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    • 1. 发明授权
    • Method of electron spin resonance enhanced MRI
    • 电子自旋共振增强MRI的方法
    • US5289125A
    • 1994-02-22
    • US790209
    • 1991-11-08
    • Gosta J. Ehnholm
    • Gosta J. Ehnholm
    • A61K49/06G01R33/28G01R33/563G01R33/62G01R33/20
    • G01R33/62A61K49/06G01R33/563G01R33/281
    • A method of electron spin resonance enhanced magnetic resonance imaging of a paramagnetic substance-containing sample wherein an image of at least part of the sample is generated from a data set produced by manipulation of enhanced free induction decay signals detected under at least two different sets of operational parameters. The operating parameters which are varied to produce the different sets include the timing of the exposure of the sample to magnetic field gradients and spin resonance stimulating radiations and, optionally, also the amplitude and frequency distribution of the electron spin resonance stimulating radiations. The manipulation of the detected signals produces, for individual image elements, a normalized signal representative of the difference between signals for that element under the different sets of operational parameters.
    • 一种包含顺磁性物质的样品的电子自旋共振增强磁共振成像的方法,其中至少部分样品的图像是从通过操纵在至少两组不同组下的检测到的增强的自由诱导衰变信号产生的数据集产生的 操作参数。 变化以产生不同组的操作参数包括样品暴露于磁场梯度和自旋共振刺激辐射的时间,以及可选地还有电子自旋共振刺激辐射的振幅和频率分布。 检测到的信号的操纵对于各个图像元素产生表示在不同操作参数集下的该元件的信号之间的差异的归一化信号。
    • 2. 发明授权
    • Magnetic resonance imaging apparatus
    • 磁共振成像装置
    • US5144238A
    • 1992-09-01
    • US633798
    • 1990-12-26
    • Gosta J. Ehnholm
    • Gosta J. Ehnholm
    • G01N24/10A61B5/055G01N24/08G01N24/12G01R33/62
    • G01R33/62
    • There is provided an electron spin resonance enhanced magnetic resonance imaging (ESREMRI) apparatus having means arranged to generate a primary magnetic field of a first value during periods of nuclear spin transition excitation and magnetic resonance signal detection for the generation of ESREMRI images of a subject and means arranged to generate a primary magnetic field of a second and higher value during periods of nuclear spin transition excitation and magnetic resonance signal detection for the generation of native MR images of a subject, and preferably also means for combining, e.g. superimposing, ESREMRI and native MR images so generated.
    • 提供了一种电子自旋共振增强磁共振成像(ESREMRI)装置,其具有被布置成在核自旋跃迁激发期间产生第一值的初级磁场和用于产生受试者的ESREMRI图像的磁共振信号检测的装置, 用于在用于产生对象的本机MR图像的核自旋跃迁激励和磁共振信号检测期间产生第二和更高值的初级磁场的装置,并且优选地也用于组合,例如 叠加,ESREMRI和本地MR图像生成。
    • 7. 发明授权
    • Magnetic resonance imaging
    • 磁共振成像
    • US06366092B1
    • 2002-04-02
    • US09471525
    • 1999-12-23
    • Gosta J EhnholmIan Robert Young
    • Gosta J EhnholmIan Robert Young
    • G01V300
    • G01R33/4835G01R33/3415G01R33/5611
    • In magnetic resonance imaging apparatus having a resistive electromagnet with a bore 6, r.f. excitation pulse substantially simultaneously excites a number of slices A to D which are phase encoded and frequency encoded in the usual way, the direction of the main field being along the bore of the electromagnet in the direction z. The receive coil consists of an array of coils 5a to 5d which view different spatial regions of the imaging volume and the outputs of which are combined in different ways in order to reduce the number of slice encoding steps in the z-direction needed to distinguish between the slices A to D. Each coil of the array 5a etc. can form part of a two dimensional array in order to reduce the number of phase encoding steps in the phase encode direction.
