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Bilateral connectivity in the somatosensory region using near-infrared spectroscopy (NIRS) by wavelet coherence

机译:通过小波相干性使用近红外光谱(NIRS)的躯体感觉区域的双侧连接

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Near-infrared spectroscopy (NIRS) has been used in medical imaging to obtain oxygenation and hemodynamic response in the cerebral cortex. This technique has been applied in cortical activation detection and functional connectivity in brain research. Despite some advances in functional connectivity, most of the studies have focused on the prefrontal cortex and little has been done to study the somatosensory region (S1). For that reason, the aim of our present study is to assess bilateral connectivity in the somatosensory region by using NIRS and noxious stimulation. Eleven healthy subjects were investigated using near-infrared spectroscopy during an acupuncture stimulation procedure to safely induce pain in subjects. A multiscale analysis based on wavelet transform coherence (WTC) was designed to assess the functional connectivity of corresponding channel pairs within the left and right s1 region. The cortical activation in the somatosensory region was higher after the acupuncture stimulation, which was consistent with similar studies. The coherence in time-frequency domain between homologous signals generated by contralateral channel pairs revealed two main periods (3.2 s and 12.8 s) with high coherence. Based on the WTC analysis, it was also found that the coherence increase in these periods was task-related. This study contributes to the research field to investigate cerebral hemodynamic response of pain perception using NIRS and demonstrates the use of wavelet transform as a method to investigate functional lateralization in the cerebral cortex.
机译:近红外光谱法(NIRS)已在医学成像中被用来获得氧合和在大脑皮质的血液动力学反应。这种技术已在皮层激活检测和脑科学研究功能连接得到了应用。尽管在功能连接了一些进展,大部分的研究都集中在前额皮质和几乎没有做研究躯体感觉区(S1)。出于这个原因,我们目前研究的目的是利用NIRS和伤害性刺激,以评估体感地区的双边连接。利用近红外光谱的针灸刺激过程中一一健康者进行了调查,以安全地诱发疼痛科。 (WTC)基于小波变换的一致性的多尺度分析的目的是评估所述左和右S1区域内的对应信道对的功能连接。在躯体感觉区皮质兴奋是针灸刺激,这与同类研究一致后高。在通过信道对侧产生对同源信号之间的时间 - 频率域的相干揭示了与高相干性的两个主要周期(3.2秒和12.8 S)。根据世贸中心的分析,也发现在这些时期的连贯性增长任务有关。这项研究有助于研究领域使用NIRS研究疼痛知觉的脑血流动力学响应,并演示了如何使用的小波变换,以调查在大脑皮层功能偏侧化的方法。

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