This study combines the high-throughput capabilities of microfluidics with the sensitive measurements of microelectromechanical systems (MEMS) technology to perform biophysical characterization of circulating cells for diagnostic purposes. The proposed device includes a built-in microchannel that is probed by two opposing tips performing compression and sensing separately. Mechanical displacement of the compressing tip (up to a maximum of 14 µm) and the sensing tip (with a quality factor of 8.9) are provided by two separate comb-drive actuators, and sensing is performed with a capacitive displacement sensor. The device is designed and developed for simultaneous electrical and mechanical measurements. As the device is capable of exchan...
Devices that diagnose and characterize disease have the potential to greatly improve healthcare worl...
In recent years, considerable attention has been paid to miniaturized and integrated mechanical, aco...
Les cellules circulantes ont des tailles microniques (10-30 microns de diamètre), les microtechnolog...
This study combines the high-throughput capabilities of microfluidics with the sensitive measurement...
International audienceThis study combines the high-throughput capabilities of microfluidics with the...
International audienceThis study combines the high-throughput capabilities of microfluidics with the...
International audienceWe introduced a MEMS device to perform direct measurements on electrical and m...
International audienceWe introduced a MEMS device to perform direct measurements on electrical and m...
Considering the dimensions of cells, using microtechnologies has numerous advantages to handle singl...
Biophysical (mechanical and electrical) properties of living cells have been proven to play importan...
This thesis describes three techniques for the characterization of living cells using micro-electro-...
Biophysical (mechanical and electrical) properties of living cells have been proven to play importan...
This thesis describes three techniques for the characterization of living cells using micro-electro-...
Devices that diagnose and characterize disease have the potential to greatly improve healthcare worl...
Biophysical (mechanical and electrical) properties of living cells have been proven to play importan...
Devices that diagnose and characterize disease have the potential to greatly improve healthcare worl...
In recent years, considerable attention has been paid to miniaturized and integrated mechanical, aco...
Les cellules circulantes ont des tailles microniques (10-30 microns de diamètre), les microtechnolog...
This study combines the high-throughput capabilities of microfluidics with the sensitive measurement...
International audienceThis study combines the high-throughput capabilities of microfluidics with the...
International audienceThis study combines the high-throughput capabilities of microfluidics with the...
International audienceWe introduced a MEMS device to perform direct measurements on electrical and m...
International audienceWe introduced a MEMS device to perform direct measurements on electrical and m...
Considering the dimensions of cells, using microtechnologies has numerous advantages to handle singl...
Biophysical (mechanical and electrical) properties of living cells have been proven to play importan...
This thesis describes three techniques for the characterization of living cells using micro-electro-...
Biophysical (mechanical and electrical) properties of living cells have been proven to play importan...
This thesis describes three techniques for the characterization of living cells using micro-electro-...
Devices that diagnose and characterize disease have the potential to greatly improve healthcare worl...
Biophysical (mechanical and electrical) properties of living cells have been proven to play importan...
Devices that diagnose and characterize disease have the potential to greatly improve healthcare worl...
In recent years, considerable attention has been paid to miniaturized and integrated mechanical, aco...
Les cellules circulantes ont des tailles microniques (10-30 microns de diamètre), les microtechnolog...