Institut PPRIME (UPR CNRS 3346), Université de Poitiers, Centre National de la Recherche Scientifique, 86000, Poitiers, France.
Centre de Recherches sur la Cognition et l'Apprentissage (UMR CNRS 7295), Université de Poitiers, Université de Tours, Centre National de la Recherche Scientifique, 86000, Poitiers, France.
Behav Res Methods. 2019 Dec;51(6):2573-2596. doi: 10.3758/s13428-018-1112-x.
The study of biological point-light displays (PLDs) has fascinated researchers for more than 40 years. However, the mechanisms underlying PLD perception remain unclear, partly due to difficulties with precisely controlling and transforming PLD sequences. Furthermore, little agreement exists regarding how transformations are performed. This article introduces a new free-access program called PLAViMoP (Point-Light Display Visualization and Modification Platform) and presents the algorithms for PLD transformations actually included in the software. PLAViMoP fulfills two objectives. First, it standardizes and makes clear many classical spatial and kinematic transformations described in the PLD literature. Furthermore, given its optimized interface, PLAViMOP makes these transformations easy and fast to achieve. Overall, PLAViMoP could directly help scientists avoid technical difficulties and make possible the use of PLDs for nonacademic applications.
生物点光显示 (PLD) 的研究已经吸引了研究人员超过 40 年。然而,PLD 感知的机制仍不清楚,部分原因是难以精确控制和转换 PLD 序列。此外,对于如何进行转换,几乎没有达成共识。本文介绍了一个名为 PLAViMoP(点光显示可视化和修改平台)的新的免费访问程序,并介绍了实际包含在软件中的 PLD 转换算法。PLAViMoP 实现了两个目标。首先,它标准化并明确了 PLD 文献中描述的许多经典的空间和运动学转换。此外,由于其优化的界面,PLAViMoP 使得这些转换变得容易和快速。总的来说,PLAViMoP 可以直接帮助科学家避免技术困难,并使 PLD 能够用于非学术应用。