Joint Coordination With a Change in Task Constraint During Accurate Overhead Throwing.

IF 1.1 4区 医学 Q4 ENGINEERING, BIOMEDICAL
Arata Kimura, Shinsuke Yoshioka, Senshi Fukashiro
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引用次数: 1

Abstract

In sports situations, players may be required to throw at different speeds. The question of how skilled players throw the ball accurately to the desired location under different speed conditions is of interest to biomechanics researchers. Previous research suggested that throwers use different types of joint coordination. However, joint coordination with a change in throwing speed has not been studied. Here, we show the effects of changes in throwing speed on joint coordination during accurate overhead throwing. Participants were seated on a low chair with their trunk fixed and threw a baseball aimed at a target under 2 different speed conditions (slow and fast). In the slow condition, the elbow flexion/extension angle coordinated with other joint angles and angular velocities to reduce the variability of the vertical hand velocity. In the fast condition, the shoulder internal/external rotation angle and the shoulder horizontal flexion/extension angular velocity coordinated with other joint angles and angular velocities to reduce the variability of the vertical hand velocity. These results showed that joint coordination differed with changes in throwing speed, indicating that joint coordination is not always fixed, but may differ depending on the task constraints, such as throwing speed.

精确顶投过程中任务约束变化下的关节协调。
在体育比赛中,运动员可能被要求以不同的速度投掷。技术娴熟的运动员如何在不同的速度条件下将球准确地扔到期望的位置,这是生物力学研究人员感兴趣的问题。先前的研究表明,投掷者使用不同类型的关节协调。然而,关节协调与投掷速度的变化还没有研究。在这里,我们展示了在准确的头顶投掷过程中,投掷速度的变化对关节协调的影响。参与者坐在一张低矮的椅子上,固定着鼻子,在两种不同的速度条件下(慢速和快速)向一个目标投掷棒球。在慢速状态下,肘关节屈伸角与其他关节角度和角速度协调,以减少垂直手速度的可变性。在快速状态下,肩关节内/外旋转角度和肩关节水平屈伸角速度与其他关节角度和角速度协调,以减少垂直手速度的可变性。这些结果表明,关节协调性随投掷速度的变化而变化,表明关节协调性并不总是固定不变的,而是可能根据任务约束(如投掷速度)而变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Applied Biomechanics
Journal of Applied Biomechanics 医学-工程:生物医学
CiteScore
2.00
自引率
0.00%
发文量
47
审稿时长
6-12 weeks
期刊介绍: The mission of the Journal of Applied Biomechanics (JAB) is to disseminate the highest quality peer-reviewed studies that utilize biomechanical strategies to advance the study of human movement. Areas of interest include clinical biomechanics, gait and posture mechanics, musculoskeletal and neuromuscular biomechanics, sport mechanics, and biomechanical modeling. Studies of sport performance that explicitly generalize to broader activities, contribute substantially to fundamental understanding of human motion, or are in a sport that enjoys wide participation, are welcome. Also within the scope of JAB are studies using biomechanical strategies to investigate the structure, control, function, and state (health and disease) of animals.
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