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SENSORS: Portable, Integrated and Highly Sensitive Pathogen Detectors Based on Ferrohydrodynamic Pumping

SENSORS: Portable, Integrated and Highly Sensitive Pathogen Detectors Based on Ferrohydrodynamic Pumping
传感器:基于铁流体动力泵的便携式、集成式、高灵敏度病原体检测器
批准号:
0529190
负责人:
Hur Koser
金额:
$24.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-10-01 至 2008-09-30

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中文摘要
翻译
智能优势:这项工作涉及一项多学科研究计划,旨在设计、建模、分析、构建和优化一种集成的便携式病原体传感器芯片,该芯片基于行波激励下磁性液体的泵浦动力学。这项研究结合了胶体化学、磁学和流体力学,将基本建模和分析与简单有效的测试方法相结合。提出的想法是新颖的,并受到PI最近在磁性流体方面的理论和实验工作所获得的新见解的启发。这项研究工作有望促进对磁力学和流体力学领域之间耦合的物理理解,特别是在微米和纳米尺度上。这项研究将把物理、数学和数值模拟与微型传感器的制造和测试结合起来。这种方法产生了可测试的理论预测,发展了对磁性流体流体动力学的基本了解,并使实现针对各种化学和生物病原体的高效传感器成为可能。广泛的影响:这里描述的传感器有望紧凑、便携、集成、廉价、一次性、多功能和高灵敏度,在健康行业、生物医学研究和国土安全方面具有直接影响潜力。通过在完全便携和实用的包装中提供快速可靠的检测方案,这种传感器设计可能会节省时间、金钱和生命,无论是在医院环境中还是在现场。从这项传感器工作中获得的理论和实验见解也将促进我们对磁性流体泵的理解,并使微创和植入式药物输送设备(如糖尿病患者)能够更好地进行微型化泵设计。此外,芯片上实验室的应用--如细胞分选和操纵,以及DNA和蛋白质分离和鉴定--将极大地受益于在微尺度上抽吸磁性液体所获得的经验。这项研究的结果将为本科生和研究生的跨学科培训提供宝贵的机会,并为耶鲁大学周围的大纽黑文地区的外展活动提供广阔的前景。PI已经与康涅狄格州工程预科计划(CPEP)合作,计划在纽黑文地区开展外展活动,纽黑文地区有大量社会和经济上有风险的儿童,以及高度集中的传统上代表人数较少的少数族裔学生。
英文摘要
Intellectual Merits: This work involves a multi-disciplinary research program to design, model, analyze, build and optimize an integrated, portable pathogen sensor chip that is based on the pumping dynamics of magnetic fluids under traveling wave excitations. The research incorporates colloidal chemistry, magnetism and fluid mechanics, combining fundamental modeling and analysis with a simple and effective testing methodology. The ideas presented are novel and motivated by the new insights gained through the PI's recent theoretical and experimental work on magnetic fluids. The research effort promises to advance the physical understanding of the coupling between magnetic and fluid mechanics domains, especially at the micro and nano-scales. The study will integrate physical, mathematical and numerical modeling with micro-scale sensor fabrication and testing. This approach results in testable theoretical predictions, develops a fundamental understanding of the hydrodynamics of magnetic fluids, and enables the realization of highly effective sensors for a wide variety of chemical and biological pathogens.Broader Impacts: The sensor described here promises to be compact, portable, integrated, cheap, disposable, versatile and highly sensitive, with direct impact potential in the health industry, biomedical research, and homeland security. By providing a fast and reliable detection scheme in a completely portable and practical package, this sensor design is likely to save time, money and lives, both in hospital settings and in the field. The theoretical and experimental insights gained from this sensor work will also advance our understanding of magnetic fluid pumping, and enable better miniaturized pump designs for minimally invasive and implantable drug delivery devices (such as for diabetic patients). Moreover, lab-on-a-chip applications - such as cell sorting and manipulation, as well as DNA and protein separation and identification - will greatly benefit from the experience gained on magnetic fluid pumping at the micro-scale. The results of this study will provide valuable opportunities for the interdisciplinary training of both undergraduate and graduate students, as well as ample prospects for outreach activities in the greater New Haven area around Yale University. The PI is already collaborating with the Connecticut Pre-Engineering Program (CPEP) for his planned outreach activities around the New Haven area, which has a significant population of socially and economically "at-risk" children, as well as a high concentration of traditionally underrepresented minority students.
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Cyber Systems: Smart Sand: An Integrated, Ultra High-Power Density MEMS Vibration Energy Harvester System based on Nonlinear Deflection Dynamics
  • 批准号:
    0601630
  • 项目类别:
    Standard Grant
  • 资助金额:
    $24.0万
  • 财政年份:
    2006
  • 负责人:
    Hur Koser
  • 依托单位:
CAREER: Ferrohydrodynamic Pumping in Traveling Magnetic Fields: Theory and Fluidic Applications
  • 批准号:
    0449264
  • 项目类别:
    Standard Grant
  • 资助金额:
    $40.0万
  • 财政年份:
    2005
  • 负责人:
    Hur Koser
  • 依托单位:
海外基金