Okonogi Toya, Nakayama Ryota, Sasaki Takuya, Ikegaya Yuji
Laboratory of Chemical Pharmacology, Graduate School of Pharmaceutical Sciences, The University of Tokyo, Tokyo, Japan.
Precursory Research for Embryonic Science and Technology, Japan Science and Technology Agency, Kawaguchi, Japan.
Front Behav Neurosci. 2018 Apr 3;12:62. doi: 10.3389/fnbeh.2018.00062. eCollection 2018.
Elevated plus maze (EPM) tests have been used to assess animal anxiety levels. Little information is known regarding how physiological activity patterns of the brain-body system are altered during EPM tests. Herein, we monitored cortical local field potentials (LFPs), electrocardiograms (ECGs), electromyograms (EMGs), and respiratory signals in individual mice that were repeatedly exposed to EPM tests. On average, mouse heart rates were higher in open arms. In closed arms, the mice occasionally showed decreased heart and respiratory rates lasting for several seconds or minutes, characterized as low-peripheral activity states of peripheral signals. The low-activity states were observed only when the animals were in closed arms, and the frequencies of the states increased as the testing days proceeded. During the low-activity states, the delta and theta powers of cortical LFPs were significantly increased and decreased, respectively. These results demonstrate that cortical oscillations crucially depend on whether an animal exhibits low-activity states in peripheral organs rather than the EPM arm in which the animal is located. These results suggest that combining behavioral tests with physiological makers enables a more accurate evaluation of rodent mental states.
高架十字迷宫(EPM)试验已被用于评估动物的焦虑水平。关于在EPM试验期间脑-体系统的生理活动模式如何改变,目前所知甚少。在此,我们监测了反复接受EPM试验的个体小鼠的皮层局部场电位(LFP)、心电图(ECG)、肌电图(EMG)和呼吸信号。平均而言,小鼠在开放臂中的心率较高。在封闭臂中,小鼠偶尔会出现持续数秒或数分钟的心率和呼吸频率下降,其特征为外周信号的低外周活动状态。仅当动物处于封闭臂中时才观察到低活动状态,并且随着测试天数的增加,这些状态的频率也增加。在低活动状态期间,皮层LFP的δ波和θ波功率分别显著增加和降低。这些结果表明,皮层振荡关键取决于动物在外周器官中是否表现出低活动状态,而不是动物所处的EPM臂。这些结果表明,将行为测试与生理指标相结合能够更准确地评估啮齿动物的精神状态。