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A new method for tracking of motor skill learning through practical application of fitts law

机译:通过fitts定律实际跟踪运动技能学习的新方法

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A novel upper limb motor skill measure, task productivity rate (TPR) was developed integrating speed and spatial error, delivered by a practical motor skill rehabilitation task (MSRT). This prototype task involved placement of 5 short pegs horizontally on a spatially configured rail array. The stability of TPR was tested on 18 healthy right-handed adults (10 women, 8 men, median age 29 years) in a prospective single-session quantitative within-subjects study design. Manipulations of movement rate 10% faster and slower relative to normative states did not significantly affect TPR, F(1.387, 25.009) = 2.465, p =.121. A significant linear association between completion time and error was highest during the normative state condition (Pearson's r =.455, p <.05). Findings provided evidence that improvements in TPR over time reflected motor learning with possible changes in coregulation behavior underlying practice under different conditions. These findings extend Fitts law theory to tracking of practical motor skill using a dexterity task, which could have potential clinical applications in rehabilitation.
机译:结合速度和空间误差,开发了一种新颖的上肢运动技能测量指标,即任务生产率(TPR),由实际的运动技能康复任务(MSRT)提供。该原型任务涉及在空间配置的导轨阵列上水平放置5个短钉。在前瞻性单次定量受试者内部研究设计中,对18位健康的惯用右手成年人(10位女性,8位男性,中位年龄29岁)进行了TPR的稳定性测试。相对于规范状态,快慢10%的移动速度操纵不会显着影响TPR,F(1.387,25.009)= 2.465,p = .121。在规范状态下,完成时间与错误之间的线性关系最高(Pearson r = .455,p <.05)。研究结果提供了证据,表明TPR随时间的改善反映了运动学习,以及在不同条件下可能会改变潜在的锻炼行为。这些发现将Fitts法则理论扩展到使用敏捷任务跟踪实际运动技能的过程,这可能在康复中具有潜在的临床应用。

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