首页> 外文期刊>The Journal of Experimental Biology >Pelvic girdle mobility of cryptodire and pleurodire turtles during walking and swimming
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Pelvic girdle mobility of cryptodire and pleurodire turtles during walking and swimming

机译:步行和游泳期间隐crypto和胸膜龟的骨盆带活动性

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摘要

Movements of the pelvic girdle facilitate terrestrial locomotor performance in a wide range of vertebrates by increasing hind limb excursion and stride length. The extent to which pelvic movements contribute to limb excursion in turtles is unclear because the bony shell surrounding the body presents a major obstacle to their visualization. In the Cryptodira, which are one of the two major lineages of turtles, pelvic anatomy indicates the potential for rotation inside the shell. However, in the Pleurodira, the other major suborder, the pelvis shows a derived fusion to the shell, preventing pelvic motion. In addition, most turtles use their hind limbs for propulsion during swimming as well as walking, and the different locomotor demands between water and land could lead to differences in the contributions of pelvic rotation to limb excursion in each habitat. To test these possibilities, we used X-ray reconstruction of moving morphology (XROMM) to compare pelvic mobility and femoral motion during walking and swimming between representative species of cryptodire (Pseudemys concinna) and pleurodire (Emydura subglobosa) turtles. We found that the pelvis yawed substantially in cryptodires during walking and, to a lesser extent, during swimming. These movements contributed to greater femoral protraction during both walking and swimming in cryptodires when compared with pleurodires. Although factors related to the origin of pelvic-shell fusion in pleurodires are debated, its implications for their locomotor function may contribute to the restriction of this group to primarily aquatic habits.
机译:骨盆带的运动通过增加后肢偏移和步幅长度,促进了许多脊椎动物的陆地运动能力。骨盆运动对海龟肢体运动的影响程度尚不清楚,因为围绕身体的骨壳对其可视化构成了主要障碍。在龟的两个主要血统之一的隐鱼中,骨盆解剖表明其在壳内旋转的可能性。但是,在另一个主要亚纲Pleurodira中,骨盆显示出与外壳的融合,阻止了骨盆运动。此外,大多数海龟在游泳和散步时都会用其后肢推进,水和土地之间的运动需求不同可能会导致盆腔旋转对每个栖息地肢体偏移的贡献不同。为了测试这些可能性,我们使用了X射线运动形态重建(XROMM),以比较在隐性(Pseudemys concinna)和胸膜甲(Emydura subglobosa)龟的代表性物种之间行走和游泳期间的骨盆活动性和股动。我们发现,在行走过程中,以及在较小程度上,游泳过程中,骨盆在偏隐状态下基本偏航。与胸膜炎相比,这些运动在隐球菌的行走和游泳过程中导致更大的股骨伸直。尽管与胸膜腔骨盆融合融合的起源有关的因素尚有争议,但其对运动功能的影响可能有助于限制该人群的主要水生习性。

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