Wahl Verena, Pfeffer Sarah E, Wittlinger Matthias
Institute of Neurobiology, University of Ulm, 89069, Ulm, Germany.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2015 Jun;201(6):645-56. doi: 10.1007/s00359-015-0999-2. Epub 2015 Apr 1.
Path integration, although inherently error-prone, is a common navigation strategy in animals, particularly where environmental orientation cues are rare. The desert ant Cataglyphis fortis is a prominent example, covering large distances on foraging excursions. The stride integrator is probably the major source of path integration errors. A detailed analysis of walking behaviour in Cataglyphis is thus of importance for assessing possible sources of errors and potential compensation strategies. Zollikofer (J Exp Biol 192:95-106, 1994a) demonstrated consistent use of the tripod gait in Cataglyphis, and suggested an unexpectedly constant stride length as a possible means of reducing navigation errors. Here, we extend these studies by more detailed analyses of walking behaviour across a large range of walking speeds. Stride length increases linearly and stride amplitude of the middle legs increases slightly linearly with walking speed. An initial decrease of swing phase duration is observed at lower velocities with increasing walking speed. Then it stays constant across the behaviourally relevant range of walking speeds. Walking speed is increased by shortening of the stance phase and of the stance phase overlap. At speeds larger than 370 mm s(-1), the stride frequency levels off, the duty factor falls below 0.5, and Cataglyphis transitions to running with aerial phases.
路径整合虽然本质上容易出错,但却是动物中常见的导航策略,尤其是在环境定向线索稀少的地方。沙漠蚁福氏箭蚁就是一个突出的例子,它在觅食远足中能覆盖很长的距离。步幅整合器可能是路径整合误差的主要来源。因此,详细分析福氏箭蚁的行走行为对于评估可能的误差来源和潜在的补偿策略具有重要意义。佐利科夫(《实验生物学杂志》192:95 - 106,1994a)证明了福氏箭蚁持续使用三脚架步态,并提出步长意外恒定可能是减少导航误差的一种方式。在这里,我们通过对大范围行走速度下的行走行为进行更详细的分析来扩展这些研究。步长随行走速度线性增加,中腿的步幅随行走速度略有线性增加。在较低速度下,随着行走速度增加,摆动相持续时间最初会减少。然后在行为相关的行走速度范围内保持恒定。行走速度通过缩短站立相和站立相重叠部分来提高。在速度大于370毫米/秒时,步频趋于平稳,占空因数降至0.5以下,福氏箭蚁转变为带有空中阶段的奔跑。