Cell mechanics play a key role in several fundamental biological processes, such as migration, proliferation, differentiation and tissue morphogenesis. In addition, many diseased conditions of the cell are correlated with altered cell mechanics, as in the case of cancer progression. For this there is much interest in methods that can map mechanical properties with a sub-cell resolution. Here, we demonstrate an inverted pulsed opto-acoustic microscope (iPOM) that operates in the 10 to 100 GHz range. These frequencies allow mapping quantitatively cell structures as thin as 10 nm and resolving the fibrillar details of cells. Using this non-invasive all-optical system, we produce high-resolution images based on mechanical properties as the cont...
We present a combined multiphoton-acoustic microscope giving collocated access to the local morpholo...
An elasticity microscope images tissue stiffness at fine resolution. Possible applications include d...
Ultrasound imaging is a highly valuable tool in imaging human tissues due to its non-invasive and ea...
Cell mechanics play a key role in several fundamental biological processes, such as migration, proli...
International audiencePicosecond optoacoustic microscopy is a technique that allows imaging single c...
Adhesion and mechanical properties of cells are key players in several cellular functions and areinv...
The mechanical properties of cells play an important role in cell function and behavior. This paper ...
L’adhésion et les propriétés mécaniques des cellules jouent un rôle crucial dans le fonctionnementce...
Cell morphological analysis has long been used in cell biology and physiology for abnormality identi...
In this paper, we describe a new, highfrequency, time-resolved scanning acoustic microscope develope...
International audiencePerturbation of tissue rigidity is associated with different types of patholog...
The mechanical properties of cells play an important role in cell function and behavior. This paper ...
Laser-generated GHz-ultrasonic-based technologies have shown the ability to image single cell adhesi...
Label-free imaging of living cells below the optical diffraction limit poses great challenges for op...
Laser-generated GHz-ultrasonic-based technologies have shown the ability to image single cell adhesi...
We present a combined multiphoton-acoustic microscope giving collocated access to the local morpholo...
An elasticity microscope images tissue stiffness at fine resolution. Possible applications include d...
Ultrasound imaging is a highly valuable tool in imaging human tissues due to its non-invasive and ea...
Cell mechanics play a key role in several fundamental biological processes, such as migration, proli...
International audiencePicosecond optoacoustic microscopy is a technique that allows imaging single c...
Adhesion and mechanical properties of cells are key players in several cellular functions and areinv...
The mechanical properties of cells play an important role in cell function and behavior. This paper ...
L’adhésion et les propriétés mécaniques des cellules jouent un rôle crucial dans le fonctionnementce...
Cell morphological analysis has long been used in cell biology and physiology for abnormality identi...
In this paper, we describe a new, highfrequency, time-resolved scanning acoustic microscope develope...
International audiencePerturbation of tissue rigidity is associated with different types of patholog...
The mechanical properties of cells play an important role in cell function and behavior. This paper ...
Laser-generated GHz-ultrasonic-based technologies have shown the ability to image single cell adhesi...
Label-free imaging of living cells below the optical diffraction limit poses great challenges for op...
Laser-generated GHz-ultrasonic-based technologies have shown the ability to image single cell adhesi...
We present a combined multiphoton-acoustic microscope giving collocated access to the local morpholo...
An elasticity microscope images tissue stiffness at fine resolution. Possible applications include d...
Ultrasound imaging is a highly valuable tool in imaging human tissues due to its non-invasive and ea...