Summary. This paper presents a fully automated microrobotic system based on force/vision referenced control designed for cell mechanical characterization. The design of the prototype combines Scanning Probe Microscopy (SPM) techniques with advanced robotics approaches. As a result, accurate and non-destructive me-chanical characterization based on soft contact mechanisms are achieved. The in vitro working conditions are supported by the experimental setup so that mechani-cal characterizations can be performed in biological environmental requirements as well as in cyclical operating mode during several hours. The design of the differ-ent modules which compose the experimental setup are detailed. Mechanical cell characterization experiments u...
Cellular force sensing and control techniques are capable of en-hancing the dexterity and reliabilit...
Physical forces regulate the behavior of cells and tissues and are essential in cell organization an...
Abstract This paper presents a method for detecting the mechanical stiffness of micro-metric biologi...
Abstract—This paper presents a fully automated micro-robotic system based on force/vision referenced...
Abstract—This paper deals with the development of an open design platform for explorative cell mecha...
Abstract—This paper deals with the development of an open design platform for explorative cells mech...
Abstract – This paper deals with the design of a micro-force sens-ing device for biomechanical chara...
There has been an increasing demand of micromanipulation in the field of biotechnology during the la...
Abstract — Current research work on the development of a nanohandling robot station for automated ch...
We propose a method to characterize the mechanical properties of cells using a robot-integrated micr...
Abstract. Recent advances in molecular biology such as cloning demonstrate that in-creasingly comple...
Mechanical manipulation and characterization of biological cells have wide applications in genetics,...
Abstract — This paper presents a microrobotic system that inte-grates microscope vision and microfor...
In vitro tissues are significant biological substitute for drug test, cell morphogenesis exploration...
59 p.Micromanipulation techniques have come into the foray of science and engineering recently and h...
Cellular force sensing and control techniques are capable of en-hancing the dexterity