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    • 1. 发明申请
    • METHOD AND APPARATUS FOR T1e-SENSITIVE INVERSION-RECOVERY IMAGING FOR EPROI
    • 方法和装置用于EPRI的敏感反应恢复成像
    • US20160324438A1
    • 2016-11-10
    • US15213768
    • 2016-07-19
    • Howard J. HalpernBoris Epel
    • Howard J. HalpernBoris Epel
    • A61B5/055G01R33/341G01R33/60
    • A61B5/055G01R33/341G01R33/60G01V3/104
    • An apparatus and method for improved S/N measurements useful for electron paramagnetic resonance imaging in situ and in vivo, using high-isolation transmit/receive surface coils and temporally spaced pulses of RF energy (e.g., in some embodiments, a RF pi pulse) having an amplitude sufficient to rotate the magnetization by 180 degrees followed after varied delays, by a second RF pulse having an amplitude half that of the initial pulse to rotate the magnetization by, e.g., 90 degrees (a pi/2 pulse), to the plane orthogonal to the static field where it evolves for a short time. Then a third RF pi pulse sufficient to rotate the magnetization by, e.g., 180 degrees, forms an echo (in some embodiments, the second and third pulses are from the same signal as the first pulse but are phase shifted by 0, 90, 180, or 270 degrees to reduce signal artifact), to image human body.
    • 使用高隔离发射/接收表面线圈和时间间隔的RF能量的脉冲(例如,在一些实施例中,RF pi脉冲)中用于改善在原位和体内电子顺磁共振成像的S / N测量的装置和方法, 具有足够的振幅,以便在变化的延迟之后将磁化旋转180度,通过具有振幅为初始脉冲的一半的第二RF脉冲将磁化旋转例如90度(一个π/ 2脉冲))到 与静态场正交的平面,其演化时间短。 然后,足以使磁化旋转例如180度的第三RF pi脉冲形成回波(在一些实施例中,第二和第三脉冲来自与第一脉冲相同的信号,但是相位偏移0,90,180 ,或270度以减少信号伪影),以形象人体。
    • 5. 发明授权
    • T1-sensitive inversion-recovery-imaging method and apparatus for EPRI
    • 用于EPRI的T1敏感反演恢复成像方法和装置
    • US09392957B1
    • 2016-07-19
    • US13032637
    • 2011-02-22
    • Howard J. HalpernBoris Epel
    • Howard J. HalpernBoris Epel
    • A61B5/055G01R33/60G01R33/341
    • A61B5/055G01R33/341G01R33/60G01V3/104
    • An apparatus and method for improved S/N measurements useful for electron paramagnetic resonance imaging in situ and in vivo, using high-isolation transmit/receive surface coils and temporally spaced pulses of RF energy (e.g., in some embodiments, a RF pi pulse) having an amplitude sufficient to rotate the magnetization by 180 degrees followed after varied delays, by a second RF pulse having an amplitude half that of the initial pulse to rotate the magnetization by, e.g., 90 degrees (a pi/2 pulse), to the plane orthogonal to the static field where it evolves for a short time. Then a third RF pi pulse sufficient to rotate the magnetization by, e.g., 180 degrees, forms an echo (in some embodiments, the second and third pulses are from the same signal as the first pulse but are phase shifted by 0, 90, 180, or 270 degrees to reduce signal artifact), to image human body.
    • 使用高隔离发射/接收表面线圈和时间间隔的RF能量的脉冲(例如,在一些实施例中,RF pi脉冲)中用于改善在原位和体内电子顺磁共振成像的S / N测量的装置和方法, 具有足够的振幅,以便在变化的延迟之后将磁化旋转180度,通过具有振幅为初始脉冲的一半的第二RF脉冲将磁化旋转例如90度(一个π/ 2脉冲))到 与静态场正交的平面,其演化时间短。 然后,足以使磁化旋转例如180度的第三RF pi脉冲形成回波(在一些实施例中,第二和第三脉冲来自与第一脉冲相同的信号,但是相位偏移0,90,180 ,或270度以减少信号伪影),以形象人体。