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重新审视听觉刺激的起始-持续时间匹配:传统算术方法与提议的准确性和精确性几何测量方法

Onset-Duration Matching of Acoustic Stimuli Revisited: Conventional Arithmetic vs. Proposed Geometric Measures of Accuracy and Precision.

作者信息

Friedrich Björn, Heil Peter

机构信息

Systems Physiology of Learning, Leibniz Institute for Neurobiology Magdeburg, Germany.

出版信息

Front Psychol. 2017 Jan 6;7:2013. doi: 10.3389/fpsyg.2016.02013. eCollection 2016.

Abstract

Onsets of acoustic stimuli are salient transients and are relevant in humans for the perception of music and speech. Previous studies of onset-duration discrimination and matching focused on whether onsets are perceived categorically. In this study, we address two issues. First, we revisit onset-duration matching and measure, for 79 conditions, how accurately and precisely human listeners can adjust the onset duration of a comparison stimulus to subjectively match that of a standard stimulus. Second, we explore measures for quantifying performance in this and other matching tasks. The conventional measures of accuracy and precision are defined by arithmetic descriptive statistics and the Euclidean distance function on the real numbers. We propose novel measures based on geometric descriptive statistics and the log-ratio distance function, the Euclidean distance function on the positive-real numbers. Only these properly account for the fact that the magnitude of onset durations, like the magnitudes of most physical quantities, can attain only positive real values. The conventional (arithmetic) measures possess a convexity bias that yields errors that grow with the width of the distribution of matches. This convexity bias leads to misrepresentations of the constant error and could even imply the existence of perceptual illusions where none exist. This is not so for the proposed (geometric) measures. We collected up to 68 matches from a given listener for each condition (about 34,000 matches in total) and examined inter-listener variability and the effects of onset duration, plateau duration, sound level, carrier, and restriction of the range of adjustable comparison stimuli on measures of accuracy and precision. Results obtained with the conventional measures generally agree with those reported in the literature. The variance across listeners is highly heterogeneous for the conventional measures but is homogeneous for the proposed measures. Furthermore, the proposed measures show that listeners tend to under- rather than to overestimate the onset duration of the comparison stimuli. They further reveal effects of the stimulus carrier on accuracy and precision which are missed by the conventional measures. Our results have broad implications for psychophysical studies that use arithmetic measures to quantify performance when geometric measures should instead be used.

摘要

声音刺激的起始是显著的瞬态信号,对人类感知音乐和语音具有重要意义。以往关于起始时长辨别和匹配的研究主要关注起始是否被分类感知。在本研究中,我们探讨两个问题。第一,我们重新审视起始时长匹配,并针对79种条件,测量人类听众能多准确、精确地调整比较刺激的起始时长,以使其在主观上与标准刺激的起始时长相匹配。第二,我们探索用于量化此匹配任务及其他匹配任务中表现的指标。传统的准确性和精确性指标是由算术描述统计量和实数上的欧几里得距离函数定义的。我们提出基于几何描述统计量和对数比率距离函数(正实数上的欧几里得距离函数)的新指标。只有这些指标能恰当地考虑到起始时长的大小,如同大多数物理量的大小一样,只能取正实数值这一事实。传统(算术)指标存在凸性偏差,会产生随着匹配分布宽度增加而增大的误差。这种凸性偏差会导致对恒定误差的错误表述,甚至可能在不存在感知错觉的情况下暗示其存在。而对于所提出的(几何)指标则并非如此。我们为每个条件从给定听众处收集了多达68次匹配数据(总共约34,000次匹配),并研究了听众间的变异性以及起始时长、平台时长、声级、载波和可调整比较刺激范围限制对准确性和精确性指标的影响。用传统指标获得的结果总体上与文献中报道的结果一致。对于传统指标,听众间的方差高度异质,但对于所提出的指标则是同质的。此外,所提出的指标表明,听众倾向于低估而非高估比较刺激的起始时长。它们还揭示了刺激载波对准确性和精确性的影响,而这是传统指标所遗漏的。我们的结果对那些在应使用几何指标来量化表现时却使用算术指标的心理物理学研究具有广泛的启示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c918/5216879/67f690ea532f/fpsyg-07-02013-g0001.jpg

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