Device to Measure Respiratory Rate in Children, in Resource Poor Settings
Author:
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11220-024-00499-w.pdf
Reference16 articles.
1. Khan, S. R., Wang, X., Jiang, T., Ju, W., Radacsi, N., Kadir, M. A., & Mitra, S. (2023). Multi-modal portable respiratory rate monitoring device for Childhood Pneumonia Detection. Micromachines, 14(4), 708.
2. Addison, P. S., Cohen, C., Borg, U. R., Antunes, A., Montgomery, D., & Batchelder, P. (2023). Accurate and continuous respiratory rate using touchless monitoring technology. Respiratory Medicine, 220, 107463.
3. Addison, P. S., Antunes, A., Montgomery, D., Smit, P., & Borg, U. R. (2023). Robust non-contact monitoring of respiratory rate using a depth camera. Journal of Clinical Monitoring and Computing, 37(4), 1003–1010.
4. Warnecke, J. M., Lasenby, J., & Deserno, T. M. (2023). Robust in-vehicle respiratory rate detection using multimodal signal fusion. Scientific Reports, 13(1), 20435.
5. RobertsJr, J. D., Walton, R. D., Loyer, V., Bernus, O., & Kulkarni, K. (2024). Open-source software for respiratory rate estimation using single-lead electrocardiograms. Scientific Reports, 14(1), 167.
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