---
title: Easy to Hear, Easy to Select?: Investigating Speech Rate as a Potential Deceptive Pattern in Non-Native Users’ Decision-Making
tags:  #deceptivepattern #darkpattern #vui  
author: [Nakamura Laboratory (Meiji University)](https://image.docswell.com/user/nkmr-lab)
site: [Docswell](https://www.docswell.com/)
thumbnail: https://bcdn.docswell.com/page/L71Y682DJG.jpg?width=480
description: Easy to Hear, Easy to Select?: Investigating Speech Rate as a Potential Deceptive Pattern in Non-Native Users’ Decision-Making by Nakamura Laboratory (Meiji University)
published: October 05, 26
canonical: https://image.docswell.com/s/nkmr-lab/ZX2NN4-2026-10-05-193006
---
# Page. 1

![Page Image](https://bcdn.docswell.com/page/L71Y682DJG.jpg)

Easy to Hear, Easy to Select?:
Investigating Speech Rate as a
Potential Deceptive Pattern in
Non-Native Users’ Decision-Making
Yuichiro Kinoshita, Satoshi Nakamura (Meiji University)


# Page. 2

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Inspiration
Chose what I could understand
Just said “Yes” without fully understanding
Can these designs steer non-native speakers’ decision-making?
2


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Deceptive Patterns (Dark Patterns)
Deceptive Patterns (DPs): Manipulative user interfaces that
benefit service providers
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DPs were used in 95% of the top 240 mobile apps [1]
DPs can cause users financial loss and psychological burden
[1] Di Geronimo et al.: UI Dark Patterns and Where to Find Them: A Study on Mobile Applications and User Perception. CHI’20
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Deceptive Patterns in VUIs
Most prior studies have focused on DPs in GUIs
DPs also exist in voice user interfaces (VUIs) [2]
VUIs may become more widely used in commercial settings
- Voice AI is already used in drive-through ordering
The use of DPs may also increase in VUIs
[2] Owens et al.: Exploring Deceptive Design Patterns in Voice Interfaces. EuroUSEC’22
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Related Work on DPs in VUIs
Manipulating speech rate and pitch can steer users’
decision-making [3]
Specific vocal characteristics can increase users’ trust
in a system [4]
Assuming interaction in users’ native language
[3] Dubiel et al.: Impact of Voice Fidelity on Decision Making: A Potential Dark Pattern?. IUI’24
[4] Zhang et al.: The Manipulative Power of Voice Characteristics: Investigating Deceptive Patterns in
Mandarin Chinese Female Synthetic Speech. Proc. ACM Interactive, Mobile, Wearable and Ubiquitous
Technologies. 2025
5


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Interacting in a Non-native Language
VUIs do not adequately support users with diverse backgrounds [5]
Non-native speakers often find it difficult to use VUIs [6]
Non-native speakers may be more vulnerable to DPs in VUIs
Focused on manipulating speech rate
Investigated its influence on
non-native speakers’ decision-making
[5] Wenzel et al.: Designing for Harm Reduction: Communication Repair for Multicultural Users’ Voice Interactions. CHI’24
[6] Pyae et al.: Investigating the Role of User’s English Language Proficiency in Using a Voice User Interface: A case of Google Home Smart
Speaker. CHI EA’19
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Research Questions
RQ1: Can non-native speakers’ selections be biased by
deliberately manipulating speech rate?
RQ2: Does the effect on non-native speakers’ selections
change when the speech rate difference between
options varies?
7


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![Page Image](https://bcdn.docswell.com/page/V7NYR3X2E8.jpg)

Experimental Scenario and Options
Overseas travel scenario
-
Included a variety of choice situations
Allowed participants to imagine using a non-native language
Presented 15 questions, each with two options
- e.g., “You are going to visit a garden. Which do you choose?”
-
Garden with roses and trees / Garden with lavender and trees
Kept the number of words consistent across the two options
Changed only part of each option to encourage participants to listen to
the end
8


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Experimental Setup
Manipulated speech rate in five of the 15 questions
- One option was faster, while the other was slower
- Randomized which option was presented faster and which option was
presented first
- Audio was generated using Google Cloud Text-To-Speech
Used four different speech rates and set six conditions covering
all combinations
- 113, 139, 165, and 191 WPM
Between-participants experiment
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Experimental System (191 &amp; 113 WPM)
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Results [1/3]
Participants
- Japanese people who were non-native speakers of English
- 353 (175 males, 176 females, 1 transgender, 1 undisclosed) in total
- 50–60 participants were randomly allocated to each of the six conditions
Average number of audio playbacks
- About 1.2 across all conditions
- No significant differences across conditions
11


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Results [2/3]
Condition
(WPM)
Speed Diff.
(WPM)
113 – 139
26
55.2%
44.8%
.745
139 – 165
26
53.6%
46.4%
.936
165 – 191
26
54.7%
45.3%
.745
113 – 165
52
52.3%
47.7%
.936
139 – 191
52
53.5%
46.5%
.936
113 – 191
78
57.9%
42.1%
.083
Slower selection Faster selection
Adj. p-value


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Results [3/3]
Applied a binomial generalized linear mixed model (GLMM)
- Fixed effect: Speech rate difference
- Random effect: Participant
No significant effect of speech rate difference
Factors
Estimate
Std. Error
Z
p-value
Intercept
0.105
0.133
0.795
.426
Speed Diff.
0.002
0.003
0.630
.529
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Discussion [1/2]
RQ1: Can non-native speakers’ selections be biased by
deliberately manipulating speech rate?
No evidence of selection bias from manipulating speech rate
Consistent with prior work examining the effects of speech rate on
permission requests in users’ native languages [7]
- Neither the faster nor the slower option was selected more frequently
Speech rate manipulation alone has little effect on
decision-making in both native and non-native contexts
[7] Leschanowsky et al.: Exploring the Impact of Modality and Speech Rate Manipulation in Voice Permission Requests—
Limits of Applicability and Potential for Influencing Decision-Making. International Journal of Human-Computer Studies. 2025
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Discussion [2/2]
RQ2: Does the effect on non-native speakers’ selections change
when the speech rate difference between options varies?
Slight differences in selection rates, but no significant
differences across conditions
Humans tend to minimize cognitive effort and prefer information
that is easier to process [8][9]
Further research is needed to reach a conclusion
[8] Oreg et al.: Prone to Bias: Development of a Bias Taxonomy from an Individual Difference Perspective.
Review of General Psychology. 2009
[9] Reber et al.: Effects of Perceptual Fluency on Affective Judgments. Psychological Science. 1998
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Limitations
Participants were Japanese non-native speakers of English
-
Results may differ across cultures
Used an overseas travel scenario
-
Findings may not generalize to other contexts
Potentially limited sample size
- Selection rate difference was 15 percentage points (113–191 WPM condition)
- We determined the sample size assuming a larger difference in selection rates
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Conclusion &amp; Future Work
No clear evidence that manipulating speech rate functions as a
deceptive pattern for non-native speakers
Investigate other scenarios where deceptive patterns could be
applied, such as shopping
Examine fully voice-based interactions, where options are
presented by voice and participants respond by voice
17


