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被假象迷惑:运动学和非运动学信息在欺骗检测中的作用

Falling for a Fake: The Role of Kinematic and Non-kinematic Information in Deception Detection.

作者信息

Park So Hyun, Ryu Donghyun, Uiga Liis, Masters Rich, Abernethy Bruce, Mann David L

机构信息

Te Huataki Waiora Faculty of Health, Sport, and Human Performance, The University of Waikato, Hamilton, New Zealand.

Institute for the Psychology of Elite Performance, School of Sport, Health and Exercise Sciences, Bangor University, Bangor, UK.

出版信息

Perception. 2019 Apr;48(4):330-337. doi: 10.1177/0301006619837874. Epub 2019 Mar 21.

Abstract

Kinematic and non-kinematic visual information have been examined in the context of movement anticipation by athletes, although less so in deception detection. This study examined the role of kinematic and non-kinematic visual information in the anticipation of deceptive and non-deceptive badminton shots. Skilled ( n = 12) and less skilled ( n = 12) badminton players anticipated the direction of deceptive and non-deceptive shots presented via video footage displayed in normal (kinematic and non-kinematic information), low (kinematic information emphasized), and high (non-kinematic information emphasized) spatial frequency conditions. Each shot was occluded one frame before shuttle-racquet contact or at contact. In deceptive trials, skilled players showed decreased anticipation accuracy in the high spatial frequency condition ( p = .050) compared to normal and low spatial frequency conditions, which did not differ. The study suggests that an emphasis on kinematic information results in accurate anticipation in response to deceptive movements and that an emphasis on non-kinematic information results in less accurate anticipation by experts.

摘要

运动员在动作预判的背景下对运动学和非运动学视觉信息进行了研究,不过在欺骗检测方面的研究较少。本研究考察了运动学和非运动学视觉信息在预判欺骗性和非欺骗性羽毛球击球中的作用。熟练的(n = 12)和不太熟练的(n = 12)羽毛球运动员预判通过在正常(运动学和非运动学信息)、低(强调运动学信息)和高(强调非运动学信息)空间频率条件下显示的视频片段呈现的欺骗性和非欺骗性击球的方向。每次击球在球拍与球接触前一帧或接触时被遮挡。在欺骗性试验中,与正常和低空间频率条件相比,熟练运动员在高空间频率条件下的预判准确性降低(p = 0.050),而正常和低空间频率条件之间没有差异。该研究表明,强调运动学信息会导致对欺骗性动作做出准确预判,而强调非运动学信息会导致专家的预判准确性降低。

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