Micropipette aspiration (MPA) is an essential tool in mechanobiology; however, its potential is far from fully exploited. The traditional MPA technique has limited temporal and spatial resolution and requires extensive post processing to obtain the mechanical fingerprints of samples. Here, we develop a MPA system that measures pressure and displacement in real time with sub-nanometer resolution thanks to an interferometric readout. This highly sensitive MPA system enables studying the nanoscale behavior of soft biomaterials under tension and their frequency-dependent viscoelastic response
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2001."Februa...
This thesis presents, develops and applies new methodologies that can quantitatively probe the mecha...
We present a new method for performing dynamic elastography of soft tissue samples. By sensing nanos...
Micropipette aspiration (MPA) is an essential tool in mechanobiology; however, its potential is far ...
We present a new approach to Micropipette Aspiration (MPA), a pioneering method in mechanobiology, t...
A novel, interferometry-based approach to micropipette aspiration overcomes the spatial resolution l...
There is a strong demand for nanoindentation methods to probe the heterogeneous viscoelastic propert...
Micropipette aspiration measures the mechanical properties of single cells. A traditional micropipet...
The paper describes methodology, instrumentation, and experiments for the study of the mechanical be...
Optical tweezers have emerged as a prominent light-based tool for pico-Newton (pN) force microscopy ...
We describe an experimental technique to study the dynamic behavior of complex soft materials, based...
Despite the apparent convenience of microfluidic technologies for applications in healthcare, such d...
International audienceWe present a dynamic displacement sensor based on a quadrature phase interfero...
AbstractWe present a multipurpose nanomechanical force probe that combines a sideways-mounted elasti...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2001."Februa...
This thesis presents, develops and applies new methodologies that can quantitatively probe the mecha...
We present a new method for performing dynamic elastography of soft tissue samples. By sensing nanos...
Micropipette aspiration (MPA) is an essential tool in mechanobiology; however, its potential is far ...
We present a new approach to Micropipette Aspiration (MPA), a pioneering method in mechanobiology, t...
A novel, interferometry-based approach to micropipette aspiration overcomes the spatial resolution l...
There is a strong demand for nanoindentation methods to probe the heterogeneous viscoelastic propert...
Micropipette aspiration measures the mechanical properties of single cells. A traditional micropipet...
The paper describes methodology, instrumentation, and experiments for the study of the mechanical be...
Optical tweezers have emerged as a prominent light-based tool for pico-Newton (pN) force microscopy ...
We describe an experimental technique to study the dynamic behavior of complex soft materials, based...
Despite the apparent convenience of microfluidic technologies for applications in healthcare, such d...
International audienceWe present a dynamic displacement sensor based on a quadrature phase interfero...
AbstractWe present a multipurpose nanomechanical force probe that combines a sideways-mounted elasti...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2001."Februa...
This thesis presents, develops and applies new methodologies that can quantitatively probe the mecha...
We present a new method for performing dynamic elastography of soft tissue samples. By sensing nanos...