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首页> 外文期刊>The Journal of Experimental Biology >Patterns of variation in feeding strike kinematics of juvenile ghost praying mantis (Phyllocrania paradoxa): are components of the strike stereotypic?
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Patterns of variation in feeding strike kinematics of juvenile ghost praying mantis (Phyllocrania paradoxa): are components of the strike stereotypic?

机译:幼年鬼螳螂(Phyllocrania paradoxa)的进食罢工运动学变化模式:罢工是成见的吗?

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Functional systems, such as feeding mechanics, often involve the evolution of several components of the musculoskeletal system that are moved in coordination to capture prey. Because these systems often involve the quick movement of several structures, some feeding systems have been hypothesized to be stereotypic. While the motor activity patterns are often stereotyped, the subsequent kinematics can be variable, many times in response to variation in prey stimulus (e.g. prey position). Patterns of feeding kinematics have been well studied among vertebrates, with less attention on invertebrate systems. The goal of this study was to examine the amount of stereotypy in the feeding strike kinematics of praying mantises. We filmed eight juvenile ghost praying mantises (Phyllocrania paradoxa) at 1000 Hz across several days within instar 7. We digitized several points that represent the movement of the coxa, trochanter-femur and tibia of the raptorial foreleg to obtain a set of kinematics including angles and angular velocities of the joint, as well as body lunge. Using the coefficient of variation, we found less stereotypy in the approach stage of the strike compared with the sweep. Using Bonferroni-corrected Pearson's correlations of kinematics with prey position, we found few traits related to prey position with the exception of some kinematics of the coxa joint and the amount of lunge used during the strike. Our results suggest that several components of the praying mantis strike are stereotypic, while others exhibit flexibility to ensure successful capture of the prey.
机译:诸如饲喂机械师之类的功能系统通常涉及肌肉骨骼系统中几个组成部分的进化,这些组成部分协同移动以捕获猎物。由于这些系统通常涉及几个结构的快速移动,因此某些进料系统被认为是定型的。虽然运动活动模式经常被刻板印象,但随后的运动学可以根据猎物刺激的变化(例如猎物位置)多次变化。在脊椎动物中,对运动学的进食模式进行了充分的研究,对无脊椎动物系统的关注较少。这项研究的目的是检查螳螂的进食罢工运动学中的定型观念。我们在幼虫7的几天内以1000 Hz的频率拍摄了八只少年鬼螳螂(Phyllocrania paradoxa)。我们将代表悬垂前肢的髋,股骨转子和胫骨运动的几个点数字化,以获得包括角度的运动学和关节的角速度,以及身体弓步。使用变异系数,我们发现在罢工接近阶段,与扫荡相比,刻板印象更少。使用Bonferroni校正的运动学与猎物位置的Pearson相关性,我们发现与猎物位置有关的特征很少,除了一些髋关节运动学和在打击过程中使用的弓步量。我们的结果表明,螳螂罢工的几个组成部分是刻板印象,而其他组成部分则具有确保成功捕获猎物的灵活性。

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