| Literature DB >> 29450106 |
Shijun Sung1, Shahab Dabironezare2, Nuria Llombart2, Skyler Selvin1, Neha Bajwa3, Somporn Chantra4, Bryan Nowroozi5, James Garritano3, Jacob Goell3, Alex Li3, Sophie X Deng4, Elliott Brown6, Warren S Grundfest1, Zachary D Taylor1.
Abstract
Reflection mode Terahertz (THz) imaging of corneal tissue water content (CTWC) is a proposed method for early, accurate detection and study of corneal diseases. Despite promising results from ex vivo and in vivo cornea studies, interpretation of the reflectivity data is confounded by the contact between corneal tissue and dielectric windows used to flatten the imaging field. Herein, we present an optical design for non-contact THz imaging of cornea. A beam scanning methodology performs angular, normal incidence sweeps of a focused beam over the corneal surface while keeping the source, detector, and patient stationary. A quasioptical analysis method is developed to analyze the theoretical resolution and imaging field intensity profile. These results are compared to the electric field distribution computed with a physical optics analysis code. Imaging experiments validate the optical theories behind the design and suggest that quasioptical methods are sufficient for designing of THz corneal imaging systems. Successful imaging operations support the feasibility of non-contact in vivo imaging. We believe that this optical system design will enable the first, clinically relevant, in vivo exploration of CTWC using THz technology.Entities:
Keywords: Biological and medical imaging; THz imaging of cornea; clinical instruments; medical diagnostics
Year: 2017 PMID: 29450106 PMCID: PMC5808441 DOI: 10.1109/TTHZ.2017.2771754
Source DB: PubMed Journal: IEEE Trans Terahertz Sci Technol ISSN: 2156-342X Impact factor: 3.274