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Characterization of cardiac- and respiratory-driven cerebrospinal fluid motion based on asynchronous phase-contrast magnetic resonance imaging in volunteers

机译:基于异步相位对比磁共振成像在志愿者中的心脏和呼吸驱动脑脊液运动的表征

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摘要

Abstract Background A classification of cardiac- and respiratory-driven components of cerebrospinal fluid (CSF) motion has been demonstrated using echo planar imaging and time-spatial labeling inversion pulse techniques of magnetic resonance imaging (MRI). However, quantitative characterization of the two motion components has not been performed to date. Thus, in this study, the velocities and displacements of the waveforms of the two motions were quantitatively evaluated based on an asynchronous two-dimensional (2D) phase-contrast (PC) method followed by frequency component analysis. Methods The effects of respiration and cardiac pulsation on CSF motion were investigated in 7 healthy subjects under guided respiration using asynchronous 2D-PC 3-T MRI. The respiratory and cardiac components in the foramen magnum and aqueduct were separated, and their respective fractions of velocity and amount of displacement were compared. Results For velocity in the Sylvian aqueduct and foramen magnum, the fraction attributable to the cardiac component was significantly greater than that of the respiratory component throughout the respiratory cycle. As for displacement, the fraction of the respiratory component was significantly greater than that of the cardiac component in the aqueduct regardless of the respiratory cycle and in the foramen magnum in the 6- and 10-s respiratory cycles. There was no significant difference between the fractions in the 16-s respiratory cycle in the foramen magnum. Conclusions To separate cardiac- and respiratory-driven CSF motions, asynchronous 2D-PC MRI was performed under respiratory guidance. For velocity, the cardiac component was greater than the respiratory component. In contrast, for the amount of displacement, the respiratory component was greater.
机译:摘要通过磁共振成像(MRI)的回波平面成像和时间空间标记反转脉冲技术证明了脑脊髓液(CSF)运动的心脏和呼吸驱动组分的分类。然而,迄今尚未执行两个运动组件的定量表征。因此,在本研究中,基于异步二维(2D)相对对比(PC)方法,随后是频率分量分析的异步二维(2D)相对对比(PC)方法定量评估所述两个运动的波形的速度和位移。方法采用异步2D-PC 3-T MRI在引导呼吸下的7个健康受试者中研究了呼吸和心脏脉动对CSF运动的影响。分离了孔径胶质和途径的呼吸和心脏成分,并比较了它们各自的速度分数和置换量。 Sylvian Aqueduct和Foramen Magnum速度的结果,归属于心脏组分的级分显着大于整个呼吸循环的呼吸系统组分。对于位移,无论呼吸周期和6-次呼吸循环中的牙龈循环中,呼吸组分的一部分明显大于渡槽中的心脏成分。在孔子甲醇中的16-S呼吸循环中没有显着差异。结论以分离心脏和呼吸驱动的CSF运动,在呼吸指导下进行异步2D-PC MRI。对于速度,心脏组分大于呼吸系统组分。相反,对于位移量,呼吸系统组分更大。

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