篮球投篮中的神经肌肉控制策略:取决于距离的肌肉协同分析

IF 2.4 2区 医学 Q2 SPORT SCIENCES Journal of Sports Science and Medicine Pub Date : 2024-09-01 DOI:10.52082/jssm.2024.571
Penglei Fan, Zhitao Yang, Ting Wang, Jiaying Li, Youngsuk Kim, Sukwon Kim
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引用次数: 0

摘要

篮球比赛的胜利取决于运动员在不同距离精确投篮的技巧。虽然已有大量研究探讨了不同投篮距离的运动学和动力学,但其中涉及的具体神经肌肉控制策略仍然难以捉摸。本研究旨在比较不同距离篮球投篮时肌肉协同作用的差异,从而深入了解神经肌肉控制策略并指导运动员的训练。十名熟练投篮的右撇子男子篮球运动员作为实验对象参加了此次实验。实验采集了短距离(3.2 米)、中距离(5.0 米)和长距离(6.8 米)全相位投篮的肌电图(EMG)数据。非负矩阵分解提取了射击过程中的肌肉协同作用(运动模块和运动基元)。研究结果表明,三种距离的投篮都可分解为三种协同作用,短距离和长距离的协同作用存在差异,运动基元 1 和运动基元 2 的差异在 45% - 59% 阶段(P < 0.001,t* = 4.418),和 78% - 88%(p < 0.01,t* = 4.579),在运动模块 3 中发现股直肌(RF)(p = 0.001,d = -2.094)、腓肠肌外侧(GL)(p = 0.001,d = -2.083)的肌肉重量差异。投篮距离不会影响篮球投篮中肌肉协同的数量,但会改变协同模式。在长距离投篮训练中,篮球运动员应更加重视上下肢和核心肌肉的时机和协同激活。
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Neuromuscular Control Strategies in Basketball Shooting: Distance-Dependent Analysis of Muscle Synergies.

Basketball victory relies on an athlete's skill to make precise shots at different distances. While extensive research has explored the kinematics and dynamics of different shooting distances, the specific neuromuscular control strategies involved remain elusive. This study aimed to compare the differences in muscle synergies during basketball shooting at different distances, offering insights into neuromuscular control strategies and guiding athletes' training. Ten skilled shooting right-handed male basketball players participated as subjects in this experiment. Electromyographic (EMG) data for full-phase shooting were acquired at short (3.2 m), middle (5.0 m), and long (6.8 m) distances. Non-negative matrix decomposition extracted muscle synergies (motor modules and motor primitives) during shooting. The results of this study show that all three distance shooting can be broken down into three synergies and that there were differences in the synergies between short and long distances, with differences in motor primitive 1 and motor primitive 2 at the phase of 45% - 59% (p < 0.001, t* = 4.418), and 78% - 88% (p < 0.01, t* = 4.579), respectively, and differences in the motor module 3 found in the differences in muscle weights for rectus femoris (RF) (p = 0.001, d = -2.094), and gastrocnemius lateral (GL) (p = 0.001, d = -2.083). Shooting distance doesn't affect the number of muscle synergies in basketball shooting but alters synergy patterns. During long distance shooting training, basketball players should place more emphasis on the timing and synergistic activation of upper and lower limbs, as well as core muscles.

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来源期刊
CiteScore
5.60
自引率
6.20%
发文量
56
审稿时长
4-8 weeks
期刊介绍: The Journal of Sports Science and Medicine (JSSM) is a non-profit making scientific electronic journal, publishing research and review articles, together with case studies, in the fields of sports medicine and the exercise sciences. JSSM is published quarterly in March, June, September and December. JSSM also publishes editorials, a "letter to the editor" section, abstracts from international and national congresses, panel meetings, conferences and symposia, and can function as an open discussion forum on significant issues of current interest.
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