With contributions from leading international researchers, this second edition of Electrical Impedance Tomography: Methods, History and Applications has been fully updated throughout and contains new developments in the field.
With contributions from leading international researchers, this second edition of Electrical Impedance Tomography: Methods, History and Applications has been fully updated throughout and contains new developments in the field.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
Produktdetails
Series in Medical Physics and Biomedical Engineering
David Holder is a Professor of Biophysics and Clinical Neurophysiology, and an Honorary Consultant in Clinical Neurophysiology at University College London and UCL Hospitals, UK. Andy Adler is a Canada Research Professor in biomedical engineering in Systems and Computer Engineering at Carleton University in Ottawa, Canada.
Inhaltsangabe
Section i. Introduction. 1. Electrical Impedance Tomography. 2. Introduction to EIT Concepts and Technology. Section ii. EIT: Tissue Properties to Image Measures. 3. Electromagnetic Properties of Tissues. 4. Electronics and Hardware. 5. The EIT Forward Problem. 6. The EIT Inverse Problem. 7. D-bar Methods for EIT. 8. EIT Image Interpretation. Section iii. Applications. 9. EIT for Measurement of Function. 10. EIT for Monitring of Ventilation. 11. EIT Monitoring of Hemodynamics. 12. EIT Imaging of Brain Nerves. 13. EIT for Imaging of Cancer. 14. Other Clinical Applications of EIT. 15. Veterinary Applications of EIT. Section iv. Related Technologies. 16. Magnetic Induction Tomography. 17. Electrical Imaging using MRI. 18. Geophysical ERT. 19. Industrial Process Tomography. 20. Devices, History and Conferences.
Section i. Introduction. 1. Electrical Impedance Tomography. 2. Introduction to EIT Concepts and Technology. Section ii. EIT: Tissue Properties to Image Measures. 3. Electromagnetic Properties of Tissues. 4. Electronics and Hardware. 5. The EIT Forward Problem. 6. The EIT Inverse Problem. 7. D-bar Methods for EIT. 8. EIT Image Interpretation. Section iii. Applications. 9. EIT for Measurement of Function. 10. EIT for Monitring of Ventilation. 11. EIT Monitoring of Hemodynamics. 12. EIT Imaging of Brain Nerves. 13. EIT for Imaging of Cancer. 14. Other Clinical Applications of EIT. 15. Veterinary Applications of EIT. Section iv. Related Technologies. 16. Magnetic Induction Tomography. 17. Electrical Imaging using MRI. 18. Geophysical ERT. 19. Industrial Process Tomography. 20. Devices, History and Conferences.
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