Enbiya, S., Hossain, Alamgir and Mahieddine, F. (2011) Multi-drug infusion control using model reference adaptive algorithm. In: Advances in intelligent and soft computing. Springer, Berlin, pp. 141-148. ISBN 9783642199134
| PDF (Conference paper) Download (786kB) | Preview |
Abstract
Control of physiological states such as mean arterial pressure (MAP) has been successfully achieved using single drug by different control algorithms. Multi-drug delivery demonstrates a significantly challenging task as compared to control with a single-drug. Also the patient’s sensitivity to the drugs varies from patient to patient. Therefore, the implementation of adaptive controller is very essential to improve the patient care in order to reduce the workload of healthcare staff and costs. This paper presents the design and implementation of the model reference adaptive controller (MRAC) to regulate mean arterial pressure and cardiac output by administering vasoactive and inotropic drugs that are sodium nitroprusside (SNP) and dopamine (DPM) respectively. The proposed adaptive control model has been implemented, tested and verified to demonstrate its merits and capabilities as compared to the existing research work.
| Item Type: | Book Section |
|---|---|
| Additional Information: | 5th International Conference on Practical Applications of Computational Biology & Bioinformatics. Salamanca, Spain 6-8 April 2011. |
| Uncontrolled Keywords: | Bioinformatics, computational Biology, computational intelligence |
| Subjects: | C900 Others in Biological Sciences G900 Others in Mathematical and Computing Sciences |
| Divisions: | Faculties > Engineering and Environment > School of Computing, Engineering and Information Sciences > Computer and Electronic Security Systems |
| Related URLs: | |
| Depositing User: | EPrints Services |
| Date Deposited: | 05 Aug 2011 10:43 |
| Last Modified: | 22 Feb 2013 10:05 |
| URI: | http://nrl.northumbria.ac.uk/id/eprint/2591 |
Actions (login required)
| Repository staff: update this record |

Tools
Tools