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Empirical evidence that concept mapping reduces neurocognitive effort during concept generation for sustainability

机译:经验证据表明,概念图可以减少概念生成过程中的神经认知工作量,从而实现可持续性

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Sustainable development is a systems problem that requires a shift in thinking from individual parts to the relationships between them. Enabling those involved in the development process to more quickly think in systems is therefore vital to create more sustainable solutions. However, measuring the ability to think in systems is a challenge because of the limited methods to observe behavior or measure outcomes. Recent advances in neuroimaging offer a radically new approach to measure one's ability to think in systems. The specific technique, called functional near-infrared spectroscopy (fNIRS), captures the change in oxygenated blood in the cortical region of the brain, which is a proxy for elevated cognitive activation. In this study, engineering students (n = 28) performed both concept mapping (i.e., labeling concepts and drawing directional connections between them) and concept listing (i.e., generating a list of concepts without indicating relationships) related to grand challenges for sustainability. fNIRS captured the increase in oxygenated blood along the prefrontal and parietal cortex during both concept mapping and listing tasks. Self-evaluation and concept mapping scores were also captured and compared. Concept mapping led to significantly more concepts compared to concept listing. Concept mapping also required less cognitive resources (i.e., oxygenated blood) to generate more concepts. The region of the brain that received more cognitive resources is also significantly different when participants were using concept listing and mapping. Concept mapping directed more cognitive resources to the regions of the brain associated with cognitive flexibility and decreased cognitive resources in regions associated with visuospatial processing. Self-evaluation of systems thinking was negatively correlated with concept mapping scores, meaning students with high perceived ability produce worse concept maps. Global efficiency of brain networks was positively correlated to concept map scores and more accurately measure performance compared to self-evaluation. This study provides neurocognitive evidence to support the benefits of concept mapping and also demonstrates the added advantages of neuroimaging to study systems thinking. (c) 2019 Elsevier Ltd. All rights reserved.
机译:可持续发展是一个系统问题,需要将思维方式从单个部分转变为它们之间的关系。因此,使涉及开发过程的人员更快地思考系统,对于创建更可持续的解决方案至关重要。但是,由于观察行为或测量结果的方法有限,因此测量系统中的思考能力是一项挑战。神经影像学的最新进展提供了一种全新的方法来衡量一个人在系统中的思考能力。这种称为功能近红外光谱(fNIRS)的特定技术捕获了大脑皮层区域中含氧血液的变化,这是认知活动增强的代表。在这项研究中,工程专业的学生(n = 28)既执行了概念映射(即标记概念并在它们之间绘制方向连接)又进行了与可持续性挑战相关的概念列表(即生成概念列表而不指示关系)。 fNIRS捕获了在概念图绘制和列出任务期间沿前额叶和顶叶皮质的含氧血液的增加。自我评估和概念图得分也被捕获和比较。与概念列表相比,概念映射导致更多的概念。概念图还需要较少的认知资源(即充氧血液)来生成更多概念。当参与者使用概念列表和映射时,接收更多认知资源的大脑区域也存在显着差异。概念映射将更多的认知资源导向与认知灵活性相关的大脑区域,并减少与视觉空间处理相关的区域中的认知资源。系统思维的自我评价与概念图得分负相关,这意味着具有较高感知能力的学生会产生较差的概念图。脑网络的整体效率与概念图得分呈正相关,与自我评估相比,更准确地衡量绩效。这项研究提供了神经认知证据来支持概​​念图的好处,并且还证明了神经影像学在研究系统思维方面的附加优势。 (c)2019爱思唯尔有限公司。保留所有权利。

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