Microelectromechanical systems (MEMS) have enabled the development of a new generation of sensor platforms. Acoustic sensor operation in liquid, the native environment of biomolecules, causes, however, significant degradation of sensing performance due to viscous drag and relies on the availability of capture molecules to bind analytes of interest to the sensor surface. Here, we describe a strategy to interface MEMS sensors with microfluidic platforms through an aerosol spray. Our sensing platform comprises a microfluidic spray nozzle and a microcantilever array operated in dynamic mode within a closed loop oscillator. A solution containing the analyte is sprayed uniformly through picoliter droplets onto the microcantilever surface; the mic...
Biological and chemical processes can be transduced into nanomechanical motion via change of surface...
Cantilever sensors have attracted considerable attention over the last decade because of their poten...
We present an approach for interfacing an electromechanical sensor with a microfluidic device for th...
Microelectromechanical systems (MEMS) have enabled the development of a new generation of sensor pla...
THESIS 9975Since the introduction of the atomic force microscope (AFM) and the subsequent availabili...
Recent advances in micro- and nanofabrication technology have led to the development of a wide range...
Microfabricated cantilevers have been used in atomic force microscopy for the topography imaging of ...
We present a resonant mass sensor for specific biomolecular detection in a subnanoliter fluid volume...
The research objective presented in this dissertation is to develop novel micro-electromechanical sy...
Multifrequency excitation/monitoring of cantilevers has made it possible both to achieve fast, relat...
This work focuses on the general use of microcantilever arrays for parallel detection of multiple an...
The goal of this study is to create a biomolecular sensing device with high sensitivity and selectiv...
Microcantilever-based biosensors have shown the ability of highly sensitive label-free detection by ...
Cantilever sensors have attracted considerable attention over the last decade because of their poten...
The purpose of this work is the development of MEMS-based resonant sensors for liquid-phase biochemi...
Biological and chemical processes can be transduced into nanomechanical motion via change of surface...
Cantilever sensors have attracted considerable attention over the last decade because of their poten...
We present an approach for interfacing an electromechanical sensor with a microfluidic device for th...
Microelectromechanical systems (MEMS) have enabled the development of a new generation of sensor pla...
THESIS 9975Since the introduction of the atomic force microscope (AFM) and the subsequent availabili...
Recent advances in micro- and nanofabrication technology have led to the development of a wide range...
Microfabricated cantilevers have been used in atomic force microscopy for the topography imaging of ...
We present a resonant mass sensor for specific biomolecular detection in a subnanoliter fluid volume...
The research objective presented in this dissertation is to develop novel micro-electromechanical sy...
Multifrequency excitation/monitoring of cantilevers has made it possible both to achieve fast, relat...
This work focuses on the general use of microcantilever arrays for parallel detection of multiple an...
The goal of this study is to create a biomolecular sensing device with high sensitivity and selectiv...
Microcantilever-based biosensors have shown the ability of highly sensitive label-free detection by ...
Cantilever sensors have attracted considerable attention over the last decade because of their poten...
The purpose of this work is the development of MEMS-based resonant sensors for liquid-phase biochemi...
Biological and chemical processes can be transduced into nanomechanical motion via change of surface...
Cantilever sensors have attracted considerable attention over the last decade because of their poten...
We present an approach for interfacing an electromechanical sensor with a microfluidic device for th...