Cano-Ferrer Xavier, Roberts Ruairí J V, French Alice S, de Folter Joost, Gong Hui, Nightingale Luke, Strange Amy, Imbert Albane, Prieto-Godino Lucia L
The Francis Crick Institute, London NW1 1BF, United Kingdom.
HardwareX. 2023 Jun 19;15:e00443. doi: 10.1016/j.ohx.2023.e00443. eCollection 2023 Sep.
Behaviour is the ultimate output of neural circuit computations, and therefore its analysis is a cornerstone of neuroscience research. However, every animal and experimental paradigm requires different illumination conditions to capture and, in some cases, manipulate specific behavioural features. This means that researchers often develop, from scratch, their own solutions and experimental set-ups. Here, we present OptoPi, an open source, affordable (∼ £600), behavioural arena with accompanying multi-animal tracking software. The system features highly customisable and reproducible visible and infrared illumination and allows for optogenetic stimulation. OptoPi acquires images using a Raspberry Pi camera, features motorised LED-based illumination, Arduino control, as well as irradiance monitoring to fine-tune illumination conditions with real time feedback. Our open-source software (BioImageProcessing) can be used to simultaneously track multiple unmarked animals both in on-line and off-line modes. We demonstrate the functionality of OptoPi by recording and tracking under different illumination conditions the spontaneous behaviour of larval zebrafish as well as adult flies and their first instar larvae an experimental animal that due to its small size and transparency has classically been hard to track. Further, we showcase OptoPi's optogenetic capabilities through a series of experiments using transgenic larvae.
行为是神经回路计算的最终输出,因此对其进行分析是神经科学研究的基石。然而,每种动物和实验范式都需要不同的光照条件来捕捉,在某些情况下还需要操纵特定的行为特征。这意味着研究人员通常要从头开始开发自己的解决方案和实验装置。在此,我们展示OptoPi,一个开源、价格实惠(约600英镑)的行为实验场,并配有多动物跟踪软件。该系统具有高度可定制且可重复的可见光和红外光照明功能,并允许进行光遗传学刺激。OptoPi使用树莓派相机获取图像,具有基于电动LED的照明、Arduino控制以及辐照度监测功能,可通过实时反馈微调照明条件。我们的开源软件(BioImageProcessing)可用于在线和离线模式下同时跟踪多个无标记动物。我们通过在不同光照条件下记录和跟踪斑马鱼幼体以及成年果蝇及其一龄幼虫(一种由于体型小和透明而传统上难以跟踪的实验动物)的自发行为,展示了OptoPi的功能。此外,我们通过使用转基因幼虫的一系列实验展示了OptoPi的光遗传学能力。