...
首页> 外文期刊>The Journal of Experimental Biology >Ontogenetic scaling of locomotor kinetics and kinematics of the ostrich (Struthio camelus)
【24h】

Ontogenetic scaling of locomotor kinetics and kinematics of the ostrich (Struthio camelus)

机译:鸵鸟(Struthio camelus)运动动力学和运动学的自体成因标度

获取原文
获取原文并翻译 | 示例

摘要

Kinematic and kinetic parameters of running gait were investigated through growth in the ostrich, from two weeks up to 10 months of age, in order to investigate the effects of increasing body size. Ontogenetic scaling relationships were compared with published scaling relationships found to exist with increasing body size between species to determine whether dynamic similarity is maintained during growth. During the study, ostrich mass (M-b) ranged from 0.7 kg to 108.8 kg. Morphological measurements showed that lengths scaled with positive allometry during growth (hip height alpha M-b(0.40); foot segment length alpha M-b(0.40); tarsometatarsus length alpha M-b(0.41); tibiotarsus length alpha M-b(0.38); femur length alpha M-b(0.37)), significantly exceeding the close to geometric scaling observed between mammalian and avian species of increasing body size. Scaling of kinematic variables largely agreed with predicted scaling for increasing size and demonstrated relationships close to dynamic similarity and, as such, ontogenetic scaling of locomotor parameters was similar to that observed with increasing body mass between species. However, the ways in which these scaling trends were achieved were very different, with ontogenetic scaling of locomotor mechanics largely resulting from simple scaling of the limb segments rather than postural changes, likely to be due to developmental constraints. Small deviations from dynamic similarity of kinematic parameters and a reduction in the predicted scaling of limb stiffness (alpha M-b(0.59)) were found to be accounted for by the positive allometric scaling of the limb during growth.
机译:通过研究鸵鸟从两周到10个月大的生长情况,研究了步态的运动学和动力学参数,以研究增加体型的影响。将个体遗传比例关系与已发现的比例关系进行比较,发现比例关系随着物种之间的体型增加而存在,以确定在生长过程中是否保持动态相似性。在研究过程中,鸵鸟的体重(M-b)为0.7千克至108.8千克。形态学测量表明,其长度在生长过程中呈正变构关系成比例(臀围高度αMb(0.40);脚节长度αMb(0.40); some骨长度αMb(0.41);胫骨tar长度αMb(0.38);股骨长度αMb( 0.37)),大大超过了哺乳动物和禽类体型不断增加之间观察到的接近几何比例。运动变量的缩放在很大程度上与增加尺寸的预测缩放一致,并显示出与动态相似性接近的关系,因此,运动参数的个体发生缩放与物种之间体重增加所观察到的相似。但是,实现这些缩放趋势的方式非常不同,运动力学的本体缩放主要是由于肢体段的简单缩放而不是姿势变化而引起的,这很可能是由于发育限制所致。运动学参数的动态相似性的微小偏差以及肢体刚度的预计缩放比例的降低(αM-b(0.59))被发现是由于肢体在生长过程中的正异形体缩放比例引起的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号