J. L. Chen: University of Zurich, Brain Research Institute, Winterthurerstrasse 190, 55H64, Zurich, CH-8057, Switzerland.
J Physiol. 2013 Oct 1;591(19):4689-98. doi: 10.1113/jphysiol.2013.259804. Epub 2013 Aug 12.
Two-photon calcium imaging in awake, head-fixed animals enables the measurement of neuronal activity during behaviour. Often, licking for the retrieval of water reward is used as a measurable report of the animal's decision during reward-driven behaviour. However, licking behaviour can induce severe motion artifacts that interfere with two-photon imaging of cellular activity. Here, we describe a simple method for the online correction of licking-induced focus shifts for two-photon calcium imaging of neocortical neurons in the head-fixed mouse. We found that licking causes a stereotyped drop of neocortical tissue, shifting neurons up to 20 μm out of focus. Based on the measurement of licking with a piezo film sensor, we developed a feedback model, which provides a corrective signal for fast optical focus adjustments with an electrically tunable lens. Using online correction with this feedback model, we demonstrate a reduction of licking-related focus changes below 3 μm, minimizing motion artifact contamination of cellular calcium signals. Focus correction with a tunable lens is a simple and effective method to improve the ability to monitor neuronal activity during reward-based behaviour.
在清醒、头部固定的动物中进行双光子钙成像,可实现在行为过程中测量神经元活动。通常,舔舐以获取水奖励被用作可衡量的动物在奖励驱动行为中做出决策的报告。然而,舔舐行为会引起严重的运动伪影,干扰细胞活动的双光子成像。在这里,我们描述了一种简单的方法,用于在线校正头部固定小鼠新皮层神经元双光子钙成像中舔舐引起的焦点偏移。我们发现,舔舐会导致新皮层组织的刻板下降,使神经元偏离焦点多达 20 μm。基于对压电薄膜传感器测量的舔舐行为,我们开发了一种反馈模型,该模型提供了一个用于快速光学焦点调整的校正信号,使用电可调透镜。使用此反馈模型进行在线校正,我们证明了舔舐相关焦点变化减少到 3 μm 以下,最大限度地减少了细胞钙信号中运动伪影的污染。使用可调透镜进行焦点校正,是一种简单有效的方法,可提高在基于奖励的行为过程中监测神经元活动的能力。