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机译:基于信号编码技术和微流体的多功能微波生物传感器,可提高灵敏度
São Carlos School of Engineering University of SãoPaulo São Paulo Brazil;
University of Brasilia Brasília Brazil;
São Carlos School of Engineering University of SãoPaulo São Paulo Brazil;
São Carlos School of Engineering University of SãoPaulo São Paulo Brazil;
São Carlos School of Engineering University of SãoPaulo São Paulo Brazil;
Sensitivity; Glucose; Microwave sensors; Biosensors; Chemical sensors; Sensor phenomena and characterization;
机译:通过检测混合干扰信号来提高表面等离子体共振生物传感器的灵敏度极限
机译:通过检测混合干扰信号来提高表面等离子体共振生物传感器的灵敏度极限
机译:基于微波基材 - 集成波导腔谐振器的微流体生物传感器
机译:脑神经信号编码对生物物体心理生理状态的微波影响研究的技术与乐器复合物
机译:提高基于微波微带线带通滤波器的生物传感器检测水中细菌的灵敏度的可行性研究。
机译:用于葡萄糖检测的高灵敏度量化线性和介导的谐振器基微波生物传感器
机译:基于微波基板 - 集成波导腔谐振器的微流体生物传感器
机译:基于极值子空间的技术改进了样本信号的重构