| Chapter 1 |
CLASSICAL LIGHT SCATTERING MODELS |
| Chapter 2 |
LIGHT SCATTERING FROM CONTINUOUS RANDOM MEDIA |
| Chapter 3 |
MODELING OF LIGHT SCATTERING BY BIOLOGICAL TISSUES VIA COMPUTATIONAL SOLUTION OF MAXWELL’S EQUATIONS |
| Chapter 4 |
INTERFEROMETRIC SYNTHETIC APERTURE MICROSCOPY |
| Chapter 5 |
LIGHT SCATTERING AS A TOOL IN CELL BIOLOGY |
| Chapter 6 |
LIGHT ABSORPTION AND SCATTERING SPECTROSCOPIC MICROSCOPIES |
| Chapter 7 |
LIGHT SCATTERING IN CONFOCAL REFLECTANCE MICROSCOPY |
| Chapter 8 |
TISSUE ULTRASTRUCTURE SCATTERING WITH NEAR-INFRARED SPECTROSCOPY: EX VIVO AND IN VIVO INTERPRETATION |
| Chapter 9 |
DYNAMIC LIGHT SCATTERING AND MOTILITY-CONTRAST IMAGING OF LIVING TISSUE |
| Chapter 10 |
LASER SPECKLE CONTRAST IMAGING OF BLOOD FLOW |
| Chapter 11 |
ELASTIC-SCATTERING SPECTROSCOPY FOR OPTICAL BIOPSY: PROBE DESIGNS AND ANALYTICAL METHODS FOR CLINICAL APPLICATIONS |
| Chapter 12 |
DIFFERENTIAL PATHLENGTH SPECTROSCOPY |
| Chapter 13 |
ANGLE-RESOLVED LOW-COHERENCE INTERFEROMETRY: DEPTH-RESOLVED LIGHT SCATTERING FOR DETECTING NEOPLASIA |
| Chapter 14 |
ENHANCED BACKSCATTERING AND LOW-COHERENCE ENHANCED BACKSCATTERING SPECTROSCOPY |