Mindfulness Meditation and Respiration: Accelerometer-Based Respiration Rate and Mindfulness Progress Estimation to Enhance App Engagement and Mindfulness Skills
Mohammad Nur Hossain Khan, David creswell, Jordan Albert, Patrick O'Connell, Shawn Fallon, Mathew Polowitz, Xuhai "orson" Xu, and Bashima islam

TL;DR
This paper presents a smartphone-based respiration tracking and mindfulness skill estimation framework that improves user engagement and skill development in digital mindfulness apps by leveraging accelerometer data.
Contribution
It introduces a novel accelerometer-based respiration tracking algorithm and a quantitative mindfulness skill estimation framework, enhancing app usability and mindfulness training effectiveness.
Findings
Respiration tracking achieves 1.6 breaths per minute MAE.
Mindfulness skill estimation attains 80-84% F1 scores.
Respiration feedback improves system usability.
Abstract
Mindfulness training is widely recognized for its benefits in reducing depression, anxiety, and loneliness. With the rise of smartphone-based mindfulness apps, digital meditation has become more accessible, but sustaining long-term user engagement remains a challenge. This paper explores whether respiration biosignal feedback and mindfulness skill estimation enhance system usability and skill development. We develop a smartphone's accelerometer-based respiration tracking algorithm, eliminating the need for additional wearables. Unlike existing methods, our approach accurately captures slow breathing patterns typical of mindfulness meditation. Additionally, we introduce the first quantitative framework to estimate mindfulness skills-concentration, sensory clarity, and equanimity-based on accelerometer-derived respiration data. We develop and test our algorithms on 261 mindfulness…
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Taxonomy
TopicsSports and Physical Education Research · Mindfulness and Compassion Interventions · Blockchain Technology in Education and Learning
