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认知负荷与棱镜适应

Cognitive Load and Prism Adaptation.

作者信息

Redding G. M., Rader S. D., Lucas D. R.

机构信息

Department of Psychology, Illinois State University, Normal, IL 61761, USA.

出版信息

J Mot Behav. 1992 Sep;24(3):238-246. doi: 10.1080/00222895.1992.9941619.

Abstract

Subjects wore goggles with prisms that laterally displaced the visual field (rightward by 11.4 degree) and with full view of the limb engaged in paced (2-s rate) sagittal pointing at either an implicit ("straight ahead of the nose") target (Experiment 1) or an explicit (positioned leftward by 11.4 degree) target (in Experiment 2). In experimental conditions, subjects performed a secondary cognitive task (mental arithmetic) simultaneously during target pointing. In control conditions, no cognitive load was imposed. Aftereffect measures of adaptation to the prismatic displacement were not substantially different when problem solving was required, but terminal error of the exposure pointing task was reliably affected by cognitive load. These results are consistent with the hypothesis of separable mechanisms for adaptive coordination and adaptive alignment. Adaptive coordination may be mediated by strategically flexible coordinative linkage between sensory motor systems (eye-head and hand-head), but spatial alignment seems to be mediated by adaptive encoders within coordinatively linked subsystems. If the coordination task involves predominately automatic processing, coordinative linkage can be frequent enough under cognitive load for substantial realignment to occur even though exposure performance (adaptive coordination) may be less than optimal.

摘要

受试者佩戴带有棱镜的护目镜,棱镜使视野向外侧移位(向右11.4度),并且能完全看到参与以2秒节奏进行矢状指向的肢体,指向的目标在实验1中是一个隐式目标(“鼻子正前方”),在实验2中是一个显式目标(向左移位11.4度)。在实验条件下,受试者在目标指向过程中同时执行一项次要认知任务(心算)。在对照条件下,不施加认知负荷。当需要解决问题时,对棱镜移位的适应后效测量没有显著差异,但暴露指向任务的最终误差确实受到认知负荷的可靠影响。这些结果与适应性协调和适应性对齐的可分离机制假说一致。适应性协调可能由感觉运动系统(眼-头和手-头)之间策略性灵活的协调联系介导,但空间对齐似乎由协调联系的子系统内的适应性编码器介导。如果协调任务主要涉及自动处理,那么在认知负荷下,协调联系可以频繁到足以发生实质性的重新对齐,即使暴露表现(适应性协调)可能并非最优。

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