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正常衰老引起的血流动力学变化对功能性近红外光谱技术(fNIRS)对单词语义加工反应的影响探究

An Exploration of the Effect of Hemodynamic Changes Due to Normal Aging on the fNIRS Response to Semantic Processing of Words.

作者信息

Amiri Mahnoush, Pouliot Philippe, Bonnéry Clément, Leclerc Paul-Olivier, Desjardins Michèle, Lesage Frédéric, Joanette Yves

机构信息

Laboratory of Optical and Molecular Imaging, Biomedical Engineering, Polytechnique Montreal , Montreal, QC , Canada ; Laboratory of Neuropsychology of Language, Research Center; Aging Neuroscience, Institut Universitaire de Gériatrie de Montréal , Montreal, QC , Canada.

Laboratory of Optical and Molecular Imaging, Biomedical Engineering, Polytechnique Montreal , Montreal, QC , Canada ; Montreal Heart Institute , Montreal, QC , Canada.

出版信息

Front Neurol. 2014 Dec 1;5:249. doi: 10.3389/fneur.2014.00249. eCollection 2014.

Abstract

Like other neuroimaging techniques assessing cerebral blood oxygenation, near-infrared spectroscopy (NIRS) has been applied in many neurocognitive studies. With NIRS, neural activation can be explored indirectly via hemodynamic changes in the imaged region. In studies of aging, changes in baseline physiology and brain anatomy confound NIRS measures seeking to investigate age-related changes in neuronal activity. The field is thus hampered by the complexity of the aging process itself, and statistical inferences from functional data acquired by optical imaging techniques must be interpreted with care. Multimodal integration of NIRS with both structural and baseline physiological assessments is crucial to avoid misinterpreting neuroimaging signals. In this study, a combination of two different optical techniques, anatomical MRI and Arterial Spin Labeling (ASL), was used to investigate age-related changes in activation during a lexical-semantic processing task. Quantitative analysis revealed decreased baseline oxyhemoglobin and cerebral blood flow in the older adults. Using baseline physiology measures as regressors in the investigation of functional concentration changes when doing analyses of variance, we found significant changes in task-induced areas of activity. In the right hemisphere, more significant age-related activity was observed around the junction of the inferior frontal gyrus and inferior precentral sulcus, along with engagement of Wernicke's area. In the left hemisphere, the degree and extent of frontal activation, including the dorsolateral prefrontal cortex and inferior frontal gyrus, differed between age groups. Measuring background physiological differences and using their values as regressors in statistical analyses allowed a more appropriate, age-corrected understanding of the functional differentiations between age groups. Age-corrected baselines are thus essential to investigate which components of the NIRS signal are altered by aging.

摘要

与其他评估脑血氧合的神经成像技术一样,近红外光谱(NIRS)已应用于许多神经认知研究。通过NIRS,可以通过成像区域的血流动力学变化间接探索神经激活情况。在衰老研究中,基线生理学和脑解剖结构的变化会混淆旨在研究神经元活动中与年龄相关变化的NIRS测量结果。因此,该领域受到衰老过程本身复杂性的阻碍,并且必须谨慎解释通过光学成像技术获取的功能数据的统计推断。NIRS与结构和基线生理学评估的多模态整合对于避免错误解读神经成像信号至关重要。在本研究中,结合了两种不同的光学技术,即解剖学MRI和动脉自旋标记(ASL),来研究词汇语义处理任务期间与年龄相关的激活变化。定量分析显示,老年人的基线氧合血红蛋白和脑血流量降低。在进行方差分析时,将基线生理学测量值用作回归变量来研究功能浓度变化,我们发现任务诱发的活动区域有显著变化。在右半球,在下额回和中央前沟下部交界处周围观察到更显著的与年龄相关的活动,同时韦尼克区也被激活。在左半球,额叶激活的程度和范围,包括背外侧前额叶皮质和下额回,在不同年龄组之间存在差异。测量背景生理差异并将其值用作统计分析中的回归变量,可以更恰当地、经年龄校正地理解不同年龄组之间的功能差异。因此,经年龄校正的基线对于研究NIRS信号的哪些成分因衰老而改变至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/687e/4248672/70daeda4e1ea/fneur-05-00249-g001.jpg

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