Steiner I, Bürgi C, Werffeli S, Dell'Omo G, Valenti P, Tröster G, Wolfer D P, Lipp H P
Institute of Anatomy and Center for Neuroscience, University of Zürich, Winterthurerstrasse 190, CH-8057, Zürich, Switzerland.
Physiol Behav. 2000 Dec;71(5):589-96. doi: 10.1016/s0031-9384(00)00409-1.
A detailed analysis of homing in pigeons and small mammals has remained difficult because the paths of the animals could not be reconstructed precisely. Here, we describe a lightweight global position system (GPS) data logger (35 g including battery and casing; 40 x 68 x 18 mm) that records the flight of pigeons and the path of dogs with an accuracy of +/-12 m. With one battery, the logger runs in continuous mode (1 fix/s) for 3.5 h and in power-saving mode (1 fix/5 s) for about 16 h, and stores a maximum of 100,000 data points that are downloaded to a PC. A module of our public domain software WINTRACK permits a detailed numerical and graphical analysis of path geometry, phases of resting and moving, and path similarity. The device can be adapted to different species provided that satellite signals can be received reliably and that the loggers can be recovered. We expect it to be useful for testing hypotheses about pigeon homing, assessing natural spatial behavior and orientation of many species, and anticipate further miniaturization.
由于无法精确重建鸽子和小型哺乳动物的归巢路径,对其归巢行为进行详细分析一直颇具难度。在此,我们介绍一种轻型全球定位系统(GPS)数据记录器(含电池和外壳重35克;尺寸为40×68×18毫米),它能以±12米的精度记录鸽子的飞行轨迹和狗的行动路径。一块电池供电时,该记录器在连续模式(每秒1次定位)下可运行3.5小时,在节能模式(每5秒1次定位)下约可运行16小时,最多可存储100,000个数据点,这些数据点可下载到个人电脑上。我们公共领域软件WINTRACK的一个模块允许对路径几何形状、休息和移动阶段以及路径相似度进行详细的数值和图形分析。只要能可靠接收卫星信号且能找回记录器,该设备就能适用于不同物种。我们预计它将有助于检验关于鸽子归巢的假说,评估许多物种的自然空间行为和定向,并期待其进一步小型化。