Suspended microchannel resonators (SMRs) are an innovative approach to fluid-based microelectromechanical mass sensing that circumvents complete immersion of the sensor. By embedding the fluidics within the device itself, vacuum-based operation of the resonator becomes possible. This enables frequency shift-based mass detection with high quality factors, and hence sensitivity comparable to vacuum-based micromechanical resonators. Here we present a detailed analysis of the sensitivity of these devices, including consideration of fundamental and practical noise limits, and the important role of binding kinetics in sensing.We demonstrate that these devices show significant promise for protein detection. For larger, biologically-importan...
High-Q optical resonators have revolutionized label-free sensing of nanoparticles, down to the resol...
We have developed a sensitive method for real-time mass sensing in a fluid using a microfabricated a...
Universal detectors that maintain high sensitivity as the detection volume is reduced to the subnano...
Suspended microchannel resonators (SMRs) are an innovative approach to fluid-based microelectromech...
We present a resonant mass sensor for specific biomolecular detection in a subnanoliter fluid volume...
Nanomechanical resonators enable the measurement of mass with extraordinary sensitivity1, 2, 3, 4, 5...
We introduce the use of correlation analysis to extend the dynamic range of Suspended Micro- and Nan...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Thesis (Ph. D.)--Harvard-MIT Division of Health Sciences and Technology, 2010.Cataloged from PDF ver...
Micro- and nano-electromechanical systems (M/NEMS) have demonstrated outstanding sensing capabilitie...
Nanomechanical resonators enable the measurement of mass with extraordinary sensitivity1, 2, 3, 4, 5...
Nanomechanical resonators can quantify individual particles down to a single atom; however the appli...
Using suspended nanochannel resonators (SNRs) we demonstrate measurements of mass in solution with a...
There is a great need in experimental biology for tools to study interactions between biological mol...
This paper reports on an in-line microchannel resonator for protein adsorption measurement with a re...
High-Q optical resonators have revolutionized label-free sensing of nanoparticles, down to the resol...
We have developed a sensitive method for real-time mass sensing in a fluid using a microfabricated a...
Universal detectors that maintain high sensitivity as the detection volume is reduced to the subnano...
Suspended microchannel resonators (SMRs) are an innovative approach to fluid-based microelectromech...
We present a resonant mass sensor for specific biomolecular detection in a subnanoliter fluid volume...
Nanomechanical resonators enable the measurement of mass with extraordinary sensitivity1, 2, 3, 4, 5...
We introduce the use of correlation analysis to extend the dynamic range of Suspended Micro- and Nan...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Thesis (Ph. D.)--Harvard-MIT Division of Health Sciences and Technology, 2010.Cataloged from PDF ver...
Micro- and nano-electromechanical systems (M/NEMS) have demonstrated outstanding sensing capabilitie...
Nanomechanical resonators enable the measurement of mass with extraordinary sensitivity1, 2, 3, 4, 5...
Nanomechanical resonators can quantify individual particles down to a single atom; however the appli...
Using suspended nanochannel resonators (SNRs) we demonstrate measurements of mass in solution with a...
There is a great need in experimental biology for tools to study interactions between biological mol...
This paper reports on an in-line microchannel resonator for protein adsorption measurement with a re...
High-Q optical resonators have revolutionized label-free sensing of nanoparticles, down to the resol...
We have developed a sensitive method for real-time mass sensing in a fluid using a microfabricated a...
Universal detectors that maintain high sensitivity as the detection volume is reduced to the subnano...