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An EEG study of the relationship between design problem statements and cognitive behaviors during conceptual design

机译:脑电图研究概念设计中设计问题陈述与认知行为之间的关系

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In the design process, different problem statements result in different problem-solving strategies. A proper problem statement is the key to effective problem-solving. Based on the characteristics of the product design process, we divided design problem statements into open-ended (OE), decision-making (DM), and constrained (CO) statements and attempted to investigate the influences of different problem statements on designers' cognitive behaviors from three perspectives, namely divergent thinking, convergent thinking, and mental work-load. Then we provided quantification description to these influences based on electroencephalography (EEG) technology. We conducted experiments on 19 participants and used the BrainProduct (TM) actiChamp-32 to record the EEG data. Results are as follows: (1) The higher task-related alpha power was found in the temporal and occipital regions in the OE task compared with that in the DM and CO tasks. The OE statement also would help designers get novel ideas by strengthening their divergent thinking. (2) In the DM and CO tasks, there was no significant difference in the impact of the brain region on convergent thinking, but activities in the left hemisphere were stronger than that in the right hemisphere. The DM and CO tasks have better performance in convergent thinking than the OE task. (3) In the CO task, the designer's mental workload is the highest and mainly related to the activation of the centroparietal and occipital regions. These findings help designers understand the design problem-solving process from the perspective of cognitive science and monitor their thinking modes in the design process so as to improve their design performance.
机译:在设计过程中,不同的问题陈述会导致不同的问题解决策略。正确的问题说明是有效解决问题的关键。根据产品设计过程的特点,我们将设计问题陈述分为开放式(OE)陈述,决策(DM)和约束(CO)陈述,并尝试研究不同问题陈述对设计师认知的影响从发散思维,趋同思维和脑力劳动这三个角度来看行为。然后,我们基于脑电图(EEG)技术对这些影响进行了量化描述。我们对19名参与者进行了实验,并使用BrainProduct(TM)actiChamp-32记录了脑电数据。结果如下:(1)与DM和CO任务相比,与DM和CO任务相比,OE任务的颞骨和枕骨区域具有更高的与任务相关的alpha功率。 OE声明还将通过增强设计师的分歧思维来帮助设计师获得新颖的想法。 (2)在DM和CO任务中,大脑区域对收敛思维的影响没有显着差异,但是左半球的活动比右半球的活动强。与OE任务相比,DM和CO任务在融合思维中的表现更好。 (3)在CO任务中,设计人员的精神工作量最高,并且主要与向心和枕叶区域的激活有关。这些发现有助于设计师从认知科学的角度理解设计问题的解决过程,并在设计过程中监控他们的思维方式,从而提高他们的设计性能。

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