Objective Assessment of Physical Activity at Home Using a Novel Floor-Vibration Monitoring System: Validation and Comparison With Wearable Activity Trackers and Indirect Calorimetry Measurements
Yuki Nakajima, Asami Kitayama, Yuji Ohta, Nobuhisa Motooka, Mayumi Kuno-Mizumura, Motohiko Miyachi, Shigeho Tanaka, Kazuko Ishikawa-Takata, Julien Tripette

TL;DR
A new floor-vibration system accurately measures housework-related physical activity and outperforms wearable trackers.
Contribution
A novel floor-vibration monitoring system is introduced for assessing physical activity at home.
Findings
Floor-vibration step count showed strong correlation with actual activity intensity (r2=0.82).
Multiple regression models using floor-vibration data achieved high accuracy (r2=0.88).
The system outperformed ActiGraph in predicting step count and intensity.
Abstract
The self-monitoring of physical activity is an effective strategy for promoting active lifestyles. However, accurately assessing physical activity remains challenging in certain situations. This study evaluates a novel floor-vibration monitoring system to quantify housework-related physical activity. This study aims to assess the validity of step-count and physical behavior intensity predictions of a novel floor-vibration monitoring system in comparison with the actual number of steps and indirect calorimetry measurements. The accuracy of the predictions is also compared with that of research-grade devices (ActiGraph GT9X). The Ocha-House, located in Tokyo, serves as an independent experimental facility equipped with high-sensitivity accelerometers installed on the floor to monitor vibrations. Dedicated data processing software was developed to analyze floor-vibration signals and…
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Taxonomy
TopicsErgonomics and Musculoskeletal Disorders · Noise Effects and Management · Context-Aware Activity Recognition Systems
