首页> 美国卫生研究院文献>Frontiers in Neuroscience >The Effect of Low-Frequency Physiological Correction on the Reproducibility and Specificity of Resting-State fMRI Metrics: Functional Connectivity ALFF and ReHo
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The Effect of Low-Frequency Physiological Correction on the Reproducibility and Specificity of Resting-State fMRI Metrics: Functional Connectivity ALFF and ReHo

机译:低频生理校正对静息状态功能磁共振成像指标的可重复性和特异性的影响:功能连接性ALFF和ReHo

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摘要

The resting-state fMRI (rs-fMRI) signal is affected by a variety of low-frequency physiological phenomena, including variations in cardiac-rate (CRV), respiratory-volume (RVT), and end-tidal CO2 (PETCO2). While these effects have become better understood in recent years, the impact that their correction has on the quality of rs-fMRI measurements has yet to be clarified. The objective of this paper is to investigate the effect of correcting for CRV, RVT and PETCO2 on the rs-fMRI measurements. Nine healthy subjects underwent a test-retest rs-fMRI acquisition using repetition times (TRs) of 2 s (long-TR) and 0.323 s (short-TR), and the data were processed using eight different physiological correction strategies. Subsequently, regional homogeneity (ReHo), amplitude of low-frequency fluctuation (ALFF), and resting-state connectivity of the motor and default-mode networks are calculated for each strategy. Reproducibility is calculated using intra-class correlation and the Dice Coefficient, while the accuracy of functional-connectivity measures is assessed through network separability, sensitivity and specificity. We found that: (1) the reproducibility of the rs-fMRI measures improved significantly after correction for PETCO2; (2) separability of functional networks increased after PETCO2 correction but was not affected by RVT and CRV correction; (3) the effect of physiological correction does not depend on the data sampling-rate; (4) the effect of physiological processes and correction strategies is network-specific. Our findings highlight limitations in our understanding of rs-fMRI quality measures, and underscore the importance of using multiple quality measures to determine the optimal physiological correction strategy.
机译:静止状态fMRI(rs-fMRI)信号受多种低频生理现象的影响,包括心率(CRV),呼吸量(RVT)和潮气末CO2(PETCO2)的变化。尽管近年来已经更好地理解了这些影响,但仍未弄清其校正对rs-fMRI测量质量的影响。本文的目的是研究校正CRV,RVT和PETCO2对rs-fMRI测量的影响。 9名健康受试者接受了2s(长TR)和0.323s(短TR)的重复时间(TR)的重测rs-fMRI采集,并使用八种不同的生理校正策略处理了数据。随后,针对每种策略计算区域同质性(ReHo),低频波动幅度(ALFF)以及电机和默认模式网络的静态连接。可重复性是使用类内相关性和骰子系数来计算的,而功能连接性度量的准确性是通过网络的可分离性,敏感性和特异性来评估的。我们发现:(1)校正PETCO2后,rs-fMRI措施的可重复性显着提高; (2)PETCO2校正后功能网络的可分离性增加,但不受RVT和CRV校正的影响; (3)生理校正的效果不取决于数据采样率; (4)生理过程和纠正策略的效果是特定于网络的。我们的发现突显了我们对rs-fMRI质量指标的理解的局限性,并强调了使用多种质量指标来确定最佳生理校正策略的重要性。

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