Advances in Imaging and Sensing
Herausgeber: Tang, Shuo; Saeedkia, Daryoosh
Advances in Imaging and Sensing
Herausgeber: Tang, Shuo; Saeedkia, Daryoosh
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Electronic imaging and sensing systems are used for medical diagnosis. In recent years, for example, dental offices have been switching to digital X-ray imaging systems. Another growing application area is the use of digital infrared imaging systems for home inspections which can spot invisible water damage. Of course, electronic imaging and sen
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Electronic imaging and sensing systems are used for medical diagnosis. In recent years, for example, dental offices have been switching to digital X-ray imaging systems. Another growing application area is the use of digital infrared imaging systems for home inspections which can spot invisible water damage. Of course, electronic imaging and sen
Produktdetails
- Produktdetails
- Devices, Circuits, and Systems
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 304
- Erscheinungstermin: 12. Juli 2022
- Englisch
- Abmessung: 234mm x 156mm x 16mm
- Gewicht: 466g
- ISBN-13: 9781032339900
- ISBN-10: 103233990X
- Artikelnr.: 64705381
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Devices, Circuits, and Systems
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 304
- Erscheinungstermin: 12. Juli 2022
- Englisch
- Abmessung: 234mm x 156mm x 16mm
- Gewicht: 466g
- ISBN-13: 9781032339900
- ISBN-10: 103233990X
- Artikelnr.: 64705381
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Shuo Tang received her BS and MS in electronics from Peking University, China, in 1992 and 1997, respectively. She received her PhD in electrical engineering from the University of California, Los Angeles, in 2003. From 2003 to 2006, she was a postdoctoral researcher at the Beckman Laser Institute at the University of California, Irvine. She began as an assistant professor at the Department of Electrical and Computer Engineering at the University of British Columbia in 2007, where she has been an associate professor since 2013. Prof. Tang's research interests are in the broad areas of biomedical optical imaging systems and devices, including multiphoton microscopy, optical coherence tomography, photoacoustic imaging, and micro-endoscopy systems for biomedical applications. She is the author or coauthor of over 90 journal articles, conference papers, and book chapters. Daryoosh Saeedkia received his PhD in electrical and computer engineering from the University of Waterloo in 2005. In 2010, he founded TeTechS Inc, a leading innovator and provider of advanced terahertz measurement solutions for scientific and industrial applications worldwide. He has more than 12 years of industrial and academic experience in terahertz photonics technology, has delivered 12 invited talks, and has published more than 55 scientific articles, a book, and a book chapter in the area of terahertz technology. Dr. Saeedkia is the recipient of the 2008 Douglas R. Colton Medal for Research Excellence in Canada and the 2006 NSERC Innovation Challenge Award.
Section I: Technology and Devices. Theory and Experiments on THz Devices on
Graphene. Theory and Experiments on THz Devices on Graphene. Photonic
Engineering of Terahertz Quantum Cascade Lasers. Section II: Imaging
Sensors and Systems. Intense Few-Cycle Terahertz Pulses and Nonlinear
Terahertz Spectroscopy. Applications of Terahertz Technology for Plastic
Industry. Cross-Sectional Velocity Distribution Measurement Based on
Fiber-Optic Differential Laser Doppler Velocimetry. Integrated CMOS Optical
Biosensor Systems. Design of CMOS Microsystems for Time-Correlated
Single-Photon Counting Fluorescence Lifetime Analysis. Section III:
Biomedical Applications. Fiber Delivery of Femtosecond Pulses for
Multiphoton Endoscopy. In Vivo Flow Cytometer: A Powerful Tool to Study
Cancer Metastasis. Transition Metal Luminophores for Cell Imaging.
Three-Dimensional Electrical Impedance Tomography forPulmonary Embolism: A
Simulation Study of a 16-Electrode System.
Graphene. Theory and Experiments on THz Devices on Graphene. Photonic
Engineering of Terahertz Quantum Cascade Lasers. Section II: Imaging
Sensors and Systems. Intense Few-Cycle Terahertz Pulses and Nonlinear
Terahertz Spectroscopy. Applications of Terahertz Technology for Plastic
Industry. Cross-Sectional Velocity Distribution Measurement Based on
Fiber-Optic Differential Laser Doppler Velocimetry. Integrated CMOS Optical
Biosensor Systems. Design of CMOS Microsystems for Time-Correlated
Single-Photon Counting Fluorescence Lifetime Analysis. Section III:
Biomedical Applications. Fiber Delivery of Femtosecond Pulses for
Multiphoton Endoscopy. In Vivo Flow Cytometer: A Powerful Tool to Study
Cancer Metastasis. Transition Metal Luminophores for Cell Imaging.
Three-Dimensional Electrical Impedance Tomography forPulmonary Embolism: A
Simulation Study of a 16-Electrode System.
Section I: Technology and Devices. Theory and Experiments on THz Devices on
Graphene. Theory and Experiments on THz Devices on Graphene. Photonic
Engineering of Terahertz Quantum Cascade Lasers. Section II: Imaging
Sensors and Systems. Intense Few-Cycle Terahertz Pulses and Nonlinear
Terahertz Spectroscopy. Applications of Terahertz Technology for Plastic
Industry. Cross-Sectional Velocity Distribution Measurement Based on
Fiber-Optic Differential Laser Doppler Velocimetry. Integrated CMOS Optical
Biosensor Systems. Design of CMOS Microsystems for Time-Correlated
Single-Photon Counting Fluorescence Lifetime Analysis. Section III:
Biomedical Applications. Fiber Delivery of Femtosecond Pulses for
Multiphoton Endoscopy. In Vivo Flow Cytometer: A Powerful Tool to Study
Cancer Metastasis. Transition Metal Luminophores for Cell Imaging.
Three-Dimensional Electrical Impedance Tomography forPulmonary Embolism: A
Simulation Study of a 16-Electrode System.
Graphene. Theory and Experiments on THz Devices on Graphene. Photonic
Engineering of Terahertz Quantum Cascade Lasers. Section II: Imaging
Sensors and Systems. Intense Few-Cycle Terahertz Pulses and Nonlinear
Terahertz Spectroscopy. Applications of Terahertz Technology for Plastic
Industry. Cross-Sectional Velocity Distribution Measurement Based on
Fiber-Optic Differential Laser Doppler Velocimetry. Integrated CMOS Optical
Biosensor Systems. Design of CMOS Microsystems for Time-Correlated
Single-Photon Counting Fluorescence Lifetime Analysis. Section III:
Biomedical Applications. Fiber Delivery of Femtosecond Pulses for
Multiphoton Endoscopy. In Vivo Flow Cytometer: A Powerful Tool to Study
Cancer Metastasis. Transition Metal Luminophores for Cell Imaging.
Three-Dimensional Electrical Impedance Tomography forPulmonary Embolism: A
Simulation Study of a 16-Electrode System.