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The e-Incubator: A Magnetic Resonance Imaging-Compatible Mini Incubator

机译:电子恒温箱:兼容磁共振成像的小型恒温箱

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The tissue engineering community has been vocal regarding the need for noninvasive instruments to assess the development of tissue-engineered constructs. Medical imaging has helped fulfill this role. However, specimens allocated to a test tube for imaging cannot be tested for a prolonged period or returned to the incubator. Therefore, samples are essentially wasted due to potential contamination and transfer in a less than optimal growth environment. In turn, we present a standalone, miniature, magnetic resonance imaging-compatible incubator, termed the e-incubator. This incubator uses a microcontroller unit to automatically sense and regulate physiological conditions for tissue culture, thus allowing for concurrent tissue culture and evaluation. The e-incubator also offers an innovative scheme to study underlying mechanisms related to the structural and functional evolution of tissues. Importantly, it offers a key step toward enabling real-time testing of engineered tissues before human transplantation. For validation purposes, we cultured tissue-engineered bone constructs for 4 weeks to test the e-incubator. Importantly, this technology allows for visualizing the evolution of temporal and spatial morphogenesis. In turn, the e-incubator can filter deficient constructs, thereby increasing the success rate of implantation of tissue-engineered constructs, especially as construct design grows in levels of complexity to match the geometry and function of patients' unique needs.
机译:组织工程界一直在表达对非侵入性仪器评估组织工程构建体发展的需求。医学成像帮助实现了这一作用。但是,分配给试管进行成像的标本无法长时间测试或返回培养箱。因此,在潜在的最佳生长环境中,由于潜在的污染和转移,样品实际上被浪费了。反过来,我们介绍了一个独立的,微型的,与磁共振成像兼容的培养箱,称为电子培养箱。该培养箱使用微控制器单元自动感应和调节组织培养的生理条件,从而允许同时进行组织培养和评估。电子孵化器还提供了创新的方案来研究与组织的结构和功能进化有关的潜在机制。重要的是,它为实现在人体移植之前对工程组织进行实时测试提供了关键的一步。为了进行验证,我们将组织工程化的骨构建体培养了4周以测试电子恒温箱。重要的是,该技术允许可视化时间和空间形态发生的演变。反过来,电子孵化器可以过滤缺陷的构建体,从而提高组织工程构建体植入的成功率,特别是随着构建体设计的复杂性不断提高,以满足患者独特的几何形状和功能。

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