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Modified Navigation Instructions for Spatial Navigation Assistance Systems Lead to Incidental Spatial Learning

机译:修改后的空间导航辅助系统导航指令会导致偶然的空间学习

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摘要

Spatial cognitive skills deteriorate with the increasing use of automated GPS navigation and a general decrease in the ability to orient in space might have further impact on independence, autonomy, and quality of life. In the present study we investigate whether modified navigation instructions support incidental spatial knowledge acquisition. A virtual driving environment was used to examine the impact of modified navigation instructions on spatial learning while using a GPS navigation assistance system. Participants navigated through a simulated urban and suburban environment, using navigation support to reach their destination. Driving performance as well as spatial learning was thereby assessed. Three navigation instruction conditions were tested: (i) a control group that was provided with classical navigation instructions at decision points, and two other groups that received navigation instructions at decision points including either (ii) additional irrelevant information about landmarks or (iii) additional personally relevant information (i.e., individual preferences regarding food, hobbies, etc.), associated with landmarks. Driving performance revealed no differences between navigation instructions. Significant improvements were observed in both modified navigation instruction conditions on three different measures of spatial learning and memory: subsequent navigation of the initial route without navigation assistance, landmark recognition, and sketch map drawing. Future navigation assistance systems could incorporate modified instructions to promote incidental spatial learning and to foster more general spatial cognitive abilities. Such systems might extend mobility across the lifespan.
机译:随着越来越多地使用自动GPS导航,空间认知技能会下降,而且空间定向能力的普遍下降可能会进一步影响独立性,自主性和生活质量。在本研究中,我们调查了修改后的导航指令是否支持附带的空间知识获取。使用GPS导航辅助系统时,虚拟驾驶环境用于检查修改的导航说明对空间学习的影响。参与者使用导航支持在模拟的城市和郊区环境中导航,以到达目的地。从而评估了驾驶性能以及空间学习。测试了三个导航指令条件:(i)在决策点提供经典导航指令的对照组,以及另外两个在决策点接收导航指令的对照组,其中包括(ii)有关地标的其他不相关信息或(iii)其他的信息与地标相关的个人相关信息(即,个人对食物,嗜好等的偏好)。驾驶性能表明导航说明之间没有差异。在两种不同的空间学习和记忆测量方法上,在两种修改后的导航教学条件中均观察到了显着改进:初始导航的后续导航,没有导航辅助,地标识别和草图绘制。未来的导航辅助系统可能会包含修改后的指令,以促进偶然的空间学习并增强更一般的空间认知能力。这样的系统可能会延长整个生命周期的移动性。

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