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在无害和有害刺激后,头皮干扰来自大鼠大脑的近红外信号。

The Scalp Confounds Near-Infrared Signal from Rat Brain Following Innocuous and Noxious Stimulation.

作者信息

He Ji-Wei, Liu Hanli, Peng Yuan Bo

机构信息

Departments of Psychology, University of Texas at Arlington, Arlington, TX 76019, USA.

Department of Neurological Surgery, University of California San Francisco, 1700 Owens Street, San Francisco, CA 94158, USA.

出版信息

Brain Sci. 2015 Sep 29;5(4):387-99. doi: 10.3390/brainsci5040387.

Abstract

Functional near-infrared imaging (fNIRI) is a non-invasive, low-cost and highly portable technique for assessing brain activity and functions. Both clinical and experimental evidence suggest that fNIRI is able to assess brain activity at associated regions during pain processing, indicating a strong possibility of using fNIRI-derived brain activity pattern as a biomarker for pain. However, it remains unclear how, especially in small animals, the scalp influences fNIRI signal in pain processing. Previously, we have shown that the use of a multi-channel system improves the spatial resolution of fNIRI in rats (without the scalp) during pain processing. Our current work is to investigate a scalp effect by comparing with new data from rats with the scalp during innocuous or noxious stimulation (n = 6). Results showed remarkable stimulus-dependent differences between the no-scalp and intact-scalp groups. In conclusion, the scalp confounded the fNIRI signal in pain processing likely via an autonomic mechanism; the scalp effect should be a critical factor in image reconstruction and data interpretation.

摘要

功能近红外成像(fNIRI)是一种用于评估大脑活动和功能的非侵入性、低成本且高度便携的技术。临床和实验证据均表明,fNIRI能够在疼痛处理过程中评估相关区域的大脑活动,这表明利用fNIRI得出的大脑活动模式作为疼痛生物标志物具有很大可能性。然而,目前尚不清楚头皮如何影响疼痛处理过程中的fNIRI信号,尤其是在小动物中。此前,我们已经表明,在疼痛处理过程中,使用多通道系统可提高大鼠(无头皮)fNIRI的空间分辨率。我们目前的工作是通过与无害或有害刺激期间有头皮的大鼠的新数据进行比较(n = 6)来研究头皮效应。结果显示,无头皮组和完整头皮组之间存在显著的刺激依赖性差异。总之,头皮可能通过自主神经机制混淆疼痛处理过程中的fNIRI信号;头皮效应应该是图像重建和数据解释中的一个关键因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74c9/4701019/fdd47cbe6c66/brainsci-05-00387-g001.jpg

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