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Effects of fNIRS Processing Methods on Prefrontal Hemodynamics During Single and Dual Task Walking in Older Adults

机译:在老年人中行走的单次和双重任务期间前逆转血流动力学对近期血流动力学的影响

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摘要

functional near infrared spectroscopy (fNIRS) has been increasingly used to assess changes in the hemodynamic response during active walking in aging and disease populations. Key findings revealed that HbO2 in the prefrontal cortex (PFC) increased from single-task-walk (STW) to dual-task-walk (DTW) due to the greater cognitive demands inherent in the latter condition. However, previous studies utilized a limited and inconsistent number of algorithms and filters to remove artifacts from fNIRS-derived brain activation data. Critically, there is no gold standard for artifact removal at the present time, which reduces replicability and generalizability. To address this critical limitation, we have reanalyzed a large dataset of older adults (n=83) who underwent our walking protocol by using different hemodynamic conversion parameters (molar extinction coefficients and age and wavelength dependent differential pathlength factors) and applying different filters having various cut-off frequencies for artifact removal. On the extracted hemodynamic responses, namely oxygenated-hemoglobin (HbO2) and deoxygenated-hemoglobin (Hb), linear mixed effect model results indicated that task effects showed similar significant increases in HbO2 from STW to DTW (range of effect sizes was 0.59 to 0.64) and as well as the expected decline in Hb from STW to DTW (range of effect sizes was 0.18 to 0.32) irrespective of the methods used. In addition, the intraclass correlations suggested excellent reliability across methods (HbO2 range = 0.982 to 0.996; Hb range = 0.883 to 0.984). In conclusion, these findings provide strong support to previously published articles but also highlight the need to establish a gold standard for fNIRS processing.
机译:近红外光谱(FNIR)越来越多地用于评估活跃行走衰老和疾病群体期间血流动力学反应的变化。主要发现显示,由于后者条件中固有的更高的认知需求,从单任务步行(STW)中的单任务步行(STW)增加了从单任务步行(STW)中的HBO2增加了两次任务步行(DTW)。然而,先前的研究利用有限的和不一致的算法和滤波器来从Fnirs衍生的脑激活数据中删除伪影。批判性地,目前没有用于伪像去除的金标准,这降低了可复制性和概括性。为了解决这一关键限制,我们已经重新分析了一个大型成年人的大型数据集(n = 83),通过使用不同的血液动力转换参数(摩尔消光系数和年龄和波长依赖性差分路径)和应用不同的滤波器来接受我们的行走协议剪切频率拆除伪影。在提取的血流动力学反应中,即含氧 - 血红蛋白(HBO2)和脱氧 - 血红蛋白(HB),线性混合效果模型结果表明,任务效应从STW到DTW的HBO2相似的显着增加(效果大小为0.59至0.64)并且,无论使用的方法如何,STW到DTW的HB的预期下降(效果大小为0.182)。此外,脑内相关性表明,跨越方法的优异可靠性(HBO2范围= 0.982至0.996; HB范围= 0.883至0.984)。总之,这些调查结果为先前公布的文章提供了强大的支持,但也强调了为FNIR加工建立金标准的需要。

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