    • 在具有具有孔6的电阻电磁体的磁共振成像装置中,r.f. 激励脉冲基本上同时激励以通常方式进行相位编码和频率编码的多个片段A至D,主场的方向沿电磁体的孔沿方向z。 接收线圈由一组线圈5a至5d组成,线圈5a至5d观看成像体积的不同空间区域,其输出以不同方式组合,以便减少Z方向上的切片编码步骤数量,以区分 片A至D.阵列5a等的每个线圈可以形成二维阵列的一部分,以便减少相位编码方向上的相位编码步骤的数量。
    • 9. 发明授权
    • Magnetic resonance imaging
    • 磁共振成像
    • US5315250A
    • 1994-05-24
    • US931770
    • 1992-08-18
    • Gosta J. EhnholmJohn S. Petersson
    • Gosta J. EhnholmJohn S. Petersson
    • G01R33/563G01R33/62G01V3/00
    • G01R33/563G01R33/62
    • The invention provides method of electron spin resonance enhanced magnetic resonance imaging of a subject, for example a human, animal or inanimate body, in which said subject is exposed to radiation of a frequency selected to stimulate an esr transition in a paramagnetic species in said subject whereby to effect dynamic nuclear polarization, wherein said exposure to radiation is arranged such that within the region of said subject so exposed the capacity of said radiation to stimulate a said transition is relatively enhanced in at least one volume (a region of interest (ROI)), i.e. a method in which one or more regions-of-interest within the subject under study are selected by making it possible for an enhancement agent to act more effectively in that region than outside. The method for example also allows flow processes within a body to be monitored to provide the operator with images or data sets indicative of the spatial and/or temporal characteristics of flow from the ROI.
    • 本发明提供了一种受试者例如人,动物或无生命体的电子自旋共振增强磁共振成像的方法,其中所述受试者暴露于所选择的频率的辐射以刺激所述受试者的顺磁物质中的esr转换 从而实现动态核极化,其中所述暴露于辐射被布置成使得在所述受试者的区域内暴露于所述辐射的刺激所述转变的能力在至少一个体积(感兴趣区域(ROI))中相对增强, ),即通过使增强剂在该区域内比在外部更有效地起作用的方式来选择被研究对象内的一个或多个兴趣区域的方法。 例如,该方法还允许对体内的流程进行监控,以向操作者提供指示来自ROI的流的空间和/或时间特征的图像或数据集。
    • 10. 发明授权
    • Magnetic resonance imaging apparatus and method
    • 磁共振成像装置及方法
    • US5296811A
    • 1994-03-22
    • US970805
    • 1992-11-03
    • Gosta J. EhnholmIlmari KinanenRaimo Sepponen
    • Gosta J. EhnholmIlmari KinanenRaimo Sepponen
    • G01R33/28G01R33/383G01V3/00
    • G01R33/383G01R33/28
    • The invention relates to a novel magnetic resonance imaging apparatus. The nuclei, protons or the paramagnetic electrons of an imaged object are cyclically polarized during a period of about one second with a permanent magnet which is then quickly shifted away from the imaged object in a permanent magnet carrier tube, so that the field of the permanent magnet would not have an interfering effect on the immediately following signal-collection for MRI-imaging. The permanent magnet can be manipulated or shifted back and forth in the tube either magnetically, pneumatically, hydraulically or mechanically. The apparatus also includes another permanent magnet or a resistive magnet coil couple, which is located in the tube near the opposite end of the tube, and which generates a homogeneous magnetic field within the imaged area. The apparatus includes a gradient coil system for generating a time-dependent magnetic field gradient necessary for imaging, as well as a coil system for producing an electromagnetic radio-frequency excitation signal to be linked with the nuclei or paramagnetic electrons of an imaged object as well as for registering the response of the nuclei or electrons to said signal. A control unit is used to control the above coils and to receive the information therefrom for producing an image or some other representation thereof.
    • 本发明涉及一种新型的磁共振成像装置。 成像对象的核,质子或顺磁性电子在大约一秒钟的周期内被周期性地极化,永久磁铁在永磁体载体管中迅速地从成像对象中移开,从而永久磁场 磁体对于立即跟踪的MRI成像信号收集不会产生干扰。 永久磁铁可以在磁力,气动,液压或机械上在管中进行操纵或前后移动。 该装置还包括另一个永磁体或电阻性磁体线圈对,其位于管的相对端附近的管中,并且在成像区域内产生均匀的磁场。 该装置包括用于产生成像所需的时间依赖磁场梯度的梯度线圈系统,以及用于产生要与成像对象的核或顺磁性电子连接的电磁射频激励信号的线圈系统 用于记录核或电子对所述信号的响应。 控制单元用于控制上述线圈并从其接收信息以产生图像或其他一些表示。