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与软体节肢动物爬行相关的运动模式。

Motor patterns associated with crawling in a soft-bodied arthropod.

机构信息

Department of Biology, 163 Packard Avenue, Tufts University, Medford, MA 02155, USA.

出版信息

J Exp Biol. 2010 Jul 1;213(Pt 13):2303-9. doi: 10.1242/jeb.039206.

Abstract

Soft-bodied animals lack distinct joints and levers, and so their locomotion is expected to be controlled differently from that of animals with stiff skeletons. Some invertebrates, such as the annelids, use functionally antagonistic muscles (circumferential and longitudinal) acting on constant-volume hydrostatics to produce extension and contraction. These processes form the basis for most theoretical considerations of hydrostatic locomotion in organisms including larval insects. However, caterpillars do not move in this way, and their powerful appendages provide grip independent of their dimensional changes. Here, we show that the anterograde wave of movement seen in the crawling tobacco hornworm, Manduca sexta, is mediated by co-activation of dorsal and ventral muscles within a body segment, rather than by antiphasic activation, as previously believed. Furthermore, two or three abdominal segments are in swing phase simultaneously, and the activities of motor neurons controlling major longitudinal muscles overlap in more than four segments. Recordings of muscle activity during natural crawling show that some are activated during both their shortening and elongation. These results do not support the typical peristaltic model of crawling, but they do support a tension-based model of crawling, in which the substrate is utilized as an anchor to generate propulsion.

摘要

软体动物缺乏明显的关节和杠杆,因此它们的运动方式预计与具有刚性骨骼的动物不同。一些无脊椎动物,如环节动物,使用功能拮抗的肌肉(环向和纵向)作用于恒定体积的流体静力学,以产生伸展和收缩。这些过程构成了大多数理论上对生物体(包括幼虫昆虫)的流体静力学运动的考虑基础。然而,毛毛虫并不是这样运动的,它们强大的附肢提供了与尺寸变化无关的抓握力。在这里,我们表明,在爬行的烟草天蛾(Manduca sexta)中看到的向前运动波是由一个体节内的背侧和腹侧肌肉的共同激活介导的,而不是以前认为的相反激活。此外,两个或三个腹部节段同时处于摆动阶段,控制主要纵向肌肉的运动神经元的活动在四个以上的节段中重叠。在自然爬行过程中记录的肌肉活动表明,一些肌肉在缩短和伸长过程中都被激活。这些结果不支持典型的蠕动模型,但它们确实支持一种基于张力的爬行模型,其中基质被用作产生推进力的锚点。

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