Soltanlou Mojtaba, Sitnikova Maria A, Nuerk Hans-Christoph, Dresler Thomas
Department of Psychology, University of Tübingen, Tübingen, Germany.
LEAD Graduate School & Research Network, University of Tübingen, Tübingen, Germany.
Front Psychol. 2018 Apr 3;9:277. doi: 10.3389/fpsyg.2018.00277. eCollection 2018.
In this review, we aim to highlight the application of functional near-infrared spectroscopy (fNIRS) as a useful neuroimaging technique for the investigation of cognitive development. We focus on brain activation changes during the development of mathematics and language skills in schoolchildren. We discuss how technical limitations of common neuroimaging techniques such as functional magnetic resonance imaging (fMRI) have resulted in our limited understanding of neural changes during development, while fNIRS would be a suitable and child-friendly method to examine cognitive development. Moreover, this technique enables us to go to schools to collect large samples of data from children in ecologically valid settings. Furthermore, we report findings of fNIRS studies in the fields of mathematics and language, followed by a discussion of the outlook of fNIRS in these fields. We suggest fNIRS as an additional technique to track brain activation changes in the field of educational neuroscience.
在本综述中,我们旨在强调功能近红外光谱技术(fNIRS)作为一种用于研究认知发展的有用神经成像技术的应用。我们关注学龄儿童数学和语言技能发展过程中的大脑激活变化。我们讨论了诸如功能磁共振成像(fMRI)等常见神经成像技术的技术局限性如何导致我们对发育过程中神经变化的理解有限,而fNIRS将是一种适合且对儿童友好的方法来检查认知发展。此外,该技术使我们能够前往学校,在生态有效环境中从儿童那里收集大量数据样本。此外,我们报告fNIRS在数学和语言领域的研究结果,随后讨论fNIRS在这些领域的前景。我们建议将fNIRS作为一种额外的技术,用于追踪教育神经科学领域的大脑激活变化。