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Updated: Aug 27, 2025

Uncovering Beat Deafness: Detecting Rhythm Disorders with Synchronized Finger Tapping and Perceptual Timing Tasks
Published on: March 16, 2015
Modeling enculturated bias in entrainment to rhythmic patterns.
Thomas Kaplan1, Jonathan Cannon2, Lorenzo Jamone1,3
1Cognitive Science Research Group, School of Electronic Engineering & Computer Science, Queen Mary University of London, London, United Kingdom.
Music experience shapes rhythm perception, influencing how we track and move to rhythms. This study introduces a new model, pPIPPET, showing how cultural timing expectations guide optimal rhythm inference and explaining observed biases in music perception.
Area of Science:
- Cognitive Science
- Auditory Perception
- Computational Neuroscience
Background:
- Music experience and cultural background significantly shape rhythm perception and entrainment.
- The precise mechanisms by which enculturated biases influence moment-to-moment rhythm tracking remain unclear.
- Existing models like PIPPET (Phase Inference from Point Process Event Timing) frame rhythm entrainment as phase estimation but do not fully account for pattern inference.
Purpose of the Study:
- To extend the PIPPET model to incorporate the inference of underlying event timing patterns.
- To formalize a model (pPIPPET) that integrates culturally-learned expectations into optimal rhythm tracking.
- To investigate how enculturated biases in rhythm perception arise from optimal inference processes.
Main Methods:
- Developed pPIPPET (PIPPET with pattern inference), a computational model extending PIPPET to infer suitable event timing patterns.
- Initialized pPIPPET with priors derived from culturally-specific musical rhythms.
- Evaluated pPIPPET using simulations of human tapping data, rhythm categorization, and iterated rhythm reproduction.
Main Results:
- pPIPPET qualitatively reproduced enculturated biases in human tapping for simple rhythms.
- Simulations using Western musical patterns predicted Western musicians' categorization of rhythms.
- Models trained on diverse cultural music samples exhibited both universal and culture-specific biases in rhythm reproduction, matching experimental findings.
Conclusions:
- Enculturated timing expectations in rhythm perception and motor entrainment can be modeled as approximations of optimal inference.
- The pPIPPET framework provides a computational account of how cultural music environments shape rhythmic perception.
- This approach offers insights into the interplay between learning, inference, and cultural influences on auditory processing.
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