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    • 51. 发明公开
    • MR 데이터를 획득하고 B1 자기장을 판단하는 방법 및 이에 대응하여 설계된 자기 공명 시스템
    • 获取磁盘数据和确定B1磁场的方法,以及相应的设计磁共振系统
    • KR1020140099202A
    • 2014-08-11
    • KR1020140010572
    • 2014-01-28
    • 지멘스 악티엔게젤샤프트
    • 쾰러,마이클스페크너,토르스텐
    • G01R33/483G01R33/34
    • G01R33/54G01R33/246G01R33/483G01R33/34G01R33/44
    • Provided are a method of acquiring MR data, a method of determining a B1 magnetic field and a magnetic resonance system designed to correspond to the same. The present invention relates to a method of acquiring MR data in a volume segment by using a magnetic resonance system (5). The MR data is repeatedly acquired by using a sequence (61, 62) which includes the steps of: radiating a first resonant RF pulse (31); radiating a second resonant RF pulse (32); apply a dephasing first gradient (41) after radiating the first resonant RF pulse (31) and before radiating the second resonant RF pulse (32); radiating a third resonant RF pulse (33) after radiating the second resonant RF pulse (32); applying a second gradient (42) after radiating the third RF resonant pulse (33), in order to refocus a stimulated echo (SE) of a magnetization component prepared by the dephasing first gradient (41); reading out MR data associated with the stimulated echo; and radiating a fourth resonant RF pulse (34) after reading out the MR data to reduce longitudinal magnetization.
    • 提供一种获取MR数据的方法,确定B1磁场的方法和被设计为对应于其的磁共振系统。 本发明涉及一种通过使用磁共振系统(5)在体段中获取MR数据的方法。 通过使用包括以下步骤的序列(61,62)重复获取MR数据:辐射第一谐振RF脉冲(31); 辐射第二谐振RF脉冲(32); 在辐射第一谐振RF脉冲(31)之后并且在辐射第二谐振RF脉冲(32)之前施加去相位第一梯度(41); 在辐射第二谐振RF脉冲(32)之后辐射第三谐振RF脉冲(33); 在辐射第三RF谐振脉冲(33)之后施加第二梯度(42),以便重新聚焦由去相位第一梯度(41)制备的磁化分量的受激回波(SE)。 读出与受激回波相关的MR数据; 以及在读出MR数据之后辐射第四谐振RF脉冲(34)以减小纵向磁化强度。
    • 53. 发明授权
    • 자기 공명 영상 장치 및 이를 이용한 자기 공명 영상 처리 방법
    • 磁共振成像装置及使用其的磁共振图像处理方法
    • KR101751974B1
    • 2017-07-11
    • KR1020160029632
    • 2016-03-11
    • 성균관대학교산학협력단
    • 박재석박수형
    • A61B5/055G01R33/483G01R33/54G01R33/56G01R33/561
    • A61B5/055G01R33/483G01R33/54G01R33/56G01R33/561
    • 본발명에서는자기공명영상장치및 자기공명영상방법이개시된다. 특히, 본발명의일 실시예에따른자기공명영상장치는생체내 물분자의신호를감소시키기위한포화펄스및 상기포화펄스를위한포화시간이후에펄스열을인가하는펄스생성부; 상기포화펄스및 펄스열을인가하는반복적인시퀀스에따라획득된복수개의 k 공간(k-space)에서각각샘플링을수행하되, 각각의 k 공간의중앙부분및 상기각각의 k 공간마다다르게결정되는일부분을포함하는샘플링영역에대해샘플링을수행하는샘플링수행부; 및상기샘플링결과로서획득된데이터로부터재구성영상을획득하는영상획득부를포함하고, 상기펄스생성부는상기시퀀스마다서로다른주파수를가진포화펄스를인가하고, 상기샘플링수행부는상기중앙부분에대해나이퀴스트(nyquist) 비율로데이터를획득한다.
    • 本发明公开了一种磁共振成像设备和磁共振成像方法。 特别地,根据本发明的一个实施例的磁共振成像装置是部分产生的脉冲为一个饱和时间为一个饱和脉冲和用于从水分子减少了活体中的信号饱和脉冲之后施加一个脉冲序列; 但每一经取样以根据用于施加饱和脉冲和脉冲串中的迭代序列获得的多个k空间(K空间)中,每个K空间的中央部分和一个部分,其每一个的不同地确定对于每个k空间的, 采样执行单元,其对包括采样区域的采样区域执行采样; 和用于获得从所获取的数据作为采样结果,其中,所述脉冲发生器包括一重构图像的单位图像采集:执行所述采样是具有用于每个序列不同的频率饱和脉冲,以及部分喹啉基年龄相对于主机的中心 (奈奎斯特)以速率获得数据。
    • 60. 发明专利
    • Magnetic resonance imaging apparatus and magnetic resonance imaging method
    • 磁共振成像装置和磁共振成像方法
    • JP2012020110A
    • 2012-02-02
    • JP2011097414
    • 2011-04-25
    • Toshiba CorpToshiba Medical Systems Corp東芝メディカルシステムズ株式会社株式会社東芝
    • TAKAHASHI TOMOYOSHIIKEDO MASAHITO
    • A61B5/055
    • G01R33/483G01R33/5659
    • PROBLEM TO BE SOLVED: To provide technology to judge existence of an implant in such as chest of an object automatically and precisely.SOLUTION: According to one embodiment, an MRI apparatus includes an image generating unit, a judging unit, and a correction unit. The image generating unit receives, from an object, a magnetic resonance signal caused by transmission of an RF (Radio Frequency) pulse to cause a nuclear magnetic resonance, and generates image data of the object based on the magnetic resonance signal. The judging unit identifies an implant region where an implant part exists inside the object, based on the image data. The correction unit acquires magnetic resonance frequency information from a body region which is a region inside the object excluding the implant region, and corrects a center frequency of the RF pulse based on the magnetic resonance frequency information.
    • 要解决的问题:提供技术来自动和精确地判断诸如物体胸部中的植入物的存在。 解决方案:根据一个实施例,MRI装置包括图像生成单元,判断单元和校正单元。 图像生成单元从对象接收由射频(射频)脉冲的发送引起的核磁共振引起的磁共振信号,并且基于磁共振信号生成对象的图像数据。 判断单元基于图像数据识别植入物部分存在于物体内部的植入区域。 校正单元从除了植入区域之外的物体内的身体区域获取磁共振频率信息,并且基于磁共振频率信息来校正RF脉冲的中心频率。 版权所有(C)2012,JPO&INPIT