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首页> 外文期刊>The Journal of Experimental Biology >Kinematics of phonotactic steering in the walking cricket Gryllus bimaculatus (de Geer)
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Kinematics of phonotactic steering in the walking cricket Gryllus bimaculatus (de Geer)

机译:步行Gryllus bimaculatus(de Geer)的视光转向运动学

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摘要

Female crickets, Gryllus bimaculatus, are attracted by the male calling song and approach singing males; a behaviour known as phonotaxis. Even tethered females walking on a trackball steer towards a computer-generated male song presented from their left or right side. High-speed video analysis showed how this auditory-evoked steering was integrated with walking. Typically all the front and middle legs showed kinematic adjustments during steering, with the trajectories tilted towards the side of acoustic stimulation. Furthermore, the average speed of the tarsi contralateral to song increased relative to the ipsilateral tarsi. Kinematic changes of the hind legs were small and may be a consequence of the front and middle leg adjustments. Although phonotactic steering generally led to stereotyped adjustments there were differences in the specific combination of kinematic changes in leg trajectories. The most reliable kinematic steering response was by the contralateral front leg, such that, during its swing phase the tarsus moved towards the side of acoustic stimulation through an increased forward rotation of the femur and an increased extension of the tibia. Relating the changes in tarsal positioning of each leg to the steering velocity of the animal indicated that typically the front and middle legs contralateral to song generated the turning forces. Phonotactic steering was integrated into forward walking without changes to the walking motor cycle.
机译:雌性calling,Gryllus bimaculatus,被雄性鸣叫和引人入胜的雄性吸引;所谓的视错觉行为。甚至在跟踪球上行走的被束缚的雌性,也会转向从左侧或右侧呈现的计算机生成的男性歌曲。高速视频分析表明,这种听觉诱发的转向与步行是如何整合在一起的。通常,在转向过程中,所有前腿和中腿都显示出运动学上的调整,并且轨迹朝着声学刺激的一侧倾斜。此外,相对于同侧睑板,与歌曲相对的睑板的平均速度增加。后腿的运动变化很小,可能是前腿和中腿调整的结果。尽管音律转向通常导致定型调整,但腿部运动学变化的特定组合存在差异。最可靠的运动学转向响应是通过对侧前腿进行的,因此,在大腿摆动期间,through骨会通过股骨的增加向前旋转和胫骨增加延伸而移向声音刺激一侧。将每条腿的骨位置的变化与动物的转向速度相关联表明,通常,与歌曲相对的前腿和中腿会产生旋转力。立体定向转向已集成到向前的步行中,而无需更改步行的摩托车。

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