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首页> 外文期刊>Journal of human kinetics. >Speed of Visual Sensorimotor Processes and Conductivity of Visual Pathway in Volleyball Players
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Speed of Visual Sensorimotor Processes and Conductivity of Visual Pathway in Volleyball Players

机译:排球运动员视觉感觉运动过程的速度和视觉通路的电导率

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Volleyball is a dynamic game which requires a high level of visual skills. The first aim of this study was to investigate the several aspects of reaction times (RT) to visual stimuli in volleyball players (12) compared to non-athletic subjects (12). By using the tests included in the Vienna Test System (Schuhfried, Austria), simple reaction time (SRT), choice reaction time (CRT) and peripheral reaction time (PRT) were examined. The second aim of this study was to assess the neurophysiological basis of early visual sensory processing in both examined groups. We measured two sets of pattern-reversal visual evoked potentials (VEPs) during monocular central field stimulation (Reti Scan, Roland Consult, Germany). The latencies of waves N75, P100 and N135 were determined. We observed significantly shorter (p0.05) total reaction time to stimuli appearing in the central and peripheral field of vision in the volleyball players compared to non-athletes. With regard to SRT and CRT the main differences between the groups appeared in pre-motor reaction times. Volleyball players had shorter VEPs P100 wave latencies (p0.05) than the non-athlete group. The results indicate faster signal transmission in visual pathways in athletes than in non-athletes. This fact can be attributed to the effect of rapid visual-activity-demanding sports on the central nervous system.
机译:排球是一种动态游戏,需要高水平的视觉技巧。这项研究的首要目的是研究排球运动员(12)与非运动受试者(12)相比对视觉刺激的反应时间(RT)的几个方面。通过使用维也纳测试系统(Schuhfried,奥地利)中包含的测试,检查了简单反应时间(SRT),选择反应时间(CRT)和外围反应时间(PRT)。这项研究的第二个目的是评估两个检查组中早期视觉感觉处理的神经生理基础。我们在单眼中央视野刺激期间测量了两组模式反转视觉诱发电位(VEP)(Reti Scan,Roland Consult,德国)。确定了波N75,P100和N135的延迟。我们观察到,与非运动员相比,排球运动员对中部和周边视野中出现的刺激的总反应时间明显短(p <0.05)。关于SRT和CRT,两组之间的主要差异出现在运动前反应时间上。排球运动员的VEPs P100波潜伏期短于非运动员组(p <0.05)。结果表明,运动员在视觉通路中的信号传递比非运动员更快。这个事实可以归因于要求快速视觉活动的运动对中枢神经系统的影响。

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