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Miniature silicon electronic biological assay chip and applications forrapid battlefield diagnostics,

机译:微型硅电子生物测定芯片及其在快速战场诊断中的应用

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Abstract: Assessing the medical condition of battlefield personnel requires the development of rapid, portable biological diagnostic assays for a wide variety of antigens and enzymes. Ideally, such an assay would be inexpensive, small, and require no added reagents while maintaining the sensitivity and accuracy of laboratory-based assays. In this work, a microelectromechanical (MEMS) based biological assay sensor is presented which is expected to meet the above requirements. The sensor is a thin silicon membrane resonator (SMR) which registers a decrease in resonant frequency when mass is adsorbed onto its surface. By coating the sensor surface with a monolayer of antibody, for example, we have detected the corresponding antigen with a detection resolution of 0.25 ng/ml in phosphate buffer solution. Micromachining techniques are being used to integrate many (64 elements on the first test chip) identical SMR sensors into a single silicon chip which would be capable of simultaneously performing a wide variety of biomedical assays. The sensors require only a small printed circuit board and 8V power supply to operate and provide a readout. The presentation will describe the operation of the SMR sensor, the fabrication of the sensor array, and initial test results using commercially available animal immunoglobulins in laboratory-prepared test solutions. !15
机译:摘要:评估战场人员的医疗状况需要开发针对多种抗原和酶的快速,便携式生物诊断检测方法。理想地,这种测定将是便宜的,小巧的,并且不需要添加试剂,同时保持基于实验室的测定的灵敏度和准确性。在这项工作中,提出了一种基于微机电(MEMS)的生物检测传感器,有望满足上述要求。该传感器是薄硅膜谐振器(SMR),当质量被吸附到其表面时,谐振频率会降低。例如,通过用单层抗体包被传感器表面,我们已经在磷酸盐缓冲溶液中检测到了0.25 ng / ml的检测分辨率的相应抗原。微加工技术正被用于将许多(在第一测试芯片上有64个元件)相同的SMR传感器集成到一个硅芯片中,该硅芯片将能够同时执行多种生物医学测定。传感器仅需要一个小的印刷电路板和8V电源即可运行并提供读数。该演讲将描述SMR传感器的操作,传感器阵列的制造以及在实验室准备的测试溶液中使用市售的动物免疫球蛋白的初步测试结果。 !15

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