A single cell can be regarded as a complex network that contains thousands of overlapping signaling pathways. The traditional methods for describing the dynamics of this network are extremely complicated. The mechanical properties of a cell reflect the cytoskeletal structure and composition and are closely related to the cellular biological functions and physiological activities. Therefore, modeling the mechanical properties of single cells provides the basis for analyzing and controlling the cellular state. In this study, we developed a dynamical model with cellular viscoelasticity properties as the system parameters to describe the stress-relaxation phenomenon of a single cell indented by an atomic force microscope (AFM). The system order...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...
A single cell can be regarded as a complex network that contains thousands of overlapping signaling ...
A single cell can be regarded as a complex network that contains thousands of overlapping signaling ...
Cells can be regarded as a complex network, which contains thousands of criss-cross signal pathways....
Cells can be regarded as a complex network, which contains thousands of criss-cross signal pathways....
Organisms are composed by cells, and the cells can also reflect the physiology of creatures. The com...
Organisms are composed by cells, and the cells can also reflect the physiology of creatures. The com...
The mechanical properties of cells play important roles in regulating the physiological activities o...
The mechanical properties of cells play important roles in regulating the physiological activities o...
Cell mechanics plays an important role in regulating the physiological activities of cells. The adve...
Cell mechanics plays an important role in regulating the physiological activities of cells. The adve...
Cell mechanics plays an important role in regulating the physiological activities of cells. The adve...
Cell mechanics plays an important role in regulating the physiological activities of cells. The adve...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...
A single cell can be regarded as a complex network that contains thousands of overlapping signaling ...
A single cell can be regarded as a complex network that contains thousands of overlapping signaling ...
Cells can be regarded as a complex network, which contains thousands of criss-cross signal pathways....
Cells can be regarded as a complex network, which contains thousands of criss-cross signal pathways....
Organisms are composed by cells, and the cells can also reflect the physiology of creatures. The com...
Organisms are composed by cells, and the cells can also reflect the physiology of creatures. The com...
The mechanical properties of cells play important roles in regulating the physiological activities o...
The mechanical properties of cells play important roles in regulating the physiological activities o...
Cell mechanics plays an important role in regulating the physiological activities of cells. The adve...
Cell mechanics plays an important role in regulating the physiological activities of cells. The adve...
Cell mechanics plays an important role in regulating the physiological activities of cells. The adve...
Cell mechanics plays an important role in regulating the physiological activities of cells. The adve...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...