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    • 1. 发明授权
    • System and method for multi-segment center point trajectory mapping
    • 多段中心点轨迹映射的系统和方法
    • US08487933B2
    • 2013-07-16
    • US12961159
    • 2010-12-06
    • Ting SongVincent B. Ho
    • Ting SongVincent B. Ho
    • G06T11/20G06K9/00
    • A61B6/00A61B5/02007A61B5/742A61B6/469G06T7/0016G06T7/246G06T7/66G06T11/206G06T2200/24G06T2207/10072G06T2207/10132G06T2207/30048
    • A computer implemented method of mapping of multiple regional center point trajectory movements of cavity walls is provided in which images are acquired and a region-of-interest is identified in each of the images. The region-of-interest is divided into a plurality of distinct regions and a regional center point for each of the regions is located in the images. For each regional center point, a center point trajectory is determined based on variances in position of the center points from each other in the images. The center point trajectory of each regional center point is decomposed into radial and circumferential components so as to isolate radial component of the center point trajectory for each regional center point in each of the images and radial motion versus time curves are displayed for each regional center point based on the determined radial component for each regional center point in each of the images.
    • 提供了一种映射空腔壁的多个区域中心点轨迹运动的计算机实现方法,其中获取图像,并且在每个图像中识别感兴趣区域。 感兴趣区域被分成多个不同的区域,并且每个区域的区域中心点位于图像中。 对于每个区域中心点,基于图像中的彼此的中心点的位置的方差确定中心点轨迹。 每个区域中心点的中心点轨迹被分解成径向和圆周分量,以便隔离每个图像中每个区域中心点的中心点轨迹的径向分量,并且针对每个区域中心点显示径向运动与时间曲线 基于每个图像中每个区域中心点的确定的径向分量。
    • 2. 发明申请
    • SYSTEM AND METHOD FOR MULTI-SEGMENT CENTER POINT TRAJECTORY MAPPING
    • 用于多分段中心点轨迹映射的系统和方法
    • US20110075902A1
    • 2011-03-31
    • US12961159
    • 2010-12-06
    • Ting SongVincent B. Ho
    • Ting SongVincent B. Ho
    • G06K9/00G06T11/20
    • A61B6/00A61B5/02007A61B5/742A61B6/469G06T7/0016G06T7/246G06T7/66G06T11/206G06T2200/24G06T2207/10072G06T2207/10132G06T2207/30048
    • A computer implemented method of mapping of multiple regional center point trajectory movements of cavity walls is provided in which images are acquired and a region-of-interest is identified in each of the images. The region-of-interest is divided into a plurality of distinct regions and a regional center point for each of the regions is located in the images. For each regional center point, a center point trajectory is determined based on variances in position of the center points from each other in the images. The center point trajectory of each regional center point is decomposed into radial and circumferential components so as to isolate radial component of the center point trajectory for each regional center point in each of the images and radial motion versus time curves are displayed for each regional center point based on the determined radial component for each regional center point in each of the images.
    • 提供了一种映射空腔壁的多个区域中心点轨迹运动的计算机实现方法,其中获取图像,并且在每个图像中识别感兴趣区域。 感兴趣区域被分成多个不同的区域,并且每个区域的区域中心点位于图像中。 对于每个区域中心点,基于图像中的彼此的中心点的位置的方差确定中心点轨迹。 每个区域中心点的中心点轨迹被分解成径向和圆周分量,以便隔离每个图像中每个区域中心点的中心点轨迹的径向分量,并且针对每个区域中心点显示径向运动与时间曲线 基于每个图像中每个区域中心点的确定的径向分量。
    • 6. 发明授权
    • Method and apparatus for contrast inflow dynamic MR angiography
    • 对比流入动态血管造影的方法和装置
    • US07880465B2
    • 2011-02-01
    • US12132706
    • 2008-06-04
    • Maggie M. FungEhud J. SchmidtGodtfred HolmvangVincent B. Ho
    • Maggie M. FungEhud J. SchmidtGodtfred HolmvangVincent B. Ho
    • G01V3/00
    • G01R33/5635G01R33/4818G01R33/4835G01R33/5601G01R33/5619G01R33/56308G01R33/56509
    • A system and method for MR imaging includes a computer programmed to determine first and second view-ordering sequences. The first and second view-ordering sequences comprise values corresponding to respective views of first and second k-space data sets, respectively, wherein the values corresponding to a central view of each the first and second k-space data sets are positioned such that acquisition of k-space data in each central view is acquired from a first and second anatomical region, respectively, as a contrast agent passes therethrough. The positions of the values corresponding to the central views of the first and second k-space data sets within the respective sequences are different. The computer is further programmed to acquire MR data according to the first and second view-ordering sequences over a series of cardiac cycles to fill data in the first and second k-space data sets, respectively.
