Zhang Jiaojiao, Embray Lee, Yanovsky Yevgenij, Brankačk Jurij, Draguhn Andreas
Institute of Physiology and Pathophysiology, Medical Faculty Heidelberg, University of Heidelberg, Heidelberg, Germany.
Front Neurosci. 2021 Feb 12;15:613801. doi: 10.3389/fnins.2021.613801. eCollection 2021.
Experiments on pain processing in animals face several methodological challenges including the reproducible application of painful stimuli. Ideally, behavioral and physiological correlates of pain should be assessed in freely behaving mice, avoiding stress, fear or behavioral restriction as confounding factors. Moreover, the time of pain-evoked brain activity should be precisely related to the time of stimulation, such that pain-specific neuronal activity can be unambiguously identified. This can be achieved with laser-evoked heat stimuli which are also well established for human pain research. However, laser-evoked neuronal potentials are rarely investigated in awake unrestrained rodents, partially due to the practical difficulties in precisely and reliably targeting and triggering stimulation. In order to facilitate such studies we have developed a versatile stimulation and recording system for freely moving mice. The custom-made apparatus can provide both laser- and mechanical stimuli with simultaneous recording of evoked potentials and behavioral responses. Evoked potentials can be recorded from superficial and deep brain areas showing graded pain responses which correlate with pain-specific behavioral reactions. Non-painful mechanical stimuli can be applied as a control, yielding clearly different electrophysiological and behavioral responses. The apparatus is suited for simultaneous acquisition of precisely timed electrophysiological and behavioral evoked responses in freely moving mice. Besides its application in pain research it may be also useful in other fields of sensory physiology.
动物疼痛处理实验面临若干方法学挑战,包括可重复地施加疼痛刺激。理想情况下,应在自由活动的小鼠中评估疼痛的行为和生理相关性,避免将压力、恐惧或行为限制作为混杂因素。此外,疼痛诱发的脑活动时间应与刺激时间精确相关,以便能够明确识别疼痛特异性神经元活动。这可以通过激光诱发热刺激来实现,激光诱发热刺激在人类疼痛研究中也已得到充分确立。然而,在清醒无束缚的啮齿动物中很少研究激光诱发的神经元电位,部分原因是在精确且可靠地靶向和触发刺激方面存在实际困难。为了便于此类研究,我们开发了一种用于自由活动小鼠的通用刺激和记录系统。定制设备既可以提供激光刺激和机械刺激,同时记录诱发电位和行为反应。可以从显示分级疼痛反应的脑浅表和深部区域记录诱发电位,这些反应与疼痛特异性行为反应相关。非疼痛性机械刺激可作为对照施加,产生明显不同的电生理和行为反应。该设备适用于同时采集自由活动小鼠中精确定时的电生理和行为诱发反应。除了在疼痛研究中的应用外,它在感觉生理学的其他领域可能也有用。