A Review of Modern Control Strategies for Clinical Evaluation of Propofol Anesthesia Administration Employing Hypnosis Level Regulation

Author:

Ilyas Muhammad12,Butt Muhammad Fasih Uddin1ORCID,Bilal Muhammad1,Mahmood Khalid2,Khaqan Ali1ORCID,Ali Riaz Raja1

Affiliation:

1. Department of Electrical Engineering, COMSATS Institute of Information Technology, Islamabad 45550, Pakistan

2. Department of Electrical Engineering, Iqra National University, Peshawar 25000, Pakistan

Abstract

Regulating the depth of hypnosis during surgery is one of the major objectives of an anesthesia infusion system. Continuous administration of Propofol infusion during surgical procedures is essential but it unduly increases the load of an anesthetist working in a multitasking scenario in the operation theatre. Manual and target controlled infusion systems are not appropriate to handle instabilities like blood pressure and heart rate changes arising due to interpatient and intrapatient variability. Patient safety, large interindividual variability, and less postoperative effects are the main factors motivating automation in anesthesia administration. The idea of automated system for Propofol infusion excites control engineers to come up with more sophisticated systems that can handle optimum delivery of anesthetic drugs during surgery and avoid postoperative effects. A linear control technique is applied initially using three compartmental pharmacokinetic and pharmacodynamic models. Later on, sliding mode control and model predicative control achieve considerable results with nonlinear sigmoid model. Chattering and uncertainties are further improved by employing adaptive fuzzy control andHcontrol. The proposed sliding mode control scheme can easily handle the nonlinearities and achieve an optimum hypnosis level as compared to linear control schemes, hence preventing mishaps such as underdosing and overdosing of anesthesia.

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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1. Multivariable discrete MPC with exponential cost function on the automation of the anesthesia process;International Journal of Robust and Nonlinear Control;2023-10-03

2. PAS: a Python Anesthesia Simulator for drug control;Journal of Open Source Software;2023-08-14

3. Model Predictive Control with Exponential Cost Function to Regulate the Propofol Infusion Rate;2022 XXIV Robotics Mexican Congress (COMRob);2022-11-09

4. Fractional-Order Control Strategy for Anesthesia–Hemodynamic Stabilization in Patients Undergoing Surgical Procedures;Fractal and Fractional;2022-10-20

5. Automatic Anesthesia Depth Control System For Isoflurane Concentration;2022 19th International Bhurban Conference on Applied Sciences and Technology (IBCAST);2022-08-16

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