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Terahertz pulse imaging in reflection geometry of human skin cancer and skin tissue

Physics in Medicine and Biology · 2002 · Vol. 47(21) · pp. 3853–3863
Ruth M. WoodwardBryan E. ColeVincent P. WallaceR.J. PyeDonald D. ArnoneE. H. LinfieldM. Pepper

Abstract

We demonstrate the application of terahertz pulse imaging (TPI) in reflection geometry for the study of skin tissue and related cancers both in vitro and in vivo. The sensitivity of terahertz radiation to polar molecules, such as water, makes TPI suitable for studying the hydration levels in the skin and the determination of the lateral spread of skin cancer pre-operatively. By studying the terahertz pulse shape in the time domain we have been able to differentiate between diseased and normal tissue for the study of basal cell carcinoma (BCC). Basal cell carcinoma has shown a positive terahertz contrast, and inflammation and scar tissue a negative terahertz contrast compared to normal tissue. In vivo measurements on the stratum corneum have enabled visualization of the stratum corneum-epidermis interface and the study of skin hydration levels. These results demonstrate the potential of terahertz pulse imaging for the study of skin tissue and its related disorders, both in vitro and in vivo.

Terahertz technology and applicationsPhotonic and Optical DevicesAllergic Rhinitis and SensitizationTerahertz radiationStratum corneumBasal cell carcinomaIn vivoSkin cancerEpidermis (zoology)Human skinMaterials sciencePathologyTerahertz time-domain spectroscopy

MeSH terms

Carcinoma, Basal CellBasal Cell CarcinomaCells, CulturedDermatitisDiagnostic ImagingHumansMicrowavesSkinSkin NeoplasmsSpectrum AnalysisUpper ExtremityElectromagnetic Phenomena

Funding

  • National Psoriasis Foundation
  • National Eczema Association
  • Engineering and Physical Sciences Research Council
Citations
692
FWCI
8.57
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References
21
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References
Characterization of an optoelectronic terahertz beam system
IEEE Transactions on Microwave Theory and Techniques · 1990 · 481 citations
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