Neural correlates with individual differences in temporal prediction during auditory-motor synchronization

Kohei Miyata, Tetsuya Yamamoto, M. Fukunaga, Sho K. Sugawara, N. Sadato
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引用次数: 3

Abstract

Abstract Temporal prediction ability is vital for movement synchronization with external rhythmic stimuli (sensorimotor synchronization); however, little is known regarding individual variations in temporal prediction ability and its neural correlates. We determined the underlying neural correlates of temporal prediction and individual variations during auditory-motor synchronization. We hypothesized that the non-primary motor cortices, such as the premotor cortex and supplementary motor area, are the key brain regions that correlate individual variations in prediction ability. Functional magnetic resonance imaging (7T) was performed for 18 healthy volunteers who tapped to 3 types of auditory metronome beats: isochronous, tempo change, and random. The prediction ability was evaluated using prediction/tracking ratios that were computed based on cross-correlations between tap timing and pacing events. Participants with a higher prediction/tracking ratio (i.e. stronger predictive tendency) tapped to metronome beats more accurately and precisely. The prediction/tracking ratio was positively correlated with the activity in the bilateral dorsal premotor cortex (PMd), suggesting that the bilateral PMd explains the individual variation in prediction ability. These results indicate that the PMd is involved in generating a model for temporal prediction of auditory rhythm patterns and its activity would reflect model accuracy, which is critical for accurate and precise sensorimotor synchronization.
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听觉运动同步过程中时间预测的神经相关性与个体差异
摘要时间预测能力对于与外部节奏刺激的运动同步(感觉运动同步)至关重要;然而,人们对时间预测能力的个体变化及其神经相关性知之甚少。我们确定了听觉运动同步过程中时间预测和个体变化的潜在神经相关性。我们假设非初级运动皮层,如运动前皮层和辅助运动区,是大脑中与预测能力个体差异相关的关键区域。对18名健康志愿者进行了功能性磁共振成像(7T),他们敲击了3种类型的听觉节拍器节拍:等时、节奏变化和随机。使用预测/跟踪比率来评估预测能力,所述预测/跟踪比基于轻敲定时和起搏事件之间的互相关来计算。预测/跟踪比率较高(即预测倾向较强)的参与者更准确、更准确地敲击节拍器节拍。预测/跟踪比率与双侧背侧前运动皮层(PMd)的活动呈正相关,表明双侧PMd解释了预测能力的个体差异。这些结果表明,PMd参与生成用于听觉节律模式的时间预测的模型,其活动将反映模型的准确性,这对于准确和精确的感觉运动同步至关重要。
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