Healthcare Systems Design of Intelligent Testing Centers: Latest Technologies to Battle Pandemics such as Covid-19 highlights the importance of designing intelligent testing centers requiring no human intervention during sample collection and testing of the Covid-19 virus and all similar viruses. This book introduces the background, medical requirements, and new research on medical robotics applications, including general Covid-19 testing techniques, development considerations for intelligent testing booths, kinematic and dynamic modeling, design specifications and optimization, numerical…mehr
Healthcare Systems Design of Intelligent Testing Centers: Latest Technologies to Battle Pandemics such as Covid-19 highlights the importance of designing intelligent testing centers requiring no human intervention during sample collection and testing of the Covid-19 virus and all similar viruses. This book introduces the background, medical requirements, and new research on medical robotics applications, including general Covid-19 testing techniques, development considerations for intelligent testing booths, kinematic and dynamic modeling, design specifications and optimization, numerical verifications, actuators, and sensors in medical applications of artificial intelligence and robotics systems.
Prof Tawanda Mushiri is an Executive Director - Technical (ED-Tech) at Scientific and Industrial Research and Development Centre (SIRDC) in Zimbabwe, a Senior Research Associate, Department of Sport and Movement Studies, Biomedical Engineering and Healthcare Technology (BEAHT) Research Centre, Faculty of Health Sciences, University of Johannesburg, South Africa. His research interests are in artificial intelligence, robotics, biomedical engineering, medical physics, and healthcare systems design. Prof. Mushiri is a member of both the Zimbabwe Institute of Engineers and the Engineering Council of Zimbabwe.
Inhaltsangabe
1. Introduction 2. Uses of artificial intelligence and robotics in healthcare systems 3. Robotic manipulator components description 4. A study of current covid-19 testing techniques in hospitals 5. Design of an intelligent covid-19 testing centre 6. Using robotics, artificial intelligence and deep learning to collect covid-19 samples 7. Validation of the kinematics and dynamics models of a robotic manipulator using the robotics-toolbox 8. Design optimisation of a medical robotic manipulator using finite element analysis 9. Economic analysis of the robotic testing machine
1. Introduction 2. Uses of artificial intelligence and robotics in healthcare systems 3. Robotic manipulator components description 4. A study of current covid-19 testing techniques in hospitals 5. Design of an intelligent covid-19 testing centre 6. Using robotics, artificial intelligence and deep learning to collect covid-19 samples 7. Validation of the kinematics and dynamics models of a robotic manipulator using the robotics-toolbox 8. Design optimisation of a medical robotic manipulator using finite element analysis 9. Economic analysis of the robotic testing machine
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