Arid-Land Agricultural Research Center, USDA-ARS, 21881 North Cardon Lane, Maricopa, AZ 85138, USA.
J Insect Sci. 2023 Jul 1;23(4). doi: 10.1093/jisesa/iead053.
Flight mills are widely used to investigate insect flight behavior. As technology advances, the means to build a computerized control system for a flight mill has become more accessible in terms of both price and availability of components. However, the specialized electronics and programming knowledge required to build such a system can still present an obstacle to interested parties. Here, we describe a simple and inexpensive flight mill control system that can be easily assembled and operated without specialized experience. The hardware and software components are built around an Arduino single-board microcontroller, which outputs raw data in the form of timestamped detections of rotations of the flight mill arm. This control system is suitable both as the basis for new flight mills and for replacing outdated computer controls on existing flight mills. Additionally, it can be used with any rotary flight mill design that uses an electronic sensor to count rotations.
飞行磨广泛用于研究昆虫的飞行行为。随着技术的进步,制造计算机化飞行磨控制系统的手段在价格和组件可用性方面变得更加容易获得。然而,构建这样的系统所需的专业电子和编程知识仍然可能对感兴趣的各方构成障碍。在这里,我们描述了一个简单且廉价的飞行磨控制系统,无需专业经验即可轻松组装和操作。硬件和软件组件围绕着 Arduino 单板微控制器构建,该微控制器以飞行磨臂旋转的定时检测形式输出原始数据。该控制系统既适合作为新型飞行磨的基础,也适合替换现有飞行磨上过时的计算机控制。此外,它可以与任何使用电子传感器来计数旋转的旋转式飞行磨设计一起使用。