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首页> 外文期刊>The Journal of Experimental Biology >Behavioural integration of auditory and antennal stimulation during phonotaxis in the field cricket Gryllus bimaculatus
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Behavioural integration of auditory and antennal stimulation during phonotaxis in the field cricket Gryllus bimaculatus

机译:田G光音过程中听觉和触觉刺激的行为整合

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摘要

Animals need to flexibly respond to stimuli from their environment without compromising behavioural consistency. For example, female crickets orienting toward a conspecific male's calling song in search of a mating partner need to stay responsive to other signals that provide information about obstacles and predators. Here, we investigate how spontaneously walking crickets and crickets engaging in acoustically guided goal-directed navigation, i.e. phonotaxis, respond to mechanosensory stimuli detected by their long antennae. We monitored walking behaviour of female crickets on a trackball during lateral antennal stimulation, which was achieved by moving a wire mesh transiently into reach of one antenna. During antennal stimulation alone, females reduced their walking speed, oriented toward the object and actively explored it with antennal movements. Additionally, some crickets initially turned away from the approaching object. Females responded in a similar way when the antennal stimulus was presented during ongoing phonotaxis: forward velocity was reduced and phonotactic steering was suppressed while the females turned toward and explored the object. Further, rapid steering bouts to individual chirps, typical for female phonotaxis, no longer occurred. Our data reveal that in this experimental situation, antennal stimulation overrides phonotaxis for extended time periods. Phonotaxis in natural environments, which require the integration of multiple sensory cues, may therefore be more variable than phonotaxis measured under ideal laboratory conditions. Combining this new behavioural paradigm with neurophysiological methods will show where the sensory-motor integration of antennal and acoustic stimulation occurs and how this is achieved on a mechanistic level.
机译:动物需要在不影响行为一致性的情况下灵活地响应环境刺激。例如,为寻找同伴伴侣而朝着同种雄性的主叫歌定向的雌需要对其他提供有关障碍物和掠食者信息的信号保持响应。在这里,我们研究了自发行走的and和参与声音引导的目标定向导航(即音位)的如何响应其长触角所检测到的机械感官刺激。我们在横向触角刺激过程中监测了母ball在轨迹球上的行走行为,这是通过将金属丝网暂时移入一个天线的触角来实现的。仅在触角刺激过程中,雌性就降低了步行速度,朝向物体,并通过触角运动积极探索。另外,一些最初从靠近的物体转开。当女性在进行视音反射期间出现触角刺激时,女性以类似的方式做出反应:当女性转向并探索该物体时,前进速度会降低,光音转向会受到抑制。此外,不再发生对典型的女性视音颤动的单个chi的快速转向。我们的数据表明,在这种实验情况下,触角刺激在较长的时间段内会取代音韵律。因此,自然环境中的音位偏差需要整合多个感官线索,因此与理想实验室条件下测得的音位偏差相比,其可变性可能更大。将这种新的行为范式与神经生理学方法相结合将显示出触角和听觉刺激的感觉运动整合发生在何处,以及如何在机械水平上实现。

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