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Adaptive tuning of perceptual timing to whole body motion

机译:对全身运动的感知时机进行自适应调整

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In a previous work we have shown that sinusoidal whole-body rotations producing continuous vestibular stimulation, affected the timing of motor responses as assessed with a paced finger tapping (PFT) task (Binetti et al. (2010). Neuropsychologia, 48(6), 1842-1852). Here, in two new psychophysical experiments, one purely perceptual and one with both sensory and motor components, we explored the relationship between body motion/vestibular stimulation and perceived timing of acoustic events. In experiment 1, participants were required to discriminate sequences of acoustic tones endowed with different degrees of acceleration or deceleration. In this experiment we found that a tone sequence presented during acceleratory whole-body rotations required a progressive increase in rate in order to be considered temporally regular, consistent with the idea of an increase in "clock" frequency and of an overestimation of time. In experiment 2 participants produced self-paced taps, which entailed an acoustic feedback. We found that tapping frequency in this task was affected by periodic motion by means of anticipatory and congruent (in-phase) fluctuations irrespective of the self-generated sensory feedback. On the other hand, synchronizing taps to an external rhythm determined a completely opposite modulation (delayed/counter-phase). Overall this study shows that body displacements "remap" our metric of time, affecting not only motor output but also sensory input.
机译:在先前的研究中,我们显示产生连续前庭刺激的正弦全身旋转会影响运动反应的时机,如按定步敲击(PFT)任务评估的那样(Binetti等人(2010)。Neuropsychologia,48(6))。 (1842-1852)。在这里,在两个新的心理物理实验中,一个纯粹是感知性的,另一个具有感觉和运动成分,我们探索了身体运动/前庭刺激与听觉事件发生时间之间的关系。在实验1中,要求参与者区分具有不同程度的加速或减速的声音序列。在这个实验中,我们发现在加速全身旋转过程中呈现的音调序列需要逐渐增加速率,以便被认为在时间上是规则的,这与增加“时钟”频率和高估时间的想法一致。在实验2中,参与者产生了自定步调的抽头,这需要声音反馈。我们发现,此任务中的敲击频率受预期的和一致的(同相)波动影响的周期性运动的影响,而与自身产生的感觉反馈无关。另一方面,将抽头同步到外部节奏可确定完全相反的调制(延迟/反相)。总体而言,这项研究表明,人体位移“重新映射”了我们的时间指标,不仅影响了电机输出,还影响了感觉输入。

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