Department of Biosciences, College of Science, Swansea University, Swansea SA2 8PP, UK
Department of Biosciences, College of Science, Swansea University, Swansea SA2 8PP, UK.
J R Soc Interface. 2018 Nov 7;15(148):20180578. doi: 10.1098/rsif.2018.0578.
Vultures are thought to form networks in the sky, with individuals monitoring the movements of others to gain up-to-date information on resource availability. While it is recognized that social information facilitates the search for carrion, how this facilitates the search for updrafts, another critical resource, remains unknown. In theory, birds could use information on updraft availability to modulate their flight speed, increasing their airspeed when informed on updraft location. In addition, the stylized circling behaviour associated with thermal soaring is likely to provide social cues on updraft availability for any bird operating in the surrounding area. We equipped five vultures with GPS and airspeed loggers to quantify the movements of birds flying in the same airspace. Birds that were socially informed on updraft availability immediately adopted higher airspeeds on entering the inter-thermal glide; a strategy that would be risky if birds were relying on personal information alone. This was embedded within a broader pattern of a reduction in airspeed (approx. 3 m s) through the glide, likely reflecting the need for low speed to sense and turn into the next thermal. Overall, this demonstrates (i) the complexity of factors affecting speed selection over fine temporal scales and (ii) that vultures respond to social information on the occurrence of energy in the aerial environment, which may reduce uncertainty in their movement decisions.
秃鹫在天空中形成网络,个体监测其他秃鹫的运动,以获得有关资源可用性的最新信息。虽然人们认识到社会信息有助于寻找腐肉,但这种信息如何有助于寻找另一种关键资源上升气流,目前仍不清楚。从理论上讲,鸟类可以利用有关上升气流可用性的信息来调节飞行速度,在得知上升气流位置时增加空速。此外,与热上升气流相关的风格化盘旋行为可能为在周围区域内飞行的任何鸟类提供关于上升气流可用性的社会线索。我们为五只秃鹫配备了 GPS 和空速记录器,以量化在同一空域中飞行的鸟类的运动。当进入热滑翔时,那些获得上升气流可用性的社会信息的鸟类会立即采用更高的空速;如果鸟类仅依靠个人信息,这种策略将是有风险的。这嵌入在滑翔过程中空速(约 3 米/秒)降低的更广泛模式中,这可能反映了需要低速来感知并转入下一个热区。总体而言,这表明(i)影响短时间尺度速度选择的因素的复杂性,以及(ii)秃鹫对空气中能量出现的社会信息做出反应,这可能会减少其运动决策的不确定性。