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Fabrication and Characterization of Silica Aerogel as Synthetic Tissues for Medical Imaging Phantoms

机译:二氧化硅气凝胶的制备与表征作为医学成像模拟的合成组织

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Medical imaging plays an important role in the field of healthcare industry both in clinical settings and in research and development. It is used in prevention, early detection of disease, in choosing the optimal treatment, during surgical interventions and monitoring of the treatment effects. Despite much advancement in the last few decades, rapid change on its technology development and variety of imaging parameters that differ with the manufacturer restrict its further development. Imaging phantom is a calibrating medium that is scanned or imaged in the field of medical imaging to evaluate, analyze and tune the performance of various imaging devices. A phantom used to evaluate an imaging device should respond in a similar manner to how human tissue and organs would act in that specific imaging modality. There has been many research on the phantom materials; however, there has been no attempt to study on the material that mimics the structure of lung or fibrous tissue. So with the need for development of gel with such structure, we tried to mimic this structure with aerogel. Silica aerogels have unique properties that include low density (0.003g/cm) and mesoporosity (pore size 2-50nm), with a high thermal insulation value (0.005W/mK) and high surface area (500-1200m~(-2)/g).] In this study, we cross-linked with di-isocyanate, which is a group in polyurethane to covalently bond the polymer to the surface of silica aerogel to enhance the mechanical properties. By formation of covalent bonds, the structure can be reinforced by widening the interparticle necks while minimally reducing porosity.
机译:医学影像在临床环境和研发中在医疗保健行业领域发挥着重要作用。它用于预防,早期检测疾病,在手术干预期间选择最佳治疗和治疗效果。尽管在过去的几十年中有很大进步,但与制造商不同的成像参数的技术开发和各种成像参数的快速变化限制了其进一步的发展。成像幻像是一种校准介质,其在医学成像领域中扫描或成像,以评估,分析和调整各种成像装置的性能。用于评估成像装置的幻像应该以类似的方式响应人类组织和器官如何在该特定的成像模型中起作用。对幻影材料有很多研究;然而,没有尝试研究模仿肺或纤维组织结构的材料。因此,随着凝胶与这种结构的发展,我们试图用气凝胶模仿这种结构。二氧化硅气凝胶具有独特的性质,包括低密度(0.003g / cm)和中孔隙度(孔径2-50nm),具有高保温值(0.005w / mk)和高表面积(500-1200m〜(-2) / g)。]在本研究中,我们与二异氰酸酯交联,该二异氰酸酯是聚氨酯中的一个基团,以将聚合物与二氧化硅气凝胶的表面共价键合,以增强机械性能。通过形成共价键,可以通过加宽颗粒颈部而在微小地减少孔隙率的同时加强该结构。

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