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Musculoskeletal modelling under an evolutionary perspective: deciphering the role of single muscle regions in closely related insects

机译:进化观点下的骨骼肌肉建模:破译单个肌肉区域在紧密相关昆虫中的作用

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摘要

Insects show a remarkable diversity of muscle configurations, yet the factors leading to this functional diversity are poorly understood. Here, we use musculoskeletal modelling to understand the spatio-temporal activity of an insect muscle in several dragonfly species and to reveal potential mechanical factors leading to a particular muscle configuration. Bite characteristics potentially show systematic signal, but absolute bite force is not correlated with size. Muscle configuration and inverse dynamics show that the wider relative area of muscle attachment and the higher activity of subapical muscle groups are responsible for this high bite force. This wider attachment area is, however, not an evolutionary trend within dragonflies. Our inverse dynamic data, furthermore, show that maximum bite forces most probably do not reflect maximal muscle force production capability in all studied species. The thin head capsule and the attachment areas of muscles most probably limit the maximum force output of the mandibular muscles.
机译:昆虫显示出明显的肌肉结构多样性,但导致这种功能多样性的因素却鲜为人知。在这里,我们使用肌肉骨骼建模来了解几种蜻蜓物种中昆虫肌肉的时空活动,并揭示导致特定肌肉配置的潜在机械因素。咬伤特征可能显示系统信号,但绝对咬合力与大小无关。肌肉构型和逆动力学表明,肌肉附着的相对面积较大和根尖下肌群的活动较高,是这种高咬合力的原因。但是,这种较宽的附着区域并不是蜻蜓内的进化趋势。此外,我们的逆动态数据显示,最大咬合力很可能不能反映所有研究物种的最大肌肉力产生能力。稀薄的头囊和肌肉的附着区域很可能会限制下颌肌肉的最大力量输出。

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