Circuits, Signals, and Systems for Bioengineers: A MATLAB-Based Introduction: Biomedical Engineering
Autor John Semmlowen Limba Engleză Paperback – 17 oct 2024
- Covers current applications in biocontrol, with examples from physiological systems modeling, such as the respiratory system
- Features revised material throughout, with improved clarity of presentation and more biological, physiological, and medical examples and applications
- Includes support materials, such as solutions, lecture slides, MATLAB data, and functions needed to solve problems
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Specificații
ISBN-13: 9780443158865
ISBN-10: 044315886X
Pagini: 782
Dimensiuni: 191 x 235 x 26 mm
Greutate: 1.12 kg
Ediția:4
Editura: ELSEVIER SCIENCE
Seria Biomedical Engineering
ISBN-10: 044315886X
Pagini: 782
Dimensiuni: 191 x 235 x 26 mm
Greutate: 1.12 kg
Ediția:4
Editura: ELSEVIER SCIENCE
Seria Biomedical Engineering
Cuprins
Part I - SIGNALS
1. The Big Picture: Bioengineering Signals and Systems
2. Signal Analysis in the Time Domain
3. Signal Analysis in the Frequency Domain: The Fourier Series and the Fourier Transformation
4. Signal Analysis in the Frequency Domain - Implications and Applications
Part II - SYSTEMS
5. Linear Systems Analysis in the Time Domain - Convolution
6. Linear Systems Analysis in the Frequency Domain: The Transfer Function
7. Linear Systems in the Complex Frequency Domain: The Laplace Transform
8. Analysis of Discrete Linear Systems - The z-Transform and Applications to Filters
9. System Modeling and Simulink
10. Stochastic, Nonstationary, and Nonlinear Systems and Signals
11. Two-Dimensional Signals - Basic Image Analysis
PART III - CIRCUITS
12. Circuits Elements and Circuit Variables
13. Analysis of Analog Circuits and Models
14. Circuit Reduction - Simplifications
15. Basic Analog Electronics - Operational Amplifiers
1. The Big Picture: Bioengineering Signals and Systems
2. Signal Analysis in the Time Domain
3. Signal Analysis in the Frequency Domain: The Fourier Series and the Fourier Transformation
4. Signal Analysis in the Frequency Domain - Implications and Applications
Part II - SYSTEMS
5. Linear Systems Analysis in the Time Domain - Convolution
6. Linear Systems Analysis in the Frequency Domain: The Transfer Function
7. Linear Systems in the Complex Frequency Domain: The Laplace Transform
8. Analysis of Discrete Linear Systems - The z-Transform and Applications to Filters
9. System Modeling and Simulink
10. Stochastic, Nonstationary, and Nonlinear Systems and Signals
11. Two-Dimensional Signals - Basic Image Analysis
PART III - CIRCUITS
12. Circuits Elements and Circuit Variables
13. Analysis of Analog Circuits and Models
14. Circuit Reduction - Simplifications
15. Basic Analog Electronics - Operational Amplifiers