Herold Fabian, Wiegel Patrick, Scholkmann Felix, Müller Notger G
Research Group Neuroprotection, German Center for Neurodegenerative Diseases (DZNE), Magdeburg 39120, Germany.
Department of Sport Science, University of Freiburg, Freiburg 79117, Germany.
J Clin Med. 2018 Nov 22;7(12):466. doi: 10.3390/jcm7120466.
For cognitive processes to function well, it is essential that the brain is optimally supplied with oxygen and blood. In recent years, evidence has emerged suggesting that cerebral oxygenation and hemodynamics can be modified with physical activity. To better understand the relationship between cerebral oxygenation/hemodynamics, physical activity, and cognition, the application of state-of-the art neuroimaging tools is essential. Functional near-infrared spectroscopy (fNIRS) is such a neuroimaging tool especially suitable to investigate the effects of physical activity/exercises on cerebral oxygenation and hemodynamics due to its capability to quantify changes in the concentration of oxygenated hemoglobin (oxyHb) and deoxygenated hemoglobin (deoxyHb) non-invasively in the human brain. However, currently there is no clear standardized procedure regarding the application, data processing, and data analysis of fNIRS, and there is a large heterogeneity regarding how fNIRS is applied in the field of exercise⁻cognition science. Therefore, this review aims to summarize the current methodological knowledge about fNIRS application in studies measuring the cortical hemodynamic responses during cognitive testing (i) prior and after different physical activities interventions, and (ii) in cross-sectional studies accounting for the physical fitness level of their participants. Based on the review of the methodology of 35 as relevant considered publications, we outline recommendations for future fNIRS studies in the field of exercise⁻cognition science.
为使认知过程良好运作,大脑获得最佳的氧气和血液供应至关重要。近年来,有证据表明身体活动可以改变脑氧合和血流动力学。为了更好地理解脑氧合/血流动力学、身体活动和认知之间的关系,应用最先进的神经成像工具至关重要。功能近红外光谱(fNIRS)就是这样一种神经成像工具,由于其能够在人脑中无创地量化氧合血红蛋白(oxyHb)和脱氧血红蛋白(deoxyHb)浓度的变化,特别适合研究身体活动/锻炼对脑氧合和血流动力学的影响。然而,目前关于fNIRS的应用、数据处理和数据分析尚无明确的标准化程序,并且在运动认知科学领域中fNIRS的应用方式存在很大的异质性。因此,本综述旨在总结当前关于fNIRS在测量认知测试期间(i)不同身体活动干预前后以及(ii)在考虑参与者体能水平的横断面研究中皮质血流动力学反应的应用的方法学知识。基于对35篇相关出版物方法学的综述,我们概述了运动认知科学领域未来fNIRS研究的建议。