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Can Stroboscopic Training Improve Judgments of Time-to-Collision?

机译:频闪训练能否改善对碰撞时间的判断?

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摘要

Objective: The aim of this study was to determine whether training with stroboscopic viewing could improve time-to-collision (TTC) judgments, which have importance in real-world tasks such as driving. Background: Prior research demonstrated that training with stroboscopic vision can improve motion coherence thresholds, improve anticipatory timing performance for laterally moving objects, and can protect against performance degradation over time. Method: Participants viewed computer simulations of an object that moved and then disappeared. In two separate experiments, the object approached the observer or moved laterally toward a target, representing different optical flow patterns. Participants judged TTC by pressing a button when they thought the object would hit them (approach), or the target (lateral). Performance was measured during four sessions-pretest, intervention, immediately after intervention, and 10 min after intervention. Results: Both stroboscopic training and repeated practice improved performance over time for approach motion (decrease in constant error) and stroboscopic training protected against performance degradation for lateral motion (no decrement in variable error), but only when TTC was 3.0 s. There was no difference between training and repeated practice. Conclusion: Under certain conditions, stroboscopic training may improve TTC judgments. However, effects of stroboscopic training depend on the nature of the optical flow pattern. Application: It is important to determine the conditions under which training can improve TTC judgments which have importance in real-world tasks such as driving. If individuals can be trained to judge TTC more accurately, they may benefit from driver training programs.
机译:目的:这项研究的目的是确定频闪观察训练是否可以改善碰撞时间(TTC)判断,这在现实世界中的任务(例如驾驶)中具有重要意义。背景:先前的研究表明,使用频闪观测仪进行训练可以提高运动连贯性阈值,提高横向移动物体的预期计时性能,并可以防止性能随时间下降。方法:参与者查看了一个移动并消失的物体的计算机模拟。在两个单独的实验中,物体接近观察者或横向朝着目标移动,代表了不同的光流模式。参与者以为物体会撞到他们(接近)或目标(侧面)时按下按钮来判断TTC。在预测试,干预,干预后和干预后10分钟的四个阶段中对性能进行了测量。结果:频闪训练和重复练习都随着时间的推移改善了进近运动的性能(恒定误差的减少),并且频闪训练防止了横向运动的性能下降(可变误差没有减小),但仅在TTC为3.0 s时才有效。训练和重复练习之间没有区别。结论:在一定条件下,频闪训练可以改善TTC的判断力。但是,频闪训练的效果取决于光流模式的性质。应用:确定培训可以改善TTC判断的条件非常重要,这在现实世界中的任务(例如驾驶)中很重要。如果可以培训个人更准确地判断TTC,他们可能会从驾驶员培训计划中受益。

著录项

  • 来源
    《Human Factors》 |2020年第1期|152-165|共14页
  • 作者单位

    Rice Univ Dept Psychol Sci 6100 Main St MS-25 Houston TX 77005 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    stroboscopic training; time-to-collision;

    机译:频闪训练;碰撞时间;
  • 入库时间 2022-08-18 05:12:53

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