Orbán Levente L, Plowright Catherine M S
School of Psychology, University of Ottawa;
School of Psychology, University of Ottawa.
J Vis Exp. 2014 Nov 15(93):e52033. doi: 10.3791/52033.
We present two methods for observing bumblebee choice behavior in an enclosed testing space. The first method consists of Radio Frequency Identification (RFID) readers built into artificial flowers that display various visual cues, and RFID tags (i.e., passive transponders) glued to the thorax of bumblebee workers. The novelty in our implementation is that RFID readers are built directly into artificial flowers that are capable of displaying several distinct visual properties such as color, pattern type, spatial frequency (i.e., "busyness" of the pattern), and symmetry (spatial frequency and symmetry were not manipulated in this experiment). Additionally, these visual displays in conjunction with the automated systems are capable of recording unrewarded and untrained choice behavior. The second method consists of recording choice behavior at artificial flowers using motion-sensitive high-definition camcorders. Bumblebees have number tags glued to their thoraces for unique identification. The advantage in this implementation over RFID is that in addition to observing landing behavior, alternate measures of preference such as hovering and antennation may also be observed. Both automation methods increase experimental control, and internal validity by allowing larger scale studies that take into account individual differences. External validity is also improved because bees can freely enter and exit the testing environment without constraints such as the availability of a research assistant on-site. Compared to human observation in real time, the automated methods are more cost-effective and possibly less error-prone.
我们展示了两种在封闭测试空间中观察大黄蜂选择行为的方法。第一种方法由内置在人造花中的射频识别(RFID)阅读器组成,这些人造花展示各种视觉线索,以及粘贴在大黄蜂工蜂胸部的RFID标签(即无源应答器)。我们实施过程中的新颖之处在于,RFID阅读器直接内置在能够展示多种不同视觉属性的人造花中,如颜色、图案类型、空间频率(即图案的“繁杂程度”)和对称性(本实验中未对空间频率和对称性进行操控)。此外,这些视觉展示与自动化系统相结合,能够记录无奖励和未经训练的选择行为。第二种方法是使用对运动敏感的高清摄像机记录在人造花处的选择行为。大黄蜂的胸部粘贴有编号标签以进行唯一识别。与RFID相比,这种实施方式的优势在于,除了观察着陆行为外,还可以观察诸如悬停和触角接触等其他偏好测量指标。这两种自动化方法都通过允许进行考虑个体差异的大规模研究来提高实验控制和内部效度。外部效度也得到了提高,因为蜜蜂可以不受限制地自由进出测试环境,例如无需现场有研究助理。与实时人工观察相比,自动化方法更具成本效益,而且可能出错率更低。