Sun Jin-Bo, Cheng Chen, Tian Qian-Qian, Yuan Hang, Yang Xue-Juan, Deng Hui, Guo Xiao-Yu, Cui Ya-Peng, Zhang Meng-Kai, Yin Zi-Xin, Wang Cong, Qin Wei
Engineering Research Center of Molecular and Neuro Imaging of the Ministry of Education, School of Life Sciences and Technology, Xidian University, Xi'an, China.
Intelligent Non-invasive Neuromodulation Technology and Transformation Joint Laboratory, Xidian University, Xi'an, China.
Front Neurosci. 2021 Dec 23;15:790793. doi: 10.3389/fnins.2021.790793. eCollection 2021.
Working memory (WM) is one of the core components of higher cognitive functions. There exists debate regarding the extent to which current techniques can enhance human WM capacity. Here, we examined the WM modulation effects of a previously less studied technique, transcutaneous auricular vagus nerve stimulation (taVNS). In experiment 1, a within-subject study, we aimed to investigate whether and which stimulation protocols of taVNS can modulate spatial WM performance in healthy adults. Forty-eight participants performed baseline spatial n-back tasks (1, 3-back) and then received online taVNS, offline taVNS, or sham stimulation before or during (online group) the posttest of spatial n-back tasks in random order. Results showed that offline taVNS could significantly increase hits in spatial 3-back task, whereas no effect was found in online taVNS or sham group. No significant taVNS effects were found on correct rejections or reaction time of accurate trials (aRT) in both online and offline protocols. To replicate the results found in experiment 1 and further investigate the generalization effect of offline taVNS, we carried out experiment 2. Sixty participants were recruited and received offline taVNS or offline earlobe stimulation in random order between baseline and posttests of behavioral tests (spatial/digit 3-back tasks). Results replicated the findings; offline taVNS could improve hits but not correct rejections or aRT in spatial WM performance, which were found in experiment 1. However, there were no significant stimulation effects on digit 3-back task. Overall, the findings suggest that offline taVNS has potential on modulating WM performance.
工作记忆(WM)是高级认知功能的核心组成部分之一。关于当前技术能在多大程度上增强人类工作记忆容量,存在争议。在此,我们研究了一种此前较少研究的技术——经皮耳迷走神经刺激(taVNS)对工作记忆的调节作用。在实验1中,这是一项被试内研究,我们旨在探究taVNS的哪些刺激方案以及是否能调节健康成年人的空间工作记忆表现。48名参与者先进行基线空间n-back任务(1-back、3-back),然后在空间n-back任务后测之前或期间(在线组)以随机顺序接受在线taVNS、离线taVNS或假刺激。结果显示,离线taVNS能显著增加空间3-back任务中的命中次数,而在线taVNS组或假刺激组未发现此效应。在在线和离线方案中,taVNS对正确拒斥或准确试验的反应时间(aRT)均未产生显著影响。为了重复实验1的结果并进一步探究离线taVNS的泛化效应,我们进行了实验2。招募了60名参与者,在行为测试(空间/数字3-back任务)的基线和后测之间以随机顺序接受离线taVNS或离线耳垂刺激。结果重复了之前的发现:离线taVNS能改善空间工作记忆表现中的命中次数,但对正确拒斥或aRT没有影响,这与实验1的结果一致。然而,对数字3-back任务没有显著的刺激效应。总体而言,研究结果表明离线taVNS在调节工作记忆表现方面具有潜力。