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Proceedings Paper

Characterization of a solid optical tissue phantom fabricated by a spin coating method: pilot study
Author(s): Yunjin Bae; Youngwoo Bae; Jiho Lee; Byungjo Jung
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Paper Abstract

Various optical tissue phantoms (OTP) have been developed and utilized for the performance test of optical device and for in vitro human skin experiments. Solid OTPs have advantages such as semi-permanent use, convenience of experimental use, and easiness of storage. However, it is difficult to fabricate epidermis layer with an extremely thin layer of about few μm thickness. This study suggests a spin coating method to fabricate a thin layer which is similar to epidermis layer thickness of human skin (about 50 μm). By controlling specific parameters such as the concentration of matrix solution and the spin velocity for spin coating, we could design a solid OTP with extremely thin layer of about few μm and a good degree of planarization. Quantitative analysis was performed to evaluate both the spin velocity and the concentration of OTP matrix solution used to control specific thickness of OTP. By using optimal combination of parameters a specific thin layered OTP was fabricated with a thickness of less than 50 μm. In further studies, optimal combination of parameters needs to be studied to fabricate desired thickness of layer, depending on purpose.

Paper Details

Date Published: 3 February 2012
PDF: 8 pages
Proc. SPIE 8229, Optical Diagnostics and Sensing XII: Toward Point-of-Care Diagnostics; and Design and Performance Validation of Phantoms Used in Conjunction with Optical Measurement of Tissue IV, 82290U (3 February 2012); doi: 10.1117/12.909787
Show Author Affiliations
Yunjin Bae, Yonsei Univ. (Korea, Republic of)
Youngwoo Bae, Yonsei Univ. (Korea, Republic of)
Jiho Lee, Yonsei Univ. (Korea, Republic of)
Byungjo Jung, Yonsei Univ. (Korea, Republic of)


Published in SPIE Proceedings Vol. 8229:
Optical Diagnostics and Sensing XII: Toward Point-of-Care Diagnostics; and Design and Performance Validation of Phantoms Used in Conjunction with Optical Measurement of Tissue IV
Gerard L. Coté; Robert J. Nordstrom, Editor(s)

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