Over the last decades, nanomechanical sensors have received significant attention from the scientific community, as they find plenty of applications in many different research fields, ranging from fundamental physics to clinical diagnosis. Regarding biological applications, nanomechanical sensors have been used for characterizing biological entities, for detecting their presence, and for characterizing the forces and motion associated with fundamental biological processes, among many others. Thanks to the continuous advancement of micro- and nano-fabrication techniques, nanomechanical sensors have rapidly evolved towards more sensitive devices. At the same time, researchers have extensively worked on the development of theoretical models th...
Nanobiomechanics has been emerging as a powerful technology in characterizing mechanical properties ...
International audienceIn this chapter, we firstly present mechanical elements which are essential co...
This paper discusses nano-mechanical measurement of mechanosensory neurons in vivo
In the last years, a large variety of ultrasensitive nanomechanical sensors that have been developed...
In the last years, a large variety of ultrasensitive nanomechanical sensors have been developed and ...
Nanomechanical biosensing relies on changes in the movement and deformation of micro- and nanoscale ...
11 páginas, 7 figuras, 2 tablas.Biosensors based on microcantilevers have become a promising tool fo...
The goal of discovering new devices and new transduction concepts for biological detection remains o...
The research presented herein focuses on the use of micro- and nanoelectromechanical systems (MEMS/N...
Techniques from nanoscience now enable the creation of ultrasmall electronic devices. Among these, ...
The decrease in resonant frequency of a classical cantilever provides a sensitive measure of the mas...
Comunicación presentada en el 9th Nanomechanical sensing workshop, celebrado en Bombay del 6 al 8 de...
Recently, detecting biological particles by analyzing their mechanical properties has attracted incr...
The widespread use of antibiotics and antifungal drugs has provoked an increasing number of multi-re...
Biological and chemical processes can be transduced into nanomechanical motion via change of surface...
Nanobiomechanics has been emerging as a powerful technology in characterizing mechanical properties ...
International audienceIn this chapter, we firstly present mechanical elements which are essential co...
This paper discusses nano-mechanical measurement of mechanosensory neurons in vivo
In the last years, a large variety of ultrasensitive nanomechanical sensors that have been developed...
In the last years, a large variety of ultrasensitive nanomechanical sensors have been developed and ...
Nanomechanical biosensing relies on changes in the movement and deformation of micro- and nanoscale ...
11 páginas, 7 figuras, 2 tablas.Biosensors based on microcantilevers have become a promising tool fo...
The goal of discovering new devices and new transduction concepts for biological detection remains o...
The research presented herein focuses on the use of micro- and nanoelectromechanical systems (MEMS/N...
Techniques from nanoscience now enable the creation of ultrasmall electronic devices. Among these, ...
The decrease in resonant frequency of a classical cantilever provides a sensitive measure of the mas...
Comunicación presentada en el 9th Nanomechanical sensing workshop, celebrado en Bombay del 6 al 8 de...
Recently, detecting biological particles by analyzing their mechanical properties has attracted incr...
The widespread use of antibiotics and antifungal drugs has provoked an increasing number of multi-re...
Biological and chemical processes can be transduced into nanomechanical motion via change of surface...
Nanobiomechanics has been emerging as a powerful technology in characterizing mechanical properties ...
International audienceIn this chapter, we firstly present mechanical elements which are essential co...
This paper discusses nano-mechanical measurement of mechanosensory neurons in vivo