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Breath analysis based on micropreconcentrator for early cancer diagnosis

机译:基于微预浓缩器的呼吸分析用于早期癌症诊断

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We are developing micropreconcentrators based on microanotechnology to detect trace levels of volatile organic compound (VOC) gases contained in human and canine exhaled breath. The possibility of using exhaled VOC gases as biomarkers for various cancer diagnoses has been previously discussed. For early cancer diagnosis, detection of trace levels of VOC gas is indispensable. Using micropreconcentrators based on MEMS technology or nanotechnology is very promising for detection of VOC gas. A micropreconcentrator based breath analysis technique also has advantages from the viewpoints of cost performance and availability for various cancers diagnosis. In this paper, we introduce design, fabrication and evaluation results of our MEMS and nanotechnology based micropreconcentrators. In the MEMS based device, we propose a flower leaf type Si microstructure, and its shape and configuration are optimized quantitatively by finite element method simulation. The nanotechnology based micropreconcentrator consists of carbon nanotube (CNT) structures. As a result, we achieve ppb level VOC gas detection with our micropreconcentrators and usual gas chromatography system that can detect on the order of ppm VOC in gas samples. In performance evaluation, we also confirm that the CNT based micropreconcentrator shows 115 times better concentration ratio than that of the Si based micropreconcentrator. Moreover, we discuss a commercialization idea for new cancer diagnosis using breath analysis. Future work and preliminary clinical testing in dogs is also discussed.
机译:我们正在开发基于微/纳米技术的微型预浓缩器,以检测人和犬呼出气中所含的痕量挥发性有机化合物(VOC)气体。先前已经讨论了使用呼出的VOC气体作为生物标志物进行各种癌症诊断的可能性。对于早期癌症诊断,检测痕量的VOC气体是必不可少的。使用基于MEMS技术或纳米技术的微型预浓缩器对VOC气体的检测非常有前途。从成本性能和各种癌症诊断的可用性的角度来看,基于微浓缩器的呼吸分析技术也具有优势。在本文中,我们介绍了基于MEMS和纳米技术的微型预浓缩器的设计,制造和评估结果。在基于MEMS的器件中,我们提出了一种花叶型Si微结构,并通过有限元方法仿真对其形状和配置进行了定量优化。基于纳米技术的微型预浓缩器由碳纳米管(CNT)结构组成。结果,我们使用我们的微型预浓缩器和常规气相色谱系统实现了ppb级VOC气体检测,可以检测气体样品中的VOC ppm。在性能评估中,我们还确认,基于CNT的微型预浓缩器的浓缩比比基于Si的微型预浓缩器的浓缩倍数高115倍。此外,我们讨论了使用呼吸分析对新型癌症进行诊断的商业化思路。还讨论了犬的未来工作和初步临床测试。

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