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A low‐cost computer‐controlled robotic flower system for behavioral experiments

机译:用于行为实验的低成本计算机控制的机器人花卉系统

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摘要

Human observations during behavioral studies are expensive, time‐consuming, and error prone. For this reason, automatization of experiments is highly desirable, as it reduces the risk of human errors and workload. The robotic system we developed is simple and cheap to build and handles feeding and data collection automatically. The system was built using mostly off‐the‐shelf components and has a novel feeding mechanism that uses servos to perform refill operations. We used the robotic system in two separate behavioral studies with bumblebees (Bombus terrestris): The system was used both for training of the bees and for the experimental data collection. The robotic system was reliable, with no flight in our studies failing due to a technical malfunction. The data recorded were easy to apply for further analysis. The software and the hardware design are open source. The development of cheap open‐source prototyping platforms during the recent years has opened up many possibilities in designing of experiments. Automatization not only reduces workload, but also potentially allows experimental designs never done before, such as dynamic experiments, where the system responds to, for example, learning of the animal. We present a complete system with hardware and software, and it can be used as such in various experiments requiring feeders and collection of visitation data. Use of the system is not limited to any particular experimental setup or even species.
机译:行为研究期间的人类观察非常昂贵,耗时且容易出错。因此,非常需要自动化的实验,因为它可以减少人为错误和工作量的风险。我们开发的机器人系统结构简单,成本低廉,可以自动处理进料和数据收集。该系统主要使用现成的组件构建,并具有新颖的进纸机制,该机制使用伺服器执行重新填充操作。我们将机器人系统用于与大黄蜂(Bombus terrestris)进行的两个单独的行为研究中:该系统既用于蜜蜂的训练,又用于实验数据的收集。机器人系统可靠,我们的研究没有因技术故障而导致飞行失败。记录的数据易于应用于进一步分析。软件和硬件设计是开源的。近年来,廉价的开源原型平台的发展为实验设计提供了许多可能性。自动化不仅减少了工作量,而且还潜在地允许进行以前从未做过的实验设计,例如动态实验,其中系统会响应例如对动物的学习。我们提供了一个包含硬件和软件的完整系统,可以将其用于需要馈送器和访问数据收集的各种实验中。该系统的使用不限于任何特定的实验装置甚至物种。

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