Gore Sayali V, Del Rosario Hernández Thaís, Creton Robbert
Department of Molecular Biology, Cell Biology, and Biochemistry, Brown University, Providence, RI, United States.
Front Behav Neurosci. 2024 Mar 11;18:1320126. doi: 10.3389/fnbeh.2024.1320126. eCollection 2024.
Animals respond to various environmental cues. Animal behavior is complex, and behavior analysis can greatly help to understand brain function. Most of the available behavioral imaging setups are expensive, provide limited options for customization, and allow for behavioral imaging of one animal at a time.
The current study takes advantage of adult zebrafish as a model organism to study behavior in a novel behavioral setup allowing one to concurrently image 8 adult zebrafish.
Our results indicate that adult zebrafish show a unique behavioral profile in response to visual stimuli such as moving lines. In the presence of moving lines, the fish spent more time exploring the tank and spent more time toward the edges of the tanks. In addition, the fish moved and oriented themselves against the direction of the moving lines, indicating a negative optomotor response (OMR). With repeated exposure to moving lines, we observed a reduced optomotor response in adult zebrafish.
Our behavioral setup is relatively inexpensive, provides flexibility in the presentation of various animated visual stimuli, and offers improved throughput for analyzing behavior in adult zebrafish. This behavioral setup shows promising potential to quantify various behavioral measures and opens new avenues to understand complex behaviors.
动物会对各种环境线索做出反应。动物行为复杂,行为分析有助于深入了解大脑功能。现有的大多数行为成像设备价格昂贵,定制选项有限,且一次只能对一只动物进行行为成像。
本研究以成年斑马鱼作为模式生物,在一种新型行为装置中研究其行为,该装置可同时对8条成年斑马鱼进行成像。
我们的结果表明,成年斑马鱼在对诸如移动线条等视觉刺激做出反应时表现出独特的行为模式。在有移动线条的情况下,斑马鱼会花更多时间探索鱼缸,且更多时间靠近鱼缸边缘。此外,斑马鱼会逆着移动线条的方向游动并调整自身方向,这表明存在负向视动反应(OMR)。随着对移动线条的反复接触,我们观察到成年斑马鱼的视动反应有所减弱。
我们的行为装置相对便宜,在呈现各种动态视觉刺激方面具有灵活性,并且提高了分析成年斑马鱼行为的通量。这种行为装置在量化各种行为指标方面显示出良好的潜力,并为理解复杂行为开辟了新途径。