Acceso abierto

Enhancing Blood Pressure Sensitivity: Innovative C-Shaped Slot Design in Microsensor Systems


Cite

Z. Liu, C. Zhou, H. Wang, and Y. He, “Blood pressure monitoring techniques in the natural state of multi-scenes: A review,” Front Med (Lausanne), vol. 9, Aug. 2022, doi: 10.3389/fmed.2022.851172. Search in Google Scholar

H. F. Loyke, “Serum lead levels in experimental hypertension.,” J Environ Pathol Toxicol Oncol, vol. 9 3, pp. 239–42, 1989, [Online]. Available: https://api.semanticscholar.org/CorpusID:13368636 Search in Google Scholar

J. Sola, M. Proenca, and O. Chetelat, “Wearable PWV technologies to measure Blood Pressure: eliminating brachial cuffs,” in 2013 35th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), IEEE, Jul. 2013, pp. 4098–4101. doi: 10.1109/EMBC.2013.6610446. Search in Google Scholar

F. Lamonaca et al., “An Overview on Internet of Medical Things in Blood Pressure Monitoring,” in 2019 IEEE International Symposium on Medical Measurements and Applications (MeMeA), IEEE, Jun. 2019, pp. 1–6. doi: 10.1109/MeMeA.2019.8802164. Search in Google Scholar

M. Mahdi, “Ultra-low power MEMS micro-heater device,” Microsystem Technologies, vol. 27, no. 8, pp. 2913–2917, Aug. 2021, doi: 10.1007/s00542-020-05079-y. Search in Google Scholar

Z. Liu, C. Zhou, H. Wang, and Y. He, “Blood pressure monitoring techniques in the natural state of multi-scenes: A review,” Front Med (Lausanne), vol. 9, Aug. 2022, doi: 10.3389/fmed.2022.851172. Search in Google Scholar

T. Lahreche, M. Kandouci, and Y. Hadjadj, “A Comparative Analysis of Different Diaphragm Shaped for MEMS Capacitive Pressure Sensor,” in 2022 19th International Multi-Conference on Systems, Signals & Devices (SSD), IEEE, May 2022, pp. 870–874. doi: 10.1109/SSD54932.2022.9955750. Search in Google Scholar

A. Al-Qatatsheh et al., “Blood Pressure Sensors: Materials, Fabrication Methods, Performance Evaluations and Future Perspectives,” Sensors, vol. 20, no. 16, p. 4484, Aug. 2020, doi: 10.3390/s20164484. Search in Google Scholar

S. C. Constantin, G. Predusca, and E. Diaconu, “Pressure, Temperature and Humidity Monitoring System Using the Arty Platform,” The Scientific Bulletin of Electrical Engineering Faculty, vol. 21, no. 2, pp. 1–5, Dec. 2021, doi: 10.2478/sbeef-2021-0013. Search in Google Scholar

F. Lochon, I. Dufour, and D. Rebière, “An alternative solution to improve sensitivity of resonant microcantilever chemical sensors: comparison between using high-order modes and reducing dimensions,” Sens Actuators B Chem, vol. 108, no. 1–2, pp. 979–985, Jul. 2005, doi: 10.1016/j.snb.2004.11.086. Search in Google Scholar

B. A. Ganji, S. Kheiry, and S. Soleimani, “Design of small size and highly sensitive less invasive wireless blood pressure sensor using MEMS technology,” IET Circuits, Devices and Systems, vol. 13, no. 1, pp. 39–44, Jan. 2019, doi: 10.1049/iet-cds.2018.0013. Search in Google Scholar

S. Timoshenko, Theory of plates and shells. 1989. Search in Google Scholar

P. Cong, W. H. Ko, and D. J. Young, “Wireless Batteryless Implantable Blood Pressure Monitoring Microsystem for Small Laboratory Animals,” IEEE Sens J, vol. 10, no. 2, pp. 243–254, Feb. 2010, doi: 10.1109/JSEN.2009.2030982. Search in Google Scholar

J.-S. Park, J.-K. Kim, S. J. Patil, J.-K. Park, S. Park, and D. Lee, “A Wireless Pressure Sensor Integrated with a Biodegradable Polymer Stent for Biomedical Applications,” Sensors (Basel), vol. 16, 2016, [Online]. Available: https://api.semanticscholar.org/CorpusID:694458 Search in Google Scholar