| Style | Citing Format |
|---|---|
| MLA | Isfahani M, et al.. "A Hybrid Dynamic Wavelet-Based Modeling Method for Blood Glucose Concentration Prediction in Type 1 Diabetes." Journal of Medical Signals and Sensors, vol. 10, no. 3, 2020, pp. 174-184. |
| APA | Isfahani M, Zekri M, Marateb H, Faghihimani E (2020). A Hybrid Dynamic Wavelet-Based Modeling Method for Blood Glucose Concentration Prediction in Type 1 Diabetes. Journal of Medical Signals and Sensors, 10(3), 174-184. |
| Chicago | Isfahani M, Zekri M, Marateb H, Faghihimani E. "A Hybrid Dynamic Wavelet-Based Modeling Method for Blood Glucose Concentration Prediction in Type 1 Diabetes." Journal of Medical Signals and Sensors 10, no. 3 (2020): 174-184. |
| Harvard | Isfahani M et al. (2020) 'A Hybrid Dynamic Wavelet-Based Modeling Method for Blood Glucose Concentration Prediction in Type 1 Diabetes', Journal of Medical Signals and Sensors, 10(3), pp. 174-184. |
| Vancouver | Isfahani M, Zekri M, Marateb H, Faghihimani E. A Hybrid Dynamic Wavelet-Based Modeling Method for Blood Glucose Concentration Prediction in Type 1 Diabetes. Journal of Medical Signals and Sensors. 2020;10(3):174-184. |
| BibTex | @article{ author = {Isfahani M and Zekri M and Marateb H and Faghihimani E}, title = {A Hybrid Dynamic Wavelet-Based Modeling Method for Blood Glucose Concentration Prediction in Type 1 Diabetes}, journal = {Journal of Medical Signals and Sensors}, volume = {10}, number = {3}, pages = {174-184}, year = {2020} } |
| RIS | TY - JOUR AU - Isfahani M AU - Zekri M AU - Marateb H AU - Faghihimani E TI - A Hybrid Dynamic Wavelet-Based Modeling Method for Blood Glucose Concentration Prediction in Type 1 Diabetes JO - Journal of Medical Signals and Sensors VL - 10 IS - 3 SP - 174 EP - 184 PY - 2020 ER - |