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Temporal capacity of short-term visuomotor memory in continuous force production

机译:连续力产生中短时运动记忆的时间能力

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摘要

The focus of this article is on the temporal capacity of short-term visuomotor memory as reflected by changes in the time and frequency patterns of force output. In experiment 1, subjects produced continuous force output (isometric index finger flexion) to a target force level (from 5 to 75% of maximum voluntary contraction, MVC) displayed on a video monitor for 20 s. In the full visual feedback condition, visual feedback was displayed throughout each trial, while, for the visual feedback-withdrawal condition, visual feedback was occluded for the final 12 s of each trial. With visual feedback present, subjects matched their force output to the target force level for 20 s. When visual feedback was removed, participants continued to match the target force level for approximately 0.5–1.5 s; thereafter force output decayed exponentially. In line with this decay, short time-frequency analysis revealed a decrease in force intensity in the 0- to 5-Hz band. Force level did not influence the time before decay; however, greater forces led to larger decay. Experiment 2 assessed whether the force decay in experiment 1 was a property of visual or motor short-term memory by having participants set their own target force levels with no visual information provided throughout. In agreement with the findings of experiment 1, force output decayed, emphasizing the importance of a motor memory source. It is concluded that the 0.5- to 1.5-s time period represents a limit on the temporal capacity that precise visuomotor information is held in short-term memory.
机译:本文的重点是短期内力运动记忆的时间能力,这通过力输出的时间和频率模式的变化反映出来。在实验1中,受试者产生持续的力输出(等距食指弯曲)至目标力水平(最大自愿收缩的5%至75%,MVC)在视频监视器上显示20 s。在完全视觉反馈条件下,在每个试验中均显示视觉反馈,而对于撤回视觉反馈的条件,在每个试验的最后12 s均遮挡了视觉反馈。在存在视觉反馈的情况下,受试者将其力输出与目标力水平相匹配20秒钟。移除视觉反馈后,参与者继续在约0.5-1.5 s内达到目标力水平;此后,力输出呈指数衰减。与这种衰减一致,短时频分析显示了0至5 Hz频带内力强度的降低。力水平不影响衰减前的时间;但是,更大的力量导致更大的衰减。实验2通过让参与者设置自己的目标力水平而不提供任何视觉信息来评估实验1中的力衰减是视觉还是运动短期记忆的属性。与实验1的结果一致,力输出衰减,强调了马达记忆源的重要性。结论是0.5到1.5 s的时间段代表了在短期记忆中保留精确的粘膜运动信息的时间容量的限制。

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