    • 用于MR成像的系统和方法包括被编程为确定第一和第二视图排序序列的计算机。 第一和第二视图排序序列分别包括对应于第一和第二k空间数据集的各个视图的值,其中对应于每个第一和第二k空间数据集的中心视图的值被定位成使得采集 当造影剂通过时,分别从第一和第二解剖区域获取每个中心视图中的k空间数据。 对应于各序列内的第一和第二k空间数据集的中心视图的值的位置是不同的。 计算机还被编程为分别在一系列心动周期上根据第一和第二视图排序序列获取MR数据,以分别填充第一和第二k空间数据集中的数据。
    • 8. 发明授权
    • Method for peripheral MR angiography
    • 外周血管造影的方法
    • US06249694B1
    • 2001-06-19
    • US09118411
    • 1998-07-17
    • Thomas K. F. FooVincent B. HoMatthew A. Bernstein
    • Thomas K. F. FooVincent B. HoMatthew A. Bernstein
    • A61B5055
    • G01R33/5635G01R33/5601G01R33/56572
    • A method of peripheral MR angiography is provided for imaging an artery or other vessel, wherein the vessel is of such length that MR data must be acquired at each of a plurality of scan stations spaced along the vessel. In accordance with the method, a contrast agent is intravenously injected, in order to provide a bolus which successively flows to each of the scan stations. After acquiring an initial subset of the MR data associated with a given scan station, the bolus is tracked to determine whether it has arrived at the next-following scan station. If so, at least some of the MR data associated with the next scan station are then acquired. However, if it is found that the bolus has not yet arrived at the next scan station, acquisition of further data at the given scan station is continued.
    • 提供了一种用于对动脉或其他血管进行成像的外周MR血管造影术的方法,其中所述血管具有这样的长度,使得必须在沿着血管间隔开的多个扫描站中的每一个处获取MR数据。 根据该方法,静脉内注射造影剂,以提供连续流向每个扫描站的推注。 在获取与给定扫描站相关联的MR数据的初始子集之后,跟踪该推注以确定其是否到达下一个扫描站。 如果是,则随后获取与下一个扫描站相关联的至少一些MR数据。 然而,如果发现大剂量尚未到达下一个扫描站,则继续在给定扫描站获取进一步的数据。
    • 9. 发明申请
    • METHOD AND APPARATUS FOR CONTRAST INFLOW DYNAMIC MR ANGIOGRAPHY
    • 对比度流动动态MR血管造影的方法和装置
    • US20090302840A1
    • 2009-12-10
    • US12132706
    • 2008-06-04
    • Maggie M. FungEhud J. SchmidtGodtfred HolmvangVincent B. Ho
    • Maggie M. FungEhud J. SchmidtGodtfred HolmvangVincent B. Ho
    • G01R33/483
    • G01R33/5635G01R33/4818G01R33/4835G01R33/5601G01R33/5619G01R33/56308G01R33/56509
    • A system and method for MR imaging includes a computer programmed to determine first and second view-ordering sequences. The first and second view-ordering sequences comprise values corresponding to respective views of first and second k-space data sets, respectively, wherein the values corresponding to a central view of each the first and second k-space data sets are positioned such that acquisition of k-space data in each central view is acquired from a first and second anatomical region, respectively, as a contrast agent passes therethrough. The positions of the values corresponding to the central views of the first and second k-space data sets within the respective sequences are different. The computer is further programmed to acquire MR data according to the first and second view-ordering sequences over a series of cardiac cycles to fill data in the first and second k-space data sets, respectively.
    • 用于MR成像的系统和方法包括被编程为确定第一和第二视图排序序列的计算机。 第一和第二视图排序序列分别包括对应于第一和第二k空间数据集的各个视图的值,其中对应于每个第一和第二k空间数据集的中心视图的值被定位成使得采集 当造影剂通过时,分别从第一和第二解剖区域获取每个中心视图中的k空间数据。 对应于各序列内的第一和第二k空间数据集的中心视图的值的位置是不同的。 计算机还被编程为分别在一系列心动周期上根据第一和第二视图排序序列获取MR数据,以分别填充第一和第二k空间数据集中的数据。
    • 10. 发明授权
    • Optimal imaging of the peripheral vasculature with test bolus tracking
    • US06643534B2
    • 2003-11-04
    • US10098013
    • 2002-03-13
    • Thomas K.F. FooVincent B. HoRebecca A. McCann
    • Thomas K.F. FooVincent B. HoRebecca A. McCann
    • A61B5055
    • G01R33/563G01R33/281
    • A system and method for optimally imaging the peripheral vasculature is disclosed which includes defining a given number of scan stations along a patient's peripheral vasculature and initially injecting a relatively small amount of contrast agent into the patient to pass a test bolus through the patient's peripheral vasculature, and thereafter tracking the test bolus through the patient and adjusting the patient on a moveable table within the MR imaging device from one scan station to a next station to determine a maximum travel time that the test bolus takes to travel through each of the given number of scan stations. Additional contrast agent is then injected into the patient to pass an exam bolus through the patient's peripheral vasculature, and using the test bolus travel time, MR data can be acquired from each scan station while it is known that the exam bolus is present in that station to optimize image resolution. Initially, central k-space data is acquired for each scan station, and if time permits, the higher spatial frequency k-space data can be acquired. Otherwise, once the central k-space data is acquired for each station, the patient table is adjusted to the scan stations that require additional data acquisition. Similarly, if there is time remaining after all MR data is acquired for a particular scan station, the patient table can be moved to a previous scan station to acquire additional data in that station before moving to a subsequent scan station to acquire the central k-space data when the exam bolus arrives in that particular scan station.