Hostname: page-component-76d6cb85b7-7262s Total loading time: 0 Render date: 2026-07-22T19:42:03.267Z Has data issue: false hasContentIssue false

Aging and distributional tone learning: the role of pitch memory in older adults’ discrimination of mandarin lexical tones

Published online by Cambridge University Press:  15 October 2025

Yin-To Chui
Affiliation:
Speech, Learning, and the Brain (SLaB) Lab, Division of Humanities, The Hong Kong University of Science and Technology , Kowloon, Hong Kong
Susu Lai
Affiliation:
Speech, Learning, and the Brain (SLaB) Lab, Division of Humanities, The Hong Kong University of Science and Technology , Kowloon, Hong Kong
Quentin Zhen Qin*
Affiliation:
Speech, Learning, and the Brain (SLaB) Lab, Division of Humanities, The Hong Kong University of Science and Technology , Kowloon, Hong Kong Center for Aging Science, The Hong Kong University of Science and Technology , Kowloon, Hong Kong
*
Corresponding author: Quentin Zhen Qin; Email: hmzqin@ust.hk
Rights & Permissions [Opens in a new window]

Abstract

Distributional learning enables listeners to form phonetic categories by extracting statistical regularities from speech input. Younger Cantonese speakers can acquire the Mandarin level-falling (T1–T4) contrast through distributional learning, with bimodal exposure facilitating category formation and unimodal exposure suppressing it, and with fine-grained pitch sensitivity predicting success. However, aging is associated with declines in pitch sensitivity and phonetic boundary formation, which may disrupt this process. This study examined whether Cantonese-speaking older adults exhibit distributional learning of Mandarin T1–T4 and whether individual cognitive factors predict learning success. Sixty-four participants completed a pretest–training–posttest procedure with bimodal or unimodal exposure. While older adults improved in tone discrimination, no group differences emerged. Further analysis showed that those with lower pitch-related auditory memory failed to learn from unimodal input. On the other hand, fine-grained pitch perception abilities did not predict learning outcomes. These results suggest that older adults may rely on alternative learning mechanisms, such as memory-based strategies, when exposed to ambiguous input distributions. The findings indicate a shift from perceptual encoding to memory-driven processing in aging and highlight the limits of passive statistical learning in older adulthood.

Information

Type
Article
Creative Commons
Creative Common License - CCCreative Common License - BY
This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence (http://creativecommons.org/licenses/by/4.0), which permits unrestricted re-use, distribution and reproduction, provided the original article is properly cited.
Copyright
© The Author(s), 2025. Published by Cambridge University Press
Figure 0

Table 1. Means and SDs of participants’ biographical information and cognitive battery variables, with Bayes factor tests (i.e., BF10 ≤ 0.33) revealing no differences between the two groups in any of these measures

Figure 1

Figure 1. Tone 1–Tone 4 continuum. Dashed line = intermediate tokens. Numbers next to the lines denote step number.

Figure 2

Figure 2. Illustration of the experiment procedure. Note: PTA = Pure-Tone Audiometry; MoCA = Montreal Cognitive Assessment.

Figure 3

Table 2. Model output for the group analysis

Figure 4

Figure 3. (Left panel) Means (circles) and 95% credible intervals (vertical bars) of predicted proportions of correct responses by group and by session. (Right panel) Posterior distribution of the regression coefficient for group × session interaction. Shaded areas show 95% credible intervals.

Figure 5

Table 3. Model output for the individual differences analysis

Figure 6

Figure 4. (Left panel) Means (line) and 95% credible intervals (shaded area) of model-predicted proportions of correct responses by group and by session. (Right panel) Posterior distribution of the regression coefficient for group × session × pitch memory interaction. Shaded areas show 95% credible intervals.

Figure 7

Figure 5. Accuracy changes (i.e., an illustration based on raw data, but not model-based predictions) as a function of pitch memory score across both distribution groups. Shaded areas show 95% confidence intervals.

Supplementary material: File

Chui et al. supplementary material

Chui et al. supplementary material
Download Chui et al. supplementary material(File)
File 293.3 KB