Title :
THz Medical Imaging: in vivo Hydration Sensing
Author :
Taylor, Zachary D. ; Singh, Rahul S. ; Bennett, David B. ; Tewari, Priyamvada ; Kealey, Colin P. ; Bajwa, Neha ; Culjat, Martin O. ; Stojadinovic, Alexander ; Lee, Hua ; Hubschman, Jean-Pierre ; Brown, Elliott R. ; Grundfest, Warren S.
Author_Institution :
Dept. of Bioeng., Univ. of California at Los Angeles, Los Angeles, CA, USA
Abstract :
The application of THz to medical imaging is experiencing a surge in both interest and federal funding. A brief overview of the field is provided along with promising and emerging applications and ongoing research. THz imaging phenomenology is discussed and tradeoffs are identified. A THz medical imaging system, operating at ~525 GHz center frequency with ~125 GHz of response normalized bandwidth is introduced and details regarding principles of operation are provided. Two promising medical applications of THz imaging are presented: skin burns and cornea. For burns, images of second degree, partial thickness burns were obtained in rat models in vivo over an 8 hour period. These images clearly show the formation and progression of edema in and around the burn wound area. For cornea, experimental data measuring the hydration of ex vivo porcine cornea under drying is presented demonstrating utility in ophthalmologic applications.
Keywords :
biomedical equipment; biomedical imaging; biomedical measurement; eye; injuries; skin; terahertz wave imaging; THz imaging phenomenology; THz medical imaging; cornea imaging; edema formation; emerging application; hydration sensing; medical application; medical imaging system; operation principle; ophthalmologic application; partial thickness burn; porcine cornea; rat model; response normalized bandwidth; second degree burn; skin burn; Absorption; Biomedical imaging; Dielectric constant; In vivo; Skin; Biological and medical imaging; THz; Terahertz; clinical instruments; hydration interactions; medical diagnostics; submillimeter;
Journal_Title :
Terahertz Science and Technology, IEEE Transactions on
DOI :
10.1109/TTHZ.2011.2159551