Atomic force microscopy (AFM) investigations of living cells provide new information in both biology and medicine. However, slow cell dynamics and the need for statistically significant sample sizes mean that data collection can be an extremely lengthy process. We address this problem by parallelizing AFM experiments using a two-dimensional cantilever array, instead of a single cantilever. We have developed an instrument able to operate a two-dimensional cantilever array, to perform topographical and mechanical investigations in both air and liquid. Deflection readout for all cantilevers of the probe array is performed in parallel and online by interferometry. Probe arrays were microfabricated in silicon nitride. Proof-of-concept has been d...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
Atomic force microscopy (AFM) can be used for a number of nanoscale biological studies. It opens the...
A fabrication process for realising two-dimensional cantilever arrays for parallel force spectroscop...
Optical microscopy uses the interactions between light and materials to provide images of the micros...
AbstractWe present 2D cantilever arrays for parallel AFM and their fabrication process using a silic...
AbstractBiology and cellular mechanics have benefited from recent technological advances in physics ...
Nanoscale multipoint structure-function analysis is essential for deciphering the complexity of mult...
Nanoscale multipoint structure-function analysis is essential for deciphering the complexity of mult...
In this study, we demonstrate the increased performance in speed and sensitivity achieved by the use...
7siSingle-cell adhesion measured with atomic force microscopy (AFM) offers outstanding time and forc...
This thesis presents the design, fabrication, and characterization of polymer-based cantilever probe...
Atomic force microscopy (AFM) is an essential nanoinstrument technique for several applications such...
Since the invention of atomic force microscopy (AFM) researchers have been trying to increase imagin...
Since the invention of the atomic force microscope (AFM) in 1986, the application of the instrument ...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
Atomic force microscopy (AFM) can be used for a number of nanoscale biological studies. It opens the...
A fabrication process for realising two-dimensional cantilever arrays for parallel force spectroscop...
Optical microscopy uses the interactions between light and materials to provide images of the micros...
AbstractWe present 2D cantilever arrays for parallel AFM and their fabrication process using a silic...
AbstractBiology and cellular mechanics have benefited from recent technological advances in physics ...
Nanoscale multipoint structure-function analysis is essential for deciphering the complexity of mult...
Nanoscale multipoint structure-function analysis is essential for deciphering the complexity of mult...
In this study, we demonstrate the increased performance in speed and sensitivity achieved by the use...
7siSingle-cell adhesion measured with atomic force microscopy (AFM) offers outstanding time and forc...
This thesis presents the design, fabrication, and characterization of polymer-based cantilever probe...
Atomic force microscopy (AFM) is an essential nanoinstrument technique for several applications such...
Since the invention of atomic force microscopy (AFM) researchers have been trying to increase imagin...
Since the invention of the atomic force microscope (AFM) in 1986, the application of the instrument ...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
Atomic force microscopy (AFM) can be used for a number of nanoscale biological studies. It opens the...