Title :
An optical system to measure the thickness of the subcutaneous adipose tissue layer
Author :
Hong, Hyuck Ki ; Jo, Young Chang ; Choi, Yeon Shik ; Park, Hyo Derk ; Kim, Beom Joon
Author_Institution :
Med. IT convergence Res. center, KETI (Korea Electron. Technol. Inst.), Seongnam, South Korea
Abstract :
To measure the thickness of the subcutaneous adipose tissue layer, a novel non-invasive optical measurement system (¿=1300 nm) is introduced. Animal and human subjects are used for the experiments. The results of human subjects are compared with the data of ultrasound device measurements, and a high correlation (r=0.94 for n=11) is observed. There are two modes in the corresponding signals measured by the optical system, which can be explained by two-layered and three-layered tissue models. If the target tissue is thinner than the critical thickness, detected data using diffuse reflectance method follow the three-layered tissue model, so the data increase as the thickness increases. On the other hand, if the target tissue is thicker than the critical thickness, the data follow the two-layered tissue model, so they decrease as the thickness increases.
Keywords :
biological tissues; biomedical optical imaging; thickness measurement; critical thickness; diffuse reflectance method; noninvasive optical measurement system; optical system; subcutaneous adipose tissue layer; thickness measurement; three-layered tissue models; two-layered tissue models; ultrasound device measurement comparison; Animals; Biomedical optical imaging; Humans; Muscles; Optical sensors; Reflectivity; Skin; Thickness measurement; Ultrasonic variables measurement; Wavelength measurement;
Conference_Titel :
Sensors, 2009 IEEE
Conference_Location :
Christchurch
Print_ISBN :
978-1-4244-4548-6
Electronic_ISBN :
1930-0395
DOI :
10.1109/ICSENS.2009.5398349