Signal Processing and Biomedical engineering, Department of Electrical Engineering, Chalmers University of Technology, Sweden.
Applied Chemistry, Department of Chemistry and Chemical Engineering, Chalmers University of Technology, Sweden.
Biomed Phys Eng Express. 2021 Oct 7;7(6). doi: 10.1088/2057-1976/ac2634.
Tissue mimicking phantom materials with thermal and dielectric equivalence are vital for the development of microwave diagnostics and treatment. The current phantoms representing fat tissue are challenged by mechanical integrity at relevant temperatures coupled with complex production protocols. We have employed two types of nanocellulose (cellulose nanocrystals and oxidized cellulose nanocrystals) as reinforcement in gelatin stabilized emulsions for mimicking fat tissue. The nanocellulose-gelatin stabilized emulsions were evaluated for their dielectric properties, the moduli-temperature dependence using small deformation rheology, stress-strain behavior using large deformation, and their compliance to quality assurance guidelines for superficial hyperthermia. All emulsions had low permittivity and conductivity within the lower microwave frequency band, accompanied by fat equivalent thermal properties. Small deformation rheology showed reduced temperature dependence of the moduli upon addition of nanocellulose, independent of type. The cellulose nanocrystals gelatin reinforced emulsion complied with the quality assurance guidelines. Hence, we demonstrate that the addition of cellulose nanocrystals to gelatin stabilized emulsions has the potential to be used as fat phantoms for the development of microwave diagnostics and treatment.
具有热学和介电等效性的组织模拟体对于微波诊断和治疗的发展至关重要。目前,代表脂肪组织的体模在相关温度下受到机械完整性的挑战,同时还存在复杂的生产方案。我们已经使用两种类型的纳米纤维素(纤维素纳米晶体和氧化纤维素纳米晶体)作为增强材料,用于模拟脂肪组织的明胶稳定乳液。对纳米纤维素-明胶稳定乳液的介电性能、小变形流变学的模量-温度依赖性、大变形的应力-应变行为以及它们对表面高温治疗质量保证指南的顺应性进行了评估。所有乳液在较低的微波频段内具有较低的介电常数和电导率,并具有等效的脂肪热特性。小变形流变学表明,添加纳米纤维素后模量的温度依赖性降低,而与类型无关。纤维素纳米晶体强化明胶乳液符合质量保证指南。因此,我们证明了将纤维素纳米晶体添加到明胶稳定乳液中具有用作微波诊断和治疗的脂肪体模的潜力。