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

机译:小波相干的近红外光谱(NIRS)在体感区域中的双边连接

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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(NIRS)已用于医学成像中,以获取大脑皮层的充氧和血液动力学反应。该技术已应用于大脑研究中的皮质激活检测和功能连接。尽管在功能连接方面取得了一些进展,但是大多数研究都集中在额叶前额叶,而对体感区(S1)的研究很少。因此,本研究的目的是通过使用NIRS和有害刺激来评估体感区域中的双边连接性。在针刺刺激过程中使用近红外光谱法研究了11位健康受试者,以安全地诱发受试者疼痛。设计基于小波变换相干性(WTC)的多尺度分析,以评估左右s1区域内相应通道对的功能连通性。针刺刺激后,体感区的皮质激活较高,这与相似的研究一致。对侧通道对产生的同源信号之间的时频域相干性显示出两个主要周期(3.2 s和12.8 s),具有较高的相干性。根据WTC分析,还发现这些时期的连贯性增长与任务相关。这项研究为使用NIRS研究疼痛感知的脑血流动力学反应的研究领域做出了贡献,并证明了使用小波变换作为研究大脑皮质功能性侧化的方法。

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