On Kinematic Intelligence Structure Model of High-level Athletes in College

被引:0
作者
Zhu Weina [1 ]
机构
[1] Southwest Univ, Sports Inst, Chongqing 400715, Peoples R China
来源
PROCEEDINGS OF THE 2012 INTERNATIONAL SYMPOSIUM - SPORTS INNOVATION AND DEVELOPMENT OF UNIVERSITIES AND COLLEGES | 2012年
关键词
College; High-level; Athletes; Kinematic intelligence; Structure model;
D O I
暂无
中图分类号
G40 [教育学];
学科分类号
040101 ; 120403 ;
摘要
The study attempted to investigate and analyze kinematic intelligence structure of high-level athletes in college. Questionnaires, mathematical statistical analysis and other methods were adopted to conduct the survey, and collected data were analyzed and validated with SPSS17.0 and AMOS7.0. The results suggested that: kinematic intelligence evaluation scale of high-level athletes in college covers five aspects, they were: imagination, attention, perception, thinking capability and memory capacity. The kinematic intelligence structure model of high-level athletes in college was established, revealing the structure and internal relationship of kinematic intelligence of high-level athletes in college. This will theoretically shed lights on teaching and training in college.
引用
收藏
页码:204 / 208
页数:5
相关论文
共 50 条
[31]   High-level FSMD design and automated clock gating with CoDeL [J].
Agarwal, Nainesh ;
Dimopoulos, Nikitas .
CANADIAN JOURNAL OF ELECTRICAL AND COMPUTER ENGINEERING-REVUE CANADIENNE DE GENIE ELECTRIQUE ET INFORMATIQUE, 2008, 33 (01) :31-38
[32]   The rise and fall of executive functions in high-level football players [J].
Beavan, Adam ;
Spielmann, Jan ;
Mayer, Jan ;
Skorski, Sabrina ;
Meyer, Tim ;
Fransen, Job .
PSYCHOLOGY OF SPORT AND EXERCISE, 2020, 49
[33]   High-level hardware design of digital comparator with multiple inputs [J].
Seo, Young-Ho ;
Park, Sung-Ho ;
Kim, Dong-Wook .
INTEGRATION-THE VLSI JOURNAL, 2019, 68 :157-165
[34]   High-Level Virtual Prototyping of Signal Integrity in Bus Communication [J].
Wang, Ruomin ;
Denoulet, Julien ;
Feruglio, Sylvain ;
Vallette, Farouk ;
Garda, Patrick .
IEEE TRANSACTIONS ON COMPONENTS PACKAGING AND MANUFACTURING TECHNOLOGY, 2016, 6 (06) :864-872
[35]   A high-level optimization scheme for low power clock design [J].
Kang, CJ ;
Chen, CH .
CCCT 2003, VOL6, PROCEEDINGS: COMPUTER, COMMUNICATION AND CONTROL TECHNOLOGIES: III, 2003, :221-224
[36]   High-Level Metrics for Service Level Objective-aware Autoscaling in Polaris: a Performance Evaluation [J].
Bartelucci, Nicolo ;
Bellavista, Paolo ;
Pusztai, Thomas ;
Morichetta, Andrea ;
Dustdar, Schahram .
6TH IEEE INTERNATIONAL CONFERENCE ON FOG AND EDGE COMPUTING (ICFEC 2022), 2022, :73-77
[37]   High-Level Multi-difference Cues for Image Saliency Detection [J].
Sun, Jianwei ;
Wu, Junfeng ;
Yu, Hong ;
Zhang, Meiling ;
Luo, Qiang ;
Sun, Juanjuan .
DATA SCIENCE, PT 1, 2017, 727 :508-519
[38]   Revision Hip Arthroscopy in High-Level Athletes: Minimum 2-Year Outcomes Comparison to a Propensity-Matched Primary Hip Arthroscopy Control Group [J].
Monahan, Peter F. ;
Jimenez, Andrew E. ;
Owens, Jade S. ;
Saks, Benjamin R. ;
Maldonado, David R. ;
Ankem, Hari K. ;
Sabetian, Payam W. ;
Lall, Ajay C. ;
Domb, Benjamin G. .
AMERICAN JOURNAL OF SPORTS MEDICINE, 2021, 49 (13) :3582-3591
[39]   High-level power estimation techniques in embedded systems hardware: an overview [J].
Richa, Majdi ;
Prevotet, Jean-Christophe ;
Dardaillon, Mickael ;
Mroue, Mohamad ;
Samhat, Abed Ellatif .
JOURNAL OF SUPERCOMPUTING, 2023, 79 (04) :3771-3790
[40]   Equivalent loading method for high-level noise under broadband condition [J].
Tao Y. ;
Guan C. ;
Jin L. ;
Zou X. ;
Pan K. ;
Li M. .
Hangkong Xuebao/Acta Aeronautica et Astronautica Sinica, 2022, 43 (12)