The mechanical characterization of biological samples is a fundamental issue in biology and related fields, such as tissue and cell mechanics, regenerative medicine and diagnosis of diseases. In this paper, a novel approach for the identification of the stiffness and damping coefficients of biosamples is introduced. According to the proposed method, a MEMS-based microgripper in operational condition is used as a measurement tool. The mechanical model describing the dynamics of the gripper-sample system considers the pseudo-rigid body model for the microgripper, and the Kelvin–Voigt constitutive law of viscoelasticity for the sample. Then, two algorithms based on recursive least square (RLS) methods are implemented for the estimation of the ...
Accurate and robust quantification of soft tissue elasticity has significant clinical implications f...
This chapter aims to develop a system identification methodology for determining structural paramete...
The ability of the atomic force microscope (AFM) to resolve highly accurate interaction forces has m...
The mechanical characterization of biological samples is a fundamental issue in biology and related ...
In this paper, a novel technique for the viscoelastic characterization of biosamples is presented. T...
In this paper, the viscoelastic characterization of biosamples is addressed considering a measuring ...
In this paper, a novel technique for the viscoelastic characterization of biosamples is presented. T...
This paper focuses on the possibility of using a recently fabricated micro gripper for the on line e...
Using atomic force microscopy (AFM) for studying soft, biological material has become increasingly p...
As many studies show, there is a relation between the tissue’s mechanical characteristics and some s...
As many studies show, there is a relation between the tissue's mechanical characteristics and some s...
Identification of mechanical properties of cells has previously been shown to have a great potential...
Abstract This paper presents a method for detecting the mechanical stiffness of micro-metric biologi...
This paper presents a method for detecting the mechanical stiffness of micro-metric biological tissu...
none2noThis work presents an identification procedure for the constitutive model of viscoelastic non...
Accurate and robust quantification of soft tissue elasticity has significant clinical implications f...
This chapter aims to develop a system identification methodology for determining structural paramete...
The ability of the atomic force microscope (AFM) to resolve highly accurate interaction forces has m...
The mechanical characterization of biological samples is a fundamental issue in biology and related ...
In this paper, a novel technique for the viscoelastic characterization of biosamples is presented. T...
In this paper, the viscoelastic characterization of biosamples is addressed considering a measuring ...
In this paper, a novel technique for the viscoelastic characterization of biosamples is presented. T...
This paper focuses on the possibility of using a recently fabricated micro gripper for the on line e...
Using atomic force microscopy (AFM) for studying soft, biological material has become increasingly p...
As many studies show, there is a relation between the tissue’s mechanical characteristics and some s...
As many studies show, there is a relation between the tissue's mechanical characteristics and some s...
Identification of mechanical properties of cells has previously been shown to have a great potential...
Abstract This paper presents a method for detecting the mechanical stiffness of micro-metric biologi...
This paper presents a method for detecting the mechanical stiffness of micro-metric biological tissu...
none2noThis work presents an identification procedure for the constitutive model of viscoelastic non...
Accurate and robust quantification of soft tissue elasticity has significant clinical implications f...
This chapter aims to develop a system identification methodology for determining structural paramete...
The ability of the atomic force microscope (AFM) to resolve highly accurate interaction forces has m...