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Advanced Plasmonic Biosensing Devices and Automation Systems for Disease Diagnostic and Drug Screening Applications

机译:疾病诊断和药物筛选应用的先进等离子体生物传感装置和自动化系统

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Bio-plasmonics is proposed for the research and development of novel devices, which use biomolecules as a part of the plasmon oscillation system to actively interact with nano/micro structure. We have reported a novel design of Surface Plasmon Resonance (SPR) device and system, which uses alternative dielectric layers to enhance the SPR signal quality and modulate its resonant position. The use of biomolecular thin film, such as DNAs or Proteins, in this design can result in resonant condition of wavelength changes and thus can be detected by using nano-grating in the scattering mode with ehanced feature due to resonance. According to our calculation, it can provide ultra sensitivity system (dLx/dn) of 108 for biosensor applications. The fundamental SPR principle and extended application of these fundamental principles and novel devices, including screening and diagnosis, will be discussed SPR-system to control is the ability. SPR-system has the ability to detect, in near real-time, the concentration of a target analyte and biosensing is viewed as a key application domain for this new technology.
机译:提出了新型设备的研究和开发的生物血管分子,其使用生物分子作为等离子体振荡系统的一部分,以主动与纳米/微结构相互作用。我们已经报道了一种新颖的表面等离子体谐振(SPR)装置和系统设计,它使用替代介电层来增强SPR信号质量并调节其谐振位置。在该设计中使用生物分子薄膜,例如DNA或蛋白质,可以导致波长变化的共振条件,因此可以通过在散射模式下使用纳米光栅来检测由于谐振而具有EHANCACTION的特征。根据我们的计算,它可以为生物传感器应用提供108的超灵敏度系统(DLX / DN)。将讨论SPR系统的基本SPR原理和这些基本原则和新颖设备的扩展应用,包括筛查和诊断,以控制是一种能力。 SPR系统具有在接近实时检测目标分析物和生物传感的浓度作为这种新技术的关键应用领域。

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