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Bimanual tapping of a syncopated rhythm reveals hemispheric preferences for relative movement frequencies

机译:对旋钮的节奏的Bimanual攻丝揭示了相对运动频率的半球偏好

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Highlights ? The right hand taps relatively high rates more precisely than the left hand. ? Syncopation unmasks a left hand benefit for slow tapping rates. ? Frequency-dependent lateralization of relatively slow and fast timers occurs only when tapping unknown meters. ? Tapping a standard meter may rely on integrated timing by a single timer in the left hemisphere. Abstract In bimanual multifrequency tapping, right-handers commonly use the right hand to tap the relatively higher rate and the left hand to tap the relatively lower rate. This could be due to hemispheric specializations for the processing of relative frequencies. An extension of the double-filtering-by-frequency theory to motor control proposes a left hemispheric specialization for the control of relatively high and a right hemispheric specialization for the control of relatively low tapping rates. We investigated timing variability and rhythmic accentuation in right handers tapping mono- and multifrequent bimanual rhythms to test the predictions of the double-filtering-by-frequency theory. Yet, hemispheric specializations for the processing of relative tapping rates could be masked by a left hemispheric dominance for the control of known sequences. Tapping was thus either performed in an overlearned quadruple meter (tap of the slow rhythm on the first auditory beat) or in a syncopated quadruple meter (tap of the slow rhythm on the fourth auditory beat). Independent of syncopation, the right hand outperformed the left hand in timing accuracy for fast tapping. A left hand timing benefit for slow tapping rates as predicted by the double-filtering-by-frequency theory was only found in the syncopated tapping group. This suggests a right hemisphere preference for the control of slow tapping rates when rhythms are not overlearned. Error rates indicate that overlearned rhythms represent hierarchically structured meters that are controlled by a single timer that could potentially reside in the left hemisphere. ]]>
机译:强调 ?右手比左手更精确地抽取相对高的速率。还Syncopation Unmasks左手效益缓慢攻击速率。还仅在攻丝未知仪表时才会发生相对较慢和快速定时器的频率依赖性横向化。还点击标准仪表可以通过左半球的单个计时器依赖于集成时序。摘要在Bimanual Multifirquency Tapping中,右手撇子通常使用右手敲击相对较高的速率和左手以挖掘相对较低的速率。这可能是由于用于处理相对频率的半球专业。逐频理论对电机控制的延伸提出了对控制相对较低的攻击率的相对高和右半球专业化的左半球专业化。我们调查了右侧辅助商的时序变异性和节奏突出,攻丝单声道和多频性的生理节奏来测试双滤网频率理论的预测。然而,用于处理相对攻丝率的半球专业可以通过对已知序列的控制来掩盖左半球优势。因此,攻丝是在覆盖的四重仪表中(在第一听觉节拍上的慢节奏点击)或在略微的四倍仪表中(在第四听觉节拍上点击慢节奏)。独立于同步,右手优于左手以定时精度进行快速攻丝。通过双过频率理论预测的慢速攻击速率的左手时序益处仅在同步攻丝组中找到。这表明当节奏没有覆盖时控制缓慢间隙率的右半球偏好。错误率表示覆盖的节奏代表了由单个计时器控制的分层结构化仪表,该计量计量可以驻留在左半球中。 ]]>

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