Murayama Yuta, Hu Lizhen, Sakatani Kaoru
Department of Electrical and Electronic Engineering, NEWCAT Research Institute, College of Engineering, Nihon University, Tokyo, Japan.
Department of Neurological Surgery, School of Medicine, Nihon University, Tokyo, Japan.
Adv Exp Med Biol. 2016;923:209-214. doi: 10.1007/978-3-319-38810-6_28.
In order to clarify the central mechanism controlling respiratory rate during mental stress, we examined the relation between prefrontal cortex (PFC) activity and respiratory rate during mental arithmetic (MA) tasks. Employing two-channel near-infrared spectroscopy (NIRS), we measured hemoglobin (Hb) concentration changes in the bilateral PFC during MA tasks in normal adults. To evaluate asymmetry of the PFC activity, we calculated the laterality index (LI); (R-L)/(R + L) of oxy-Hb concentration changes (R = right, L = left); positive LI scores indicate right-dominant activity, while negative scores indicate left-dominant activity. For measurements of respiratory rate, we employed a Kinect motion sensor (Microsoft). The MA tasks increased both oxy-Hb in the bilateral PFC and respiratory rate (p < 0.001). In addition, there was a significant correlation between LI and respiratory rate (r = 0.582, p < 0.02). These results indicate that the MA-induced activity in the right PFC was greater than that in the left PFC in subjects with large increases of respiratory rate, suggesting that the right PFC has a greater role in cerebral regulation of respiratory rate during mental stress.
为了阐明精神应激期间控制呼吸频率的中枢机制,我们研究了心算(MA)任务期间前额叶皮质(PFC)活动与呼吸频率之间的关系。我们采用双通道近红外光谱(NIRS)技术,测量了正常成年人在MA任务期间双侧PFC中的血红蛋白(Hb)浓度变化。为了评估PFC活动的不对称性,我们计算了偏侧性指数(LI);即氧合血红蛋白浓度变化的(R-L)/(R+L)(R=右侧,L=左侧);LI得分阳性表示右侧优势活动,而得分阴性表示左侧优势活动。对于呼吸频率的测量,我们使用了Kinect运动传感器(微软公司)。MA任务增加了双侧PFC中的氧合血红蛋白以及呼吸频率(p<0.001)。此外,LI与呼吸频率之间存在显著相关性(r=0.582,p<0.02)。这些结果表明,在呼吸频率大幅增加的受试者中MA诱导的右侧PFC活动大于左侧PFC活动,这表明右侧PFC在精神应激期间对呼吸频率的大脑调节中发挥着更大的作用。