Fry Steven N, Rohrseitz Nicola, Straw Andrew D, Dickinson Michael H
Institute of Robotics and Intelligent Systems, ETH Zürich, Switzerland.
J Neurosci Methods. 2008 Jun 15;171(1):110-7. doi: 10.1016/j.jneumeth.2008.02.016. Epub 2008 Mar 8.
Modern neuroscience and the interest in biomimetic control design demand increasingly sophisticated experimental techniques that can be applied in freely moving animals under realistic behavioral conditions. To explore sensorimotor flight control mechanisms in free-flying fruit flies (Drosophila melanogaster), we equipped a wind tunnel with a Virtual Reality (VR) display system based on standard digital hardware and a 3D path tracking system. We demonstrate the experimental power of this approach by example of a 'one-parameter open loop' testing paradigm. It provided (1) a straightforward measure of transient responses in presence of open loop visual stimulation; (2) high data throughput and standardized measurement conditions from process automation; and (3) simplified data analysis due to well-defined testing conditions. Being based on standard hardware and software techniques, our methods provide an affordable, easy to replicate and general solution for a broad range of behavioral applications in freely moving animals. Particular relevance for advanced behavioral research tools originates from the need to perform detailed behavioral analyses in genetically modified organisms and animal models for disease research.
现代神经科学以及对仿生控制设计的兴趣需要越来越复杂的实验技术,这些技术可应用于在现实行为条件下自由活动的动物。为了探索自由飞行的果蝇(黑腹果蝇)的感觉运动飞行控制机制,我们为风洞配备了基于标准数字硬件的虚拟现实(VR)显示系统和3D路径跟踪系统。我们通过一个“单参数开环”测试范式举例说明了这种方法的实验能力。它提供了:(1)在存在开环视觉刺激时对瞬态反应的直接测量;(2)来自过程自动化的高数据吞吐量和标准化测量条件;以及(3)由于测试条件明确而简化的数据分析。基于标准的硬件和软件技术,我们的方法为自由活动动物的广泛行为应用提供了一种经济实惠、易于复制的通用解决方案。先进行为研究工具的特殊相关性源于在转基因生物和疾病研究动物模型中进行详细行为分析的需求。