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首页> 外文期刊>Hearing Research: An International Journal >Speech-evoked activation in adult temporal cortex measured using functional near-infrared spectroscopy (fNIRS): Are the measurements reliable?
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Speech-evoked activation in adult temporal cortex measured using functional near-infrared spectroscopy (fNIRS): Are the measurements reliable?

机译:使用功能性近红外光谱仪(fNIRS)对成人颞叶皮质的言语诱发激活进行测量:测量结果可靠吗?

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Functional near-infrared spectroscopy (fNIRS) is a silent, non-invasive neuroimaging technique that is potentially well suited to auditory research. However, the reliability of auditory-evoked activation measured using fNIRS is largely unknown. The present study investigated the test-retest reliability of speech-evoked fNIRS responses in normally-hearing adults. Seventeen participants underwent fNIRS imaging in two sessions separated by three months. In a block design, participants were presented with auditory speech, visual speech (silent speechreading), and audiovisual speech conditions. Optode arrays were placed bilaterally over the temporal lobes, targeting auditory brain regions. A range of established metrics was used to quantify the reproducibility of cortical activation patterns, as well as the amplitude and time course of the haemodynamic response within predefined regions of interest. The use of a signal processing algorithm designed to reduce the influence of systemic physiological signals was found to be crucial to achieving reliable detection of significant activation at the group level. For auditory speech (with or without visual cues), reliability was good to excellent at the group level, but highly variable among individuals. Temporal-lobe activation in response to visual speech was less reliable, especially in the right hemisphere. Consistent with previous reports, fNIRS reliability was improved by averaging across a small number of channels overlying a cortical region of interest. Overall, the present results confirm that fNIRS can measure speech-evoked auditory responses in adults that are highly reliable at the group level, and indicate that signal processing to reduce physiological noise may substantially improve the reliability of fNIRS measurements. (C) 2016 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license.
机译:功能性近红外光谱(fNIRS)是一种无声,无创的神经成像技术,可能非常适合听觉研究。但是,使用fNIRS测量的听觉诱发激活的可靠性在很大程度上尚不清楚。本研究调查了听力正常的成年人中语音诱发的fNIRS反应的重测信度。 17名参与者在两个疗程中接受了fNIRS成像,相隔三个月。在模块设计中,向参与者展示了听觉语音,视觉语音(静默语​​音朗读)和视听语音条件。将光电二极管阵列双向放置在颞叶上方,以听觉大脑区域为目标。使用一系列已建立的度量标准来量化皮质激活模式的可再现性,以及在预定的目标区域内的血液动力学响应的幅度和时间过程。人们发现,使用旨在减少全身生理信号影响的信号处理算法,对于在组水平上实现对重要激活的可靠检测至关重要。对于听觉言语(有或没有视觉提示),可靠性在小组水平上是好到极好,但个体之间差异很大。响应视觉语音的颞叶激活不太可靠,尤其是在右半球。与以前的报告一致,fNIRS的可靠性通过平均覆盖感兴趣皮层区域的少量通道的平均值得到改善。总体而言,目前的结果证实,fNIRS可以在成年人中测量在人群中高度可靠的语音诱发听觉反应,并表明减少生理噪声的信号处理可以大大提高fNIRS测量的可靠性。 (C)2016作者。由Elsevier B.V.发布。这是CC BY许可下的开放获取文章。

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