
eBook - PDF
Applied Mathematical Modeling for Biomedical Robotics and Wearable Devices
- 301 pages
- English
- PDF
- Available on iOS & Android
eBook - PDF
Applied Mathematical Modeling for Biomedical Robotics and Wearable Devices
About this book
Applied Mathematical Modelling for Biomedical Robotics and Wearable Devices delves into the innovative convergence of mathematical frameworks and biomedical engineering. The book begins by exploring how advanced mathematical modelling underpins the development and optimization of robotic systems and wearable technologies tailored for medical applications. With a strong emphasis on practical implementation, it serves as a bridge between theoretical concepts and real-world engineering challenges in the healthcare sector. Readers will gain insights into the transformative role of mathematical techniques that drive precision, functionality, and human-centric design in cutting-edge medical technologies.The book also covers interdisciplinary applications, integrating domains like biomechanics, sensor technology, and data analytics. By highlighting case studies and real-world scenarios, it showcases practical advancements in wearable devices that monitor health metrics and robotic systems that assist in surgical procedures.
- Examines the role of applied mathematical modeling in the design, analysis, and optimization of biomedical robots and wearable devices
- Provides an insightful exploration of cutting-edge developments in robotics and wearable devices
- Bridges the gap between the areas of mathematics, engineering, and healthcare
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Yes, you can access Applied Mathematical Modeling for Biomedical Robotics and Wearable Devices by S. Sountharrajan,M. Karthiga,Balamurugan Balasamy,Ali Kashif Bashir in PDF and/or ePUB format, as well as other popular books in Biological Sciences & Biotechnology. We have over one million books available in our catalogue for you to explore.
Information
Table of contents
- Front Cover
- Applied Mathematical Modeling for Biomedical Robotics and Wearable Devices
- Copyright Page
- Contents
- List of contributors
- About the editors
- Preface
- 1 Introduction to biomedical robotics and wearable devices in healthcare
- 2 Mathematical modeling in healthcare engineering
- 3 Mathematical foundations and computational techniques for robotic motion: a unified approach
- 4 Advanced biosignal processing and emotion recognition through artificial intelligence
- 5 Optimization algorithms for design and control
- 6 Kinematics and dynamics of surgical robots
- 7 Sensor fusion and data processing for robot control
- 8 Motion planning and trajectory optimization for robots
- 9 Safety and stability analysis of robot systems
- 10 Rehabilitation robotics: transforming motor recovery and enhancing patient-centered therapies
- 11 Biosignal acquisition and processing for wearable sensors
- 12 Principal components with folds for feature extraction and anomaly detection in physiological data using deep neural network
- 13 A novel ensemble learning approach for leukemia prediction using hybrid machine learning techniques
- 14 Ethical considerations of biomedical robots and wearable devices
- Index
- Back Cover