Abstract
We present an overview of quantitative and label-free optical methods used to characterize living biological tissues, with an emphasis on emerging applications in clinical tissue diagnostics. Specifically, this review focuses on diffuse optical spectroscopy, imaging, and tomography, optical coherence-based techniques, and nonlinear optical methods for molecular imaging. The potential for non- or minimally invasive assessment, quantitative diagnostics, and continuous monitoring enabled by these tissue-optics technologies provides significant promise for continued clinical translation.
Author supplied keywords
- 42.30.Wb (Image reconstruction; tomography)
- 42.62.Be (Laser applications: Biological and medical applications)
- 87.57 (Medical imaging)
- 87.64 (Spectroscopic and microscopic techniques in biophysics and medical physics)
- Tissue optics
- coherent anti-stokes Raman
- diffuse correlation spectroscopy
- diffuse optical spectroscopy
- laser speckle imaging
- multi-photon microscopy
- second-harmonic generation
Cite
CITATION STYLE
Wilson, R. H., Vishwanath, K., & Mycek, M. A. (2016, July 3). Optical methods for quantitative and label-free sensing in living human tissues: principles, techniques, and applications. Advances in Physics: X. Taylor and Francis Ltd. https://doi.org/10.1080/23746149.2016.1221739
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