Seifert Ludovic, Komar John, Crettenand Florent, Millet Grégoire
Centre d'Etude des Transformations des Activités Physiques et Sportives (CETAPS) - EA 3832, University of Rouen, Faculty of Sports Sciences, Mont Saint Aignan, France.
ISSUL Institute of Sport Sciences - Department of Physiology, Faculty of Biology and Medicine, University of Lausanne, Lausanne, Switzerland.
PLoS One. 2014 Sep 25;9(9):e107839. doi: 10.1371/journal.pone.0107839. eCollection 2014.
This study investigated behavioral adaptability, which could be defined as a blend between stability and flexibility of the limbs movement and their inter-limb coordination, when individuals received informational constraints. Seven expert breaststroke swimmers performed three 200-m in breaststroke at constant submaximal intensity. Each trial was performed randomly in a different coordination pattern: 'freely-chosen', 'maximal glide' and 'minimal glide'. Two underwater and four aerial cameras enabled 3D movement analysis in order to assess elbow and knee angles, elbow-knee pair coordination, intra-cyclic velocity variations of the center of mass, stroke rate and stroke length and inter-limb coordination. The energy cost of locomotion was calculated from gas exchanges and blood lactate concentration. The results showed significantly higher glide, intra-cyclic velocity variations and energy cost under 'maximal glide' compared to 'freely-chosen' instructional conditions, as well as higher reorganization of limb movement and inter-limb coordination (p<0.05). In the 'minimal glide' condition, the swimmers did not show significantly shorter glide and lower energy cost, but they exhibited significantly lower deceleration of the center of mass, as well as modified limb movement and inter-limb coordination (p<0.05). These results highlight that a variety of structural adaptations can functionally satisfy the task-goal.
本研究调查了行为适应性,其可定义为个体在受到信息限制时四肢运动的稳定性与灵活性及其肢体间协调性的一种融合。七名专业蛙泳运动员以恒定的次最大强度进行了三次200米蛙泳。每次试验以不同的协调模式随机进行:“自由选择”、“最大滑行”和“最小滑行”。两台水下摄像机和四台空中摄像机进行三维运动分析,以评估肘部和膝部角度、肘膝对协调性、质心的周期内速度变化、划水频率和划水长度以及肢体间协调性。通过气体交换和血乳酸浓度计算运动的能量消耗。结果显示,与“自由选择”指导条件相比,“最大滑行”条件下的滑行、周期内速度变化和能量消耗显著更高,肢体运动和肢体间协调性的重新组织也更高(p<0.05)。在“最小滑行”条件下,游泳者的滑行没有显著缩短,能量消耗也没有显著降低,但他们的质心减速显著降低,肢体运动和肢体间协调性也有所改变(p<0.05)。这些结果表明,多种结构适应性在功能上可以满足任务目标。