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Human Activity Recognition from Smartphone Sensor Data for Clinical Trials

Human Activity Recognition from Smartphone Sensor Data for Clinical Trials

来源:Arxiv_logoArxiv
英文摘要

We developed a ResNet-based human activity recognition (HAR) model with minimal overhead to detect gait versus non-gait activities and everyday activities (walking, running, stairs, standing, sitting, lying, sit-to-stand transitions). The model was trained and evaluated using smartphone sensor data from adult healthy controls (HC) and people with multiple sclerosis (PwMS) with Expanded Disability Status Scale (EDSS) scores between 0.0-6.5. Datasets included the GaitLab study (ISRCTN15993728), an internal Roche dataset, and publicly available data sources (training only). Data from 34 HC and 68 PwMS (mean [SD] EDSS: 4.7 [1.5]) were included in the evaluation. The HAR model showed 98.4% and 99.6% accuracy in detecting gait versus non-gait activities in the GaitLab and Roche datasets, respectively, similar to a comparative state-of-the-art ResNet model (99.3% and 99.4%). For everyday activities, the proposed model not only demonstrated higher accuracy than the state-of-the-art model (96.2% vs 91.9%; internal Roche dataset) but also maintained high performance across 9 smartphone wear locations (handbag, shopping bag, crossbody bag, backpack, hoodie pocket, coat/jacket pocket, hand, neck, belt), outperforming the state-of-the-art model by 2.8% - 9.0%. In conclusion, the proposed HAR model accurately detects everyday activities and shows high robustness to various smartphone wear locations, demonstrating its practical applicability.

Stefania Russo、Rafał Klimas、Marta Płonka、Hugo Le Gall、Sven Holm、Dimitar Stanev、Florian Lipsmeier、Mattia Zanon、Lito Kriara

医学研究方法临床医学计算技术、计算机技术

Stefania Russo,Rafał Klimas,Marta Płonka,Hugo Le Gall,Sven Holm,Dimitar Stanev,Florian Lipsmeier,Mattia Zanon,Lito Kriara.Human Activity Recognition from Smartphone Sensor Data for Clinical Trials[EB/OL].(2025-08-07)[2025-08-18].https://arxiv.org/abs/2508.05175.点此复制

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