Department of Zoology, Faculty of Life Sciences, Tel-Aviv University, Tel-Aviv, 6997801, Israel.
Sagol School of Neuroscience, Tel-Aviv University, Tel-Aviv, 6997801, Israel.
Sci Rep. 2017 Mar 28;7(1):467. doi: 10.1038/s41598-017-00543-8.
Animals execute sensorimotor sequences to optimize performance of complex actions series. However, the sensory aspects of these sequences and their dynamic control are often poorly understood. We trained bats to fly to targets at different distances, and analysed their sensory behavior before and during flight to test whether they assess target distance before flight and how they adapt sensory acquisition in different situations. We demonstrate that bats' sensory acquisition during approach-flight is more flexible than previously described. We identified acoustic parameters that illustrate that bats assess target distance before takeoff. We show that bats adapt their echolocation approach-sequences to target distance - ignoring closer background objects. At shorter distances, bats initiated their echolocation approach-sequence with distance-appropriate parameters, thus entering the approach sensory sequence "in step". Our results suggest that in order to perform fine flight-manoeuvres, bats must maintain their sensorimotor plan in phase. To do this, they adapt acquisition according to target distance before initiating a complex sensory sequence based on a sensorimotor feedback-loop, even in complex acoustic environments, which impose other sensory reactions and restrictions. Though studying this in non-echolocating animals may prove difficult, such mechanisms are probably widely used in nature whenever complex series of sensorimotor actions are required.
动物通过执行感觉运动序列来优化复杂动作系列的表现。然而,这些序列的感觉方面及其动态控制通常理解得很差。我们训练蝙蝠飞向不同距离的目标,并在飞行前和飞行期间分析它们的感觉行为,以测试它们是否在飞行前评估目标距离,以及它们如何在不同情况下适应感觉获取。我们证明,蝙蝠在接近飞行期间的感觉获取比以前描述的更灵活。我们确定了一些声学参数,这些参数表明蝙蝠在起飞前评估目标距离。我们表明,蝙蝠会根据目标距离调整它们的回声定位接近序列 - 忽略更近的背景物体。在较短的距离内,蝙蝠会用适合距离的参数启动它们的回声定位接近序列,从而“同步”进入接近感觉序列。我们的结果表明,为了执行精细的飞行机动,蝙蝠必须在相位上保持其感觉运动计划。为此,它们根据目标距离调整获取,然后在基于感觉运动反馈回路的复杂感觉序列之前启动,即使在复杂的声学环境中,也会产生其他感觉反应和限制。尽管在非回声定位动物中研究这一点可能很困难,但在需要复杂的感觉运动序列时,这种机制可能在自然界中被广泛使用。