Kirk, C.; Kuederle, A.; Tasca, P.; Bicer, M.; Megaritis, D.; Gazit, E.; Bonci, T.; Ionescu, A.; Hinchliffe, C.; Stihi, A.;
et al. Mobgap: A State-of-the-Art Python Framework for Reproducible Estimation and Algorithm Validation of Digital Mobility Outcomes from a Single Wearable Device. Sensors 2026, 26, 4294.
https://doi.org/10.3390/s26134294
AMA Style
Kirk C, Kuederle A, Tasca P, Bicer M, Megaritis D, Gazit E, Bonci T, Ionescu A, Hinchliffe C, Stihi A,
et al. Mobgap: A State-of-the-Art Python Framework for Reproducible Estimation and Algorithm Validation of Digital Mobility Outcomes from a Single Wearable Device. Sensors. 2026; 26(13):4294.
https://doi.org/10.3390/s26134294
Chicago/Turabian Style
Kirk, Cameron, Arne Kuederle, Paolo Tasca, Metin Bicer, Dimitrios Megaritis, Eran Gazit, Tecla Bonci, Anisora Ionescu, Chloe Hinchliffe, Alexandru Stihi,
and et al. 2026. "Mobgap: A State-of-the-Art Python Framework for Reproducible Estimation and Algorithm Validation of Digital Mobility Outcomes from a Single Wearable Device" Sensors 26, no. 13: 4294.
https://doi.org/10.3390/s26134294
APA Style
Kirk, C., Kuederle, A., Tasca, P., Bicer, M., Megaritis, D., Gazit, E., Bonci, T., Ionescu, A., Hinchliffe, C., Stihi, A., Muecke, A., Babar, Z., Vogiatzis, I., Eskofier, B., Mazzà , C., Cereatti, A., Mueller, A., Rooks, D., Caulfield, B.,
... Del Din, S.
(2026). Mobgap: A State-of-the-Art Python Framework for Reproducible Estimation and Algorithm Validation of Digital Mobility Outcomes from a Single Wearable Device. Sensors, 26(13), 4294.
https://doi.org/10.3390/s26134294