Vidal-Flores Luis M, Reyes-Alberto Miguel, Albor-Ramírez Efraín, Domínguez-Velasco César F, Gutierrez-Herrera Enoch, Padilla-Castañeda Miguel A
Applied Sciences and Technology Institute ICAT, National Autonomous University of Mexico UNAM, Ciudad Universitaria, Mexico City 04510, Mexico.
ABB Inc., 3400 Rue Pierre-Ardouin, Quebec, QC G1P 0B2, Canada.
Gels. 2024 Aug 20;10(8):540. doi: 10.3390/gels10080540.
Recreating cerebral tissue using a tissue-mimicking phantom is valuable because it provides a tool for studying physiological and biological processes related to tissues without the necessity of performing the study directly in the tissue or even in a patient. The reproduction of the optical properties allows investigation in areas such as imaging, optics, and ultrasound, among others. This paper presents a methodology for manufacturing agarose-based phantoms that mimic the optical characteristics of brain tissue using scattering and absorbing agents and proposes combinations of these agents to recreate the healthy brain tissue optical coefficients within the wavelength range of 350 to 500 nm. The results of the characterization of the manufactured phantoms propose ideal combinations of the used materials for their use in controlled environment experiments in the UV range, following a cost-effective methodology.
使用组织模拟体模重建脑组织很有价值,因为它提供了一种工具,可用于研究与组织相关的生理和生物学过程,而无需直接在组织甚至患者身上进行研究。光学特性的再现使得能够在成像、光学和超声等领域进行研究。本文提出了一种制造基于琼脂糖的体模的方法,该体模使用散射剂和吸收剂模拟脑组织的光学特性,并提出了这些试剂的组合,以在350至500nm波长范围内重建健康脑组织的光学系数。所制造体模的表征结果提出了所用材料的理想组合,以便按照经济高效的方法在紫外线范围内的受控环境实验中使用。