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Advances in Optical Imaging for Clinical Medicine 1st Edition by Nicusor Iftimia, William R Brugge, Daniel X Hammer ISBN 0470619090 9780470619094

  • SKU: BELL-2121964
Advances in Optical Imaging for Clinical Medicine 1st Edition by Nicusor Iftimia, William R Brugge, Daniel X Hammer ISBN 0470619090 9780470619094
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Advances in Optical Imaging for Clinical Medicine 1st Edition by Nicusor Iftimia, William R Brugge, Daniel X Hammer ISBN 0470619090 9780470619094 instant download after payment.

Publisher: Wiley
File Extension: PDF
File size: 7.75 MB
Pages: 555
Author: Nicusor Iftimia, William R. Brugge, Daniel X. Hammer
ISBN: 0470619090
Language: English
Year: 2011
Edition: 1

Product desciption

Advances in Optical Imaging for Clinical Medicine 1st Edition by Nicusor Iftimia, William R Brugge, Daniel X Hammer ISBN 0470619090 9780470619094 by Nicusor Iftimia, William R. Brugge, Daniel X. Hammer 0470619090 instant download after payment.

Advances in Optical Imaging for Clinical Medicine 1st Edition by Nicusor Iftimia, William R Brugge, Daniel X Hammer - Ebook PDF Instant Download/Delivery: 0470619090, 9780470619094
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Product details:

ISBN 10: 0470619090 
ISBN 13: 9780470619094
Author: Nicusor Iftimia, William R Brugge, Daniel X Hammer

This book provides students, teachers, researchers and clinicians with a strong and established source of information on advanced optical technologies that show real promise of being translated to clinical use.

Advances in Optical Imaging for Clinical Medicine 1st Table of contents:

Part I: Fundamental Principles and Enabling Technologies

  • Chapter 1: Introduction to Optical Imaging in Medicine
    • Overview of Medical Imaging Modalities (X-ray, MRI, CT, Ultrasound)
    • The Promise of Optical Imaging: Non-ionizing, High Resolution, Functional Information
    • Basic Principles of Light-Tissue Interaction (Absorption, Scattering, Fluorescence)
    • Historical Perspective and Recent Milestones
  • Chapter 2: Light Sources, Detectors, and Optical Components
    • Lasers (Diode, Solid-State, Ultrafast), LEDs, and Supercontinuum Sources
    • Photodetectors (PMTs, CCDs, EMCCDs, SPADs)
    • Fibers, Lenses, Filters, and Other Essential Optics
    • Adaptive Optics for Tissue Penetration
  • Chapter 3: Fluorescent Probes and Contrast Agents
    • Endogenous Fluorophores (NAD(P)H, FAD, Collagen, Elastin)
    • Exogenous Dyes and Nanoparticles (Quantum Dots, Gold Nanoparticles, Carbon Dots)
    • Activatable Probes and Biosensors
    • Targeting Strategies for Molecular Imaging

Part II: Established and Emerging Optical Imaging Modalities

  • Chapter 4: Optical Coherence Tomography (OCT)
    • Principles of Interferometry and OCT Modalities (Time-Domain, Spectral-Domain, Swept-Source)
    • Doppler OCT for Blood Flow Imaging
    • OCT Angiography (OCTA)
    • Clinical Applications and Case Studies
  • Chapter 5: Confocal and Multiphoton Microscopy
    • Principles of Confocal Imaging (Pinhole, Laser Scanning)
    • Two-Photon and Multi-Photon Microscopy for Deep Tissue Imaging
    • Harmonic Generation Microscopy (SHG, THG)
    • In Vivo and Ex Vivo Applications
  • Chapter 6: Diffuse Optical Tomography (DOT) and Spectroscopy (DOS)
    • Principles of Light Propagation in Highly Scattering Media
    • Near-Infrared Spectroscopy (NIRS) for Tissue Oxygenation
    • Diffuse Correlation Spectroscopy (DCS) for Blood Flow
    • Reconstruction Algorithms for Tomographic Imaging
  • Chapter 7: Photoacoustic (Optoacoustic) Imaging
    • Principles of Photoacoustic Effect
    • Photoacoustic Microscopy (PAM) and Tomography (PAT)
    • Hybrid Modality Advantages (Optical Contrast, Ultrasonic Depth)
    • Clinical Translation and Research Directions
  • Chapter 8: Endoscopy and Endomicroscopy
    • Fiber-Optic Imaging Systems
    • Miniature Probes for In Vivo Imaging
    • Confocal Endomicroscopy and OCT Endoscopy
    • Applications in Gastroenterology, Pulmonology, etc.
  • Chapter 9: Raman Spectroscopy and Imaging
    • Principles of Raman Scattering
    • Surface-Enhanced Raman Spectroscopy (SERS)
    • Coherent Anti-Stokes Raman Scattering (CARS) Microscopy
    • Label-Free Molecular Fingerprinting in Tissues

Part III: Clinical Applications and Disease-Specific Advances

  • Chapter 10: Optical Imaging in Oncology
    • Early Cancer Detection and Diagnosis
    • Image-Guided Biopsy and Surgery
    • Monitoring Treatment Response
    • Specific Applications in Skin, Breast, Colon, Head & Neck Cancers
  • Chapter 11: Neuroimaging and Brain Function
    • Functional NIRS for Brain Activation Mapping
    • Optical Imaging of Neural Activity
    • Applications in Stroke, Epilepsy, and Neurodegenerative Diseases
  • Chapter 12: Cardiovascular Imaging
    • OCT for Intravascular Plaque Characterization
    • Photoacoustic Imaging for Atherosclerosis
    • Functional Imaging of Cardiac Tissue
  • Chapter 13: Ophthalmic and Dermatological Imaging
    • Advanced OCT for Retinal Diseases (AMD, Glaucoma)
    • Microscopy Techniques for Skin Cancer Diagnosis
    • Imaging of Ocular Blood Flow and Structure
  • Chapter 14: Other Clinical Applications
    • Orthopedics and Cartilage Imaging
    • Urology and Gynecological Applications
    • Microcirculation and Wound Healing Assessment

Part IV: Data Analysis, Integration, and Future Outlook

  • Chapter 15: Image Processing and Quantitative Analysis
    • Image Reconstruction and Enhancement
    • Segmentation, Registration, and Feature Extraction
    • Machine Learning and AI for Image Interpretation
    • Quantitative Biomarker Extraction from Optical Data
  • Chapter 16: Multi-Modal and Hybrid Imaging
    • Combining Optical Imaging with Ultrasound, MRI, or PET
    • Synergistic Advantages of Integrated Systems
    • Challenges in Data Fusion and Interpretation
  • Chapter 17: Challenges and Limitations of Clinical Translation
    • Depth Penetration vs. Resolution Trade-offs
    • Motion Artifacts and Tissue Heterogeneity
    • Regulatory Pathways and Clinical Trial Design
    • Cost-Effectiveness and Integration into Clinical Workflows
  • Chapter 18: The Future of Optical Imaging in Medicine
    • Miniaturization and Wearable Devices
    • AI-Powered Diagnostics and Personalized Medicine
    • Theranostics and Image-Guided Therapies
    • Emerging Technologies and Unforeseen Applications
    • The Road Ahead for Clinical Adoption

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Tags: Nicusor Iftimia, William R Brugge, Daniel X Hammer, Advances, Clinical

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