DocumentCode :
2790564
Title :
Design of a new nanostructure for theranostic applications
Author :
Angelidou, M. ; Pitris, C.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Cyprus, Nicosia, Cyprus
fYear :
2012
fDate :
11-13 Nov. 2012
Firstpage :
240
Lastpage :
244
Abstract :
Medical applications of metal nanoparticles are the subject of intense research due to their unique properties which make them suitable for both diagnostic and therapeutic use. One such property is the Surface Plasmon Resonance (SPR) which results in strong enhancement of the absorption and scattering of electromagnetic radiation. The combination of metal type, size, and shape characteristics provides unique tunability of a nanostructure´s optical properties. Several types of nanoparticles have been explored for medical and biological applications. Here we present a theoretical investigation of a novel metal nanostructure which has the unique property of distinct absorption and scattering plasmon bands. This could be beneficial for combined diagnostic and therapeutic applications since the diagnostic and therapeutic laser wavelengths can be decoupled for increased efficacy and safety. For this purpose, it is desirable to have the most intense scattering, with minimal absorption, in the near-infrared for imaging and the opposite in the red, for therapy. The efficiency factor for various metals, shapes and sizes was first calculated using the Discrete Dipole Approximation (DDA) method. From the results, nanostructures consisting of combinations of cubes and small spheres were considered to have the desired property and were thoroughly investigated. The number (diameter) and material (silver or gold) of the nanospheres were varied in order to obtain the optimum nanostructure with distinct absorption and scattering plasmon band. Given its properties, this nanostructure have the potential to be used for enhancement of various imaging and therapeutic methods.
Keywords :
approximation theory; biomedical optical imaging; gold; infrared imaging; laser applications in medicine; nanomedicine; nanoparticles; radiation therapy; silver; surface plasmon resonance; Ag; Au; DDA method; absorption plasmon bands; biological applications; diagnostic applications; discrete dipole approximation method; electromagnetic radiation absorption; electromagnetic radiation scattering; imaging methods; medical applications; metal nanoparticles; metal nanostructure; nanospheres; nanostructure optical properties; near-infrared imaging; scattering plasmon bands; surface plasmon resonance; theranostic applications; therapeutic applications; therapeutic laser wavelengths; therapeutic methods; Absorption; Gold; Nanobioscience; Plasmons; Scattering; Silver; absorption; gold; imaging; nanocube; nanosphere; scattering; silver; therapy;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Bioinformatics & Bioengineering (BIBE), 2012 IEEE 12th International Conference on
Conference_Location :
Larnaca
Print_ISBN :
978-1-4673-4357-2
Type :
conf
DOI :
10.1109/BIBE.2012.6399681
Filename :
6399681
Link To Document :
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