延迟对二元电话交谈中感知质量、行为和振荡脑活动的影响

Stefan Uhrig, Thilo Michael, S. Möller, P. Keller, Jan-Niklas Voigt-Antons
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引用次数: 5

摘要

端到端延迟是研究现代分组电话通话质量的一个重要因素。除了大多数退化之外,延迟不能通过仅听测试来评估,主要影响对话的结构和交互性。正因为如此,延迟下会话感知质量的建模依赖于各种工具和人为相关的影响因素。特别是生理学方法可能会提供更多的见解,了解人类参与者在自然对话中如何受到这种质量下降的影响。本实验采用一种新颖的双脑电图(dual-EEG)方法,研究了延迟对10对二元对话参与者的影响。在每个测试阶段,同时记录对话者的神经生理活动,他们通过音频网络按照简短对话测试场景(SCIs)进行互动。同时,在网络中插入不同量级的延迟(0,800,1600 ms),预期这些延迟会干扰会话并引起参与者内部处理和状态的变化。主观和行为测量的分析表明,随着延迟程度的提高,感知质量和会话交互性下降。此外,对记录的双脑电图数据(N = 18)的初步脑内分析显示,随着延迟水平的变化,β和γ频段出现了显著的调制。这表明,注意力负荷随着高延迟而增加,可能是由于较少的单次谈话和更多地关注自己的轮流行为的适应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of delay on perceived quality, behavior and oscillatory brain activity in dyadic telephone conversations
End-to-end delay is an important factor when studying the quality of modern packet-based telephone conversations. Other than most degradations, delay cannot be assessed by listen-only tests and mainly impacts the structure and interactivity of the conversation. Because of this, the modeling of the perceived quality of conversation under delay is dependent on various instrumental as well as human-related influencing factors. Physiological methods in particular might provide additional insights into how human participants are affected by such quality degradations during natural conversations. In the present experiment, a novel dual-electroencephalo-graphy (dual-EEG) method was employed to investigate the effects of delay on 10 pairs of participants engaging in dyadic conversations. In each test session, neurophysiological activity was registered simultaneously in both interlocutors, who interacted in accordance with short conversation test scenarios (SCIs) through an audio network. Meanwhile, delays of different magnitudes (0, 800, 1600 ms) were inserted into the network, which was expected to interfere with the conversation and cause changes in the participants' internal processing and state. Analysis of subjective and behavioral measures shows a decrease in perceived quality and of conversational interactivity with higher levels of delay. Moreover, an initial intra-brain analysis of the recorded dual-EEG data (N = 18) revealed significant modulations in beta and gamma frequency bands by varying delay level. This suggests that attentional load increased with high delay, probably due to less amounts of single talk and focusing more on the adaptation of the own turn-taking behavior.
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