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根据学生或专业水平,视觉在男性古典舞者动态自发摇摆中的作用。

The contribution of vision in dynamic spontaneous sways of male classical dancers according to student or professional level.

作者信息

Golomer E, Dupui P, Séréni P, Monod H

机构信息

Laboratoire de Physiologie du Travail et du Sport, Université Paris VI, France.

出版信息

J Physiol Paris. 1999 May-Jun;93(3):233-7. doi: 10.1016/s0928-4257(99)80156-9.

Abstract

We investigated the involvement of vision in the regulation of dynamic equilibrium in male children and young adults performing a physical activity requiring a high level of spatial skill: self-induced body sways of ballet dancers on a free unstable platform, 45 professional male dancers (Paris Opera) participated in the study. They included two student groups (beginners and confirmed) and two performer groups (adolescent and adult). They maintained their equilibrium on the platform under different visual and position conditions. The displacement of the seesaw platform were calculated from accelerometer measures. Fast Fourier transform processing of stabilograms allowed spectral frequency analysis. The total spectrum energy and the energies of the three frequency bands (0-0.5 Hz, 0.5-2 Hz, 2-20 Hz) were determined. For all groups, ANOVA indicated that values were higher for eyes-closed than for eyes-open conditions. The visual dependence differed according to age: for 14-year-old students the postural control for dynamic equilibrium was less visually dependent than for 11-year-old students. The 18-year-old dancers, although professional, were more dependent on vision than 14-year-old student dancers. These 18-year-old dancers were still adolescent because they had recently undergone growth acceleration which could disturb their proprioceptive references and internal body representations. Thus, visual input may dominate over the other sensory inputs in the regulation of postural control.

摘要

我们研究了视觉在男性儿童和年轻成年人动态平衡调节中的作用,这些人进行了一项需要高水平空间技能的体育活动:芭蕾舞者在自由不稳定平台上的自我诱导身体摆动,45名专业男性舞者(巴黎歌剧院)参与了该研究。他们包括两个学生组(初学者和已确认者)和两个表演者组(青少年和成年人)。他们在不同的视觉和位置条件下在平台上保持平衡。跷跷板平台的位移通过加速度计测量来计算。对稳定图进行快速傅里叶变换处理以进行频谱频率分析。确定了总频谱能量和三个频段(0 - 0.5赫兹、0.5 - 2赫兹、2 - 20赫兹)的能量。对于所有组,方差分析表明闭眼条件下的值高于睁眼条件。视觉依赖性因年龄而异:对于14岁的学生,动态平衡的姿势控制比11岁的学生对视觉的依赖性更小。18岁的舞者虽然是专业的,但比14岁的学生舞者更依赖视觉。这些18岁的舞者仍处于青少年时期,因为他们最近经历了生长加速,这可能会干扰他们的本体感受参考和身体内部表征。因此,在姿势控制调节中,视觉输入可能比其他感觉输入占主导地位。

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