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Cognitive Processing in New and Practiced Discrete Keying Sequences

机译:新的和实践的离散键控序列中的认知处理

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This study addresses the role of cognitive control in the initiation and execution of familiar and unfamiliar movement sequences. To become familiar with two movement sequences participants first practiced two discrete key press sequences by responding to two fixed series of 6-key specific stimuli. In the ensuing test phase they executed these two familiar and also two unfamiliar keying sequences while there was a two-third chance a tone was presented together with one randomly selected key specific stimulus in each sequence. In the counting condition of the test phase participants counted the low pitched (i.e., target) tones. By and large the results support the dual processor model in which the prime role of the cognitive processor shifts from executing to initiating sequences while the gradual development of motor chunks allows a motor processor to execute the sequences. Yet, the results extend this simple model by suggesting that with little practice sequence execution is based also on some non-cognitive (perhaps associative) learning mechanism and, for some participants, on the use of explicit sequence knowledge. Also, after extensive practice the cognitive processor appears to still contribute to slower responses. The occurrence of long interkey intervals was replicated suggesting that fixed 6-key sequences include several motor chunks. Yet, no indication was found that the cognitive processor is responsible for concatenating these chunks.
机译:这项研究解决了认知控制在熟悉和不熟悉的运动序列的启动和执行中的作用。为了熟悉两个运动序列,参与者首先通过响应两个固定的6键特定刺激序列来练习两个离散的按键序列。在随后的测试阶段中,他们执行了这两个熟悉的以及两个不熟悉的键控序列,而每个序列中有三分之二的机会出现了音调以及一个随机选择的键特定刺激。在测试阶段的计数条件下,参与者计数了低音(即目标)音调。总体而言,结果支持双处理器模型,其中认知处理器的主要作用从执行序列转换为启动序列,而运动块的逐步发展使运动处理器可以执行序列。但是,结果表明,在很少实践的情况下,序列执行也基于某种非认知(可能是联想)学习机制,并且对于某些参与者而言,还基于显式序列知识的使用,从而扩展了此简单模型。同样,经过广泛的实践,认知处理器似乎仍然有助于较慢的反应。复制了较长的键间间隔,这表明固定的6键序列包括几个运动块。然而,没有发现认知处理器负责串联这些块。

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