Choi Yeon Shik, Hong Hyuck Ki, Kim Beom Joon, Kim Myeung Nam, Park Hyo Derk
Nano-Scale Quantum Devices Research Center, Korea Electronics Technology Institute, Gyeonggi-do, Korea.
Exp Dermatol. 2008 Jun;17(6):537-41. doi: 10.1111/j.1600-0625.2008.00703.x. Epub 2008 Mar 4.
BACKGROUND/PURPOSE: It is important to measure the thickness of hypodermis, including the subcutaneous fat layer in several fields such as global assessment of nutritional status and monitoring of dietary manipulation. It also provides useful information concerning the amount of peripheral adipose tissue and can be used as an index of obesity.
To measure the thickness of the subcutaneous adipose tissue layer, the optical properties of tissue components, several lipids and animal tissue samples in vitro were measured over the wavelength range from 1000 to 1700 nm, using the transmittance measurement system and the diffuse reflectance measurement system. A wavelength range for the thickness measurements was selected from the experimental result. The corresponding signal according to the changes of adipose tissue thickness was measured.
Experimental data measured by the non-invasive measurement system were compared with the actual thickness of animal samples, and the results could be explained by the three-layered tissue model. The result showed high correlation to the thickness changes (R2 = 0.9954).
The experimental result implies positive possibility for the development of a system to measure the thickness of subcutaneous adipose tissue using near infrared in vivo.
背景/目的:测量皮下组织厚度很重要,包括在营养状况综合评估和饮食干预监测等多个领域测量皮下脂肪层。它还能提供有关外周脂肪组织量的有用信息,并可作为肥胖指标。
为测量皮下脂肪组织层厚度,使用透射率测量系统和漫反射测量系统,在1000至1700纳米波长范围内测量了体外组织成分、几种脂质和动物组织样本的光学特性。根据实验结果选择用于厚度测量的波长范围。测量了与脂肪组织厚度变化相应的信号。
将通过非侵入性测量系统测得的实验数据与动物样本的实际厚度进行比较,结果可用三层组织模型解释。结果显示与厚度变化高度相关(R2 = 0.9954)。
实验结果表明利用近红外进行体内皮下脂肪组织厚度测量系统的开发具有积极可能性。