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首页> 外文期刊>Experimental Brain Research >Switching tools: perceptual-motor recalibration to weight changes.
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Switching tools: perceptual-motor recalibration to weight changes.

机译:切换工具:感知电动机的重量校正。

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摘要

In order to effectively switch between tools, an actor must re-calibrate perceptual-motor control appropriately for the new tool's kinetic properties. This study explored changes in perceptual-motor control in response to switching to a tool of a different weight when performing a complex control task with moving objects. In Experiment 1, 30 participants were each randomly assigned to one of three groups in a baseball batting simulation: a standard group that always used the same bat weight (1.08 kg), a Lighter group that switched from the standard bat to a 0.79 kg bat, and a Heavier group that switched from the standard bat to a 1.36 kg bat. For both the Heavier and Lighter groups, temporal swing errors were significantly larger (as compared to the standard group) in the first block of trials following the bat change. Both groups re-calibrated quickly: within 5-10 trials after the bat change there were no significant difference between the groups. Analysis of swing kinematics indicated that the two change groups used different means for re-calibrating perceptual-motor control: the Lighter group altered swing velocity while the Heavier group altered swing onset time. In Experiment 2, when batters switched from a 0.79 kg bat to a 1.08 kg bat, perceptual-motor calibration depended on the recommended bat weight for each participant (Bahill and Freitas in Ann Biomed Eng 23:436-444, 1995): batters with a heavier recommended weight altered swing velocity while batters with a lower recommended weight altered onset time. The strategy used for perceptual-motor recalibration and time required to re-calibrate in a complex motor task is dependent on the action boundaries of the actor.
机译:为了有效地在工具之间切换,执行者必须针对新工具的动力学特性适当地重新校准感知运动控制。这项研究探索了感知运动控制的变化,该变化是在执行带有运动对象的复杂控制任务时,切换到不同重量的工具所引起的。在实验1中,将30名参与者随机分配到棒球击球模拟中的三个组中的一个:始终使用相同棒重(1.08 kg)的标准组,一个从标准棒改为0.79 kg的较轻组,以及一个从标准蝙蝠切换到1.36千克蝙蝠的较重小组。对于较重和较轻的组,在更换蝙蝠后的第一批试验中,时间摆动误差明显大于标准组(与标准组相比)。两组都迅速重新校准:更换蝙蝠后的5-10次试验中,两组之间无显着差异。挥杆运动学分析表明,两个更改组使用不同的方法重新校准感知运动控制:较轻的组更改了挥杆速度,而较重的组更改了挥杆开始时间。在实验2中,当击球手从0.79千克蝙蝠切换到1.08千克蝙蝠时,感知运动的校准取决于每个参与者的推荐蝙蝠重量(Bahill and Freitas in Ann Biomed Eng 23:436-444,1995):建议的重量较大时,挥杆速度会改变;而建议的重量较低时,击球手会改变击球时间。在复杂的运动任务中用于感知运动重新校准的策略和重新校准所需的时间取决于参与者的动作边界。

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