Pellegrini B, Schena F
CeBiSM, Center of Bioengineering and Motor Science, University of Trento, Rovereto (TN), Italy.
J Sports Med Phys Fitness. 2005 Dec;45(4):467-75.
Air pistol shooting is a sport requiring extreme movement precision. The purpose of our study is to collect and analyze kinematic data of arm/gun complex during the pointing phase in order to characterize movement and between segment coordination by means of time and frequency domain analysis techniques.
Thirteen air pistol athletes participated to the recording sessions held at the 10 m shooting range. Kinematic data of neck, shoulder, elbow, wrist and gun were collected during the aiming phase using an optoelectronic motion capture system. Displacement series were split up in slow drift and tremor components. Amplitude of the movement of each segment and strength of the relationship between adjacent segments were estimated in time domain respectively by means of standard deviation and coefficient of regression. Moreover, coherence and phase spectral functions were calculated to assess between-segment coupling at different frequencies.
Significantly larger movements were seen for slow drift component with respect to tremor one for all segments especially for lateral movements. Higher between segment correlation were found for lateral direction and for slow drift component. The coherence calculated on vertical series of tremor component showed significant coupling at 1.5 Hz and 5-7 Hz with phase opposition between wrist and gun motion at 5-7 Hz.
Slow drift motion appears to affect mainly lateral movements and all the segments were equally involved indicating a probable origin in postural body sway. Vertical displacements could be referred to shoulder and wrist motion with features typical of physiological tremor. Quantitative characterization of segments displacements during aiming phase may serve as a basis for scientific evaluation and training in competitive precision shooting.
气手枪射击是一项对动作精准度要求极高的运动。本研究的目的是收集并分析手臂/枪支复合体在瞄准阶段的运动学数据,以便通过时域和频域分析技术来描述运动特征以及各节段之间的协调性。
13名气手枪运动员参加了在10米射击场举行的记录环节。在瞄准阶段,使用光电运动捕捉系统收集颈部、肩部、肘部、腕部和枪支的运动学数据。位移序列被分解为慢漂移和震颤成分。通过标准差和回归系数分别在时域中估计每个节段的运动幅度以及相邻节段之间关系的强度。此外,计算相干性和相位谱函数以评估不同频率下节段间的耦合情况。
所有节段的慢漂移成分的运动明显大于震颤成分,尤其是横向运动。在横向方向和慢漂移成分上发现了更高的节段间相关性。震颤成分垂直序列上计算出的相干性显示在1.5赫兹和5至7赫兹处存在显著耦合,在5至7赫兹时腕部和枪支运动之间存在相位相反的情况。
慢漂移运动似乎主要影响横向运动,并且所有节段均同等程度地参与其中,这表明其可能源于身体姿势的摆动。垂直位移可能与肩部和腕部运动有关,具有生理性震颤的典型特征。瞄准阶段节段位移的定量表征可为竞技精准射击的科学评估和训练提供依据。