首页> 外文期刊>BioMed research international >Facial Vibrotactile Stimulation Activates the Parasympathetic Nervous Systems Study of Salivary Secretion, Heart Rate, Pupillary Reflex, and Functional Near-Infrared Spectroscopy Activity
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Facial Vibrotactile Stimulation Activates the Parasympathetic Nervous Systems Study of Salivary Secretion, Heart Rate, Pupillary Reflex, and Functional Near-Infrared Spectroscopy Activity

机译:面部触觉刺激激活唾液分泌,心率,瞳孔反射和功能性近红外光谱活动的副交感神经系统研究

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We previously found that the greatest salivation response in healthy human subjects is produced by facial vibrotactile stimulation of 89 Hz frequency with 1.9 mum amplitude (89 Hz-S), as reported by Hiraba et al. (2012,20011, and 2008). We assessed relationships between the blood flow to brain via functional near-infrared spectroscopy (fNIRS) in the frontal cortex and autonomic parameters. We used the heart rate (HRV: heart rate variability analysis in RR intervals), pupil reflex, and salivation as parameters, but the interrelation between each parameter and fNIRS measures remains unknown. We were to investigate the relationship in response to established paradigms using simultaneously each parameter-fNIRS recording in healthy human subjects. Analysis of fNIRS was examined by a comparison of various values between before and after various stimuli (89 Hz-S, 114 Hz-S, listen to classic music, and "Ahh" vocalization). We confirmed that vibrotactile stimulation (89 Hz) of the parotid glands led to the greatest salivation, greatest increase in heart rate variability, and the most constricted pupils. Furthermore, there were almost no detectable differences between fNIRS during 89 Hz-S and fNIRS during listening to classical music of fans. Thus, vibrotactile stimulation of 89 Hz seems to evoke parasympathetic activity.
机译:我们先前发现,健康人类受试者最大的唾液分泌反应是由面部震动触觉刺激产生的,频率为1.9振幅(89 Hz-S)的89 Hz频率,如Hiraba等人报道。 (2012,20011和2008)。我们通过额叶皮层中的功能性近红外光谱(fNIRS)和自主神经参数评估了流向大脑的血流量之间的关系。我们使用心率(HRV:RR间隔中的心率变异性分析),瞳孔反射和流涎作为参数,但是每个参数与fNIRS度量之间的相互关系仍然未知。我们将同时使用健康人类受试者中的每个参数-fNIRS记录来调查对既定范例的响应关系。通过比较各种刺激(89 Hz-S,114 Hz-S,听古典音乐和“ Ahh”发声)之前和之后的各种值来检查fNIRS的分析。我们确认腮腺的触觉刺激(89 Hz)导致唾液分泌最多,心率变异性增加最大,瞳孔最狭窄。此外,在89 Hz-S期间的fNIRS与听歌迷的古典音乐期间的fNIRS之间几乎没有可检测到的差异。因此,89 Hz的触觉刺激似乎引起了副交感神经活动。

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