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Variability of the hemodynamic response in infants: Influence of experimental design and stimulus complexity

机译:婴儿血液动力学反应的变异性:实验设计和刺激复杂性的影响

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Measuring brain activity in developmental populations remains a major challenge despite great technological advances. Among the numerous available methods, functional near-infrared spectroscopy (fNIRS), an imaging modality that probes the hemodynamic response, is a powerful tool for recording brain activity in a great variety of situations and populations. Neurocognitive studies with infants have often reported inverted hemodynamic responses, i.e. a decrease instead of an increase in regional blood oxygenation, but the exact physiological explanation and cognitive interpretation of this response remain unclear. Here, we first provide an overview of the basic principles of NIRS and its use in cognitive developmental neuroscience. We then review the infant fNIRS literature to show that the hemodynamic response is modulated by experimental design and stimulus complexity, sometimes leading to hemodynamic responses with non-canonical shapes. We also argue that this effect is further modulated by the age of participants, the cortical regions involved, and the developmental stage of the tested cognitive process. We argue that this variability needs to be taken into account when designing and interpreting developmental studies measuring the hemodynamic response.
机译:尽管技术进步很大,但测量发育人群的大脑活动仍然是一项重大挑战。在众多可用的方法中,功能性近红外光谱(fNIRS)是一种探测血液动力学反应的成像方式,是一种在各种情况和人群中记录大脑活动的强大工具。婴儿的神经认知研究通常报告了反向的血流动力学反应,即局部血液氧合水平下降而不是增加,但是对该反应的确切生理解释和认知解释仍不清楚。在这里,我们首先概述NIRS的基本原理及其在认知发育神经科学中的应用。然后,我们回顾了婴儿fNIRS文献,以表明血液动力学响应受实验设计和刺激复杂性的调节,有时会导致非典型形状的血液动力学响应。我们还认为,参与者的年龄,所涉及的皮层区域以及所测试的认知过程的发育阶段会进一步调节这种效应。我们认为,在设计和解释测量血液动力学反应的发育研究时,需要考虑这种变异性。

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