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首页> 外文期刊>The Journal of Experimental Biology >Spatio-temporal patterns of antennal movements in the searching cockroach
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Spatio-temporal patterns of antennal movements in the searching cockroach

机译:搜寻蟑螂触角运动的时空分布

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To characterize the spatio-temporal patterns of antennal behavior in insects, the voluntary movement of both right and left antennae was examined in the cockroach Periplaneta americana. The position of the tip of the antenna (flagellum) is controlled by two mobile joints at its base (the scape and the pedicel) and by the neck. Horizontal and vertical components of movement at the antennal basal joints exhibited rhythmic activities during locomotory (walking) and non-locomotory (pausing) states in the searching animal. In both states, the horizontal component was slower than vertical one. Jointmanipulation experiments suggested that the faster vertical component is due mainly to movements of the scape-pedicel joint, while the slower horizontal component may originate from the head-scape joint. Large horizontal deflections of the antenna corresponded consistently with the yaw component of head movement. The trajectories of the antennae showed little patterned regularity in most animals. In a few cases, however, loop-like patterns appeared. The area scanned by an antenna was narrower in the walking state than in the pausing state, mainly because of a decrease in the horizontal angular range. Cross-correlation analyses revealed that the coupling between right and left horizontal antennal motor systems and that for the vertical systems were both significantly stronger in the walking state than during pausing. These results indicate that the spatio-temporal pattern of antennal movements changes dynamically depending on the animal's behavioral state.
机译:为了表征昆虫触角行为的时空模式,在美洲蟑螂中检查了左右触角的自愿运动。天线尖端(鞭毛)的位置由其底部的两个活动关节(花scape和花梗)和颈部控制。在寻找动物的运动(行走)和非运动(暂停)状态期间,触角基底关节处水平和垂直运动表现出节律活动。在这两种状态下,水平分量都比垂直分量慢。联合操纵实验表明,较快的垂直分量主要是由于花-关节的运动引起的,而较慢的水平分量可能来自于头scape关节。天线的大水平偏转与头部运动的偏航分量一致。在大多数动物中,触角的轨迹几乎没有规律的规律性。但是,在少数情况下,会出现类似环状的图案。天线扫描的区域在步行状态下比在暂停状态下更窄,这主要是由于水平角度范围的减小。互相关分析表明,在步行状态下,左右水平触角电机系统之间以及垂直系统之间的耦合都比暂停时强得多。这些结果表明,触角运动的时空模式根据动物的行为状态而动态变化。

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