This paper presents a method for detecting the mechanical stiffness of micro-metric biological tissues by means of compliance tests performed with a MEMS-Technology based microgripper. Thanks to an actuating rotary comb drive working in cooperation with another sensing rotary comb drive, the system is able to recognize the tissue sample stiffness. Such characterization is possible thanks to a proper control system that is applied to the whole mechanical structure
In this paper, a novel technique for the viscoelastic characterization of biosamples is presented. T...
University of Minnesota Ph.D. dissertation. December 2011. Major: Mechanical engineering. Advisor:Pr...
Abstract — A microelectromechanical systems (MEMS) rotary micro-gripper incorporating electrothermal...
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...
This paper focuses on the possibility of using a recently fabricated micro gripper for the on line e...
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...
A Micro Electro-Mechanical System (MEMS) stiffness sensor based on position-feedback mechanism which...
Miniaturized and “smart ” instruments capable of characterizing the mechanical properties of tiny bi...
AbstractThis contribution describes the femtosecond laser ablation and mechanical characterization o...
This paper outlines the design and characterization of a setup used to measure the stiffness of micr...
This paper presents a Micro Electro-Mechanical System (MEMS) that performs electrostatic force actua...
Abstract – This paper deals with the design of a micro-force sens-ing device for biomechanical chara...
Stiffness sensing is an important issue in medical diagnostic, robotics surgery, safe handling, and ...
In this paper, a novel technique for the viscoelastic characterization of biosamples is presented. T...
University of Minnesota Ph.D. dissertation. December 2011. Major: Mechanical engineering. Advisor:Pr...
Abstract — A microelectromechanical systems (MEMS) rotary micro-gripper incorporating electrothermal...
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...
This paper focuses on the possibility of using a recently fabricated micro gripper for the on line e...
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...
A Micro Electro-Mechanical System (MEMS) stiffness sensor based on position-feedback mechanism which...
Miniaturized and “smart ” instruments capable of characterizing the mechanical properties of tiny bi...
AbstractThis contribution describes the femtosecond laser ablation and mechanical characterization o...
This paper outlines the design and characterization of a setup used to measure the stiffness of micr...
This paper presents a Micro Electro-Mechanical System (MEMS) that performs electrostatic force actua...
Abstract – This paper deals with the design of a micro-force sens-ing device for biomechanical chara...
Stiffness sensing is an important issue in medical diagnostic, robotics surgery, safe handling, and ...
In this paper, a novel technique for the viscoelastic characterization of biosamples is presented. T...
University of Minnesota Ph.D. dissertation. December 2011. Major: Mechanical engineering. Advisor:Pr...
Abstract — A microelectromechanical systems (MEMS) rotary micro-gripper incorporating electrothermal...