired in a predetermined time phase. A contour tracking part obtains the position of each of points composing the contour of a specific tissue in ultrasonic image data having been acquired in each time phase, by pattern matching for each time phase. A computing part obtains motion information indicating the motion state of a specific tissue in each time phase, based on the position of each of points composing the contour in each time phase. A display controller controls a display to display an ultrasonic image based on ultrasonic image data having been acquired in each time phase, for each time phase. Furthermore, the display controller controls the display to display the motion information in each time phase, on each occasion of each time phase.
    • 轮廓检测器基于在预定时间段中获取的超声图像数据来检测特定组织的轮廓。 轮廓跟踪部通过每个时间相位的模式匹配,获得在每个时间相位中获取的超声图像数据中构成特定组织的轮廓的每个点的位置。 计算部件基于在每个时间段中构成轮廓的每个点的位置,获得指示每个时间相位中的特定组织的运动状态的运动信息。 对于每个时间相位,显示控制器控制显示器以基于在每个时间阶段中获取的超声波图像数据来显示超声波图像。 此外,显示控制器在每个时间阶段的每个时刻,控制显示器在每个时间阶段中显示运动信息。
    • 9. 发明申请
    • ULTRASONIC IMAGE PROCESSING APPARATUS AND ULTRASONIC IMAGE PROCESSING METHOD
    • 超声图像处理设备和超声图像处理方法
    • US20080267482A1
    • 2008-10-30
    • US12109805
    • 2008-04-25
    • Yasuhiko ABETetsuya Kawagishi
    • Yasuhiko ABETetsuya Kawagishi
    • A61B5/00
    • A61B8/08A61B8/14A61B8/523A61B8/5246
    • Three slices, i.e., Basal, Mid, and Apical slices, which correspond to clinically useful ASE segmentation are designated, and the positions of the three slices are tracked through at least one cardiac cycle by performing three-dimensional speckle tracking in the remaining time phases. Three C-mode projection images concerning the tracked positions are reconstructed. In addition, arbitrary myocardial wall motion parameters at the tracked positions are computed and displayed upon being superimposed on C-mode images or projected/displayed on a polar map. As a C-mode projection image method, one of the following techniques can be used detecting and projecting only movement components perpendicular to slices determined in an initial time phase, detecting and projecting average movement components of the respective walls, and tracking and projecting each myocardial position. The obtained C-mode images are simultaneously displayed together with markers indicating the positions of long-axis images and C-mode images.
    • 指定对应于临床有用的ASE分割的三个切片,即基底,中部和顶端切片,并且通过在剩余时间阶段中执行三维斑点跟踪,通过至少一个心动周期跟踪三个切片的位置 。 重建关于跟踪位置的三个C模式投影图像。 另外,跟踪位置上的任意心肌壁运动参数被计算并显​​示在C模式图像上或投影/显示在极地图上。 作为C模式投影图像方法,可以使用以下技术之一来检测和投影垂直于在初始时间相位确定的切片的运动分量,检测和投影各个壁的平均运动分量,以及跟踪和投影每个心肌 位置。 所获得的C模式图像与指示长轴图像和C模式图像的位置的标记同时显示。