Yee Daniel J, Wiggins Mark W, Searle Ben J
Macquarie University, Sydney, NSW, Australia.
Hum Factors. 2017 Sep;59(6):1009-1021. doi: 10.1177/0018720817699512. Epub 2017 Mar 15.
To examine whether social cue utilization impacts the performance of ad hoc dyads through its relationship with closing the loop, a communication process whereby team members respond more frequently to initiating statements made by others.
There lacks unequivocal experimental evidence for any single cognitive-based process that might predict the performance of ad hoc teams.
Using a quasi-experimental design, 80 participants were classified into 40 dyads based on their levels of social cue utilization and attempted a team problem-solving task. A serial mediation model revealed an indirect effect of social cue utilization on the performance of ad hoc dyads through closing the loop.
Analyses indicated that social cue utilization impacts on the performance of ad hoc dyads independently of nonverbal reasoning ability and emotional intelligence. Further, the level of social cue utilization within dyads exhibits a positive indirect impact on the performance of ad hoc dyads through closing the loop.
Ad hoc dyads with higher levels of social cue utilization engaged in a greater frequency of closing-the-loop statements and showed better subsequent performance on a problem-solving task in comparison to dyads with lower levels of social cue utilization.
Potential applications include the optimization of ad hoc team composition within high reliability environments like aviation and power control as well as improving training interventions with a specific mechanism for improving the performance of ad hoc teams.
通过研究社交线索利用与闭环(一种团队成员对他人发起陈述做出更频繁回应的沟通过程)之间的关系,来检验社交线索利用是否会影响临时二人组的表现。
对于任何可能预测临时团队表现的单一基于认知的过程,都缺乏明确的实验证据。
采用准实验设计,根据社交线索利用水平将80名参与者分为40个二人组,并让他们尝试一项团队解决问题的任务。一个串行中介模型揭示了社交线索利用通过闭环对临时二人组表现的间接影响。
分析表明,社交线索利用对临时二人组的表现有影响,且独立于非言语推理能力和情商。此外,二人组内社交线索利用水平通过闭环对临时二人组的表现产生积极的间接影响。
与社交线索利用水平较低的二人组相比,社交线索利用水平较高的临时二人组进行闭环陈述的频率更高,并且在解决问题任务中的后续表现更好。
潜在应用包括在航空和电力控制等高可靠性环境中优化临时团队组成,以及改进培训干预措施,采用特定机制来提高临时团队的表现。