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首页> 外文期刊>European journal of applied physiology >Changes in the P100 latency of the visual evoked potential and the saccadic reaction time during isometric contraction of the shoulder girdle elevators.
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Changes in the P100 latency of the visual evoked potential and the saccadic reaction time during isometric contraction of the shoulder girdle elevators.

机译:肩带提升器等距收缩过程中视觉诱发电位的P100潜伏期和眼跳反应时间的变化。

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摘要

We investigated changes in the P100 latency of the visual evoked potential (VEP) and the saccadic reaction time (SRT) in relation to the degree of activity of the shoulder girdle elevators. Muscle force was set in 10% increments from 0% to 50% of the maximal voluntary contraction (MVC). The VEP was derived from a midline occipital electrode with reference electrodes on the ears when the right retina was stimulated through the eyelid by light emitting diodes while the eyes were closed. The P100 latency of the VEP was defined as the time from the stimulus onset to the main positive peak. The SRT was defined as the latency until the beginning of eye movement toward the lateral target, which was moved at random time-intervals. P100 latency was shortened until 30% of the MVC, and which it lengthened. The SRT changed in a pattern similar to that observed for the P100 latency. The ratio of the shortening in P100 latency relative to that of the SRT was approximately 20%. All data is presented as the mean value, plus the standard deviation. We believe that the information processing time in the neural pathway from the retina to the visual cortex was shortened up to a certain muscle force of the shoulder girdle elevators, and then this processing time lengthened. These findings indicate that shortening of information processing time in the neural pathway beyond the visual cortex is included in the shortening of the SRT.
机译:我们研究了视觉诱发电位(VEP)和眼跳反应时间(SRT)的P100潜伏期相对于肩带提升器活动程度的变化。肌肉力量设置为最大自愿收缩(MVC)的0%至50%的10%增量。当右眼在闭眼时通过发光二极管刺激右眼视网膜时,VEP来自中线枕骨电极,耳朵上有参比电极。 VEP的P100潜伏期定义为从刺激发作到主要正峰值的时间。 SRT被定义为直到眼球向侧向目标移动开始的等待时间,该移动以随机的时间间隔移动。 P100的等待时间缩短到MVC的30%,并且延长了。 SRT的变化方式类似于P100延迟观察到的方式。相对于SRT,P100延迟时间缩短的比例约为20%。所有数据均以平均值加标准偏差表示。我们认为,从视网膜到视皮层的神经通路中的信息处理时间会缩短到肩带提肌一定的肌肉力,然后这种处理时间会延长。这些发现表明,SRT的缩短包括视神经皮层以外的神经通路信息处理时间的缩短。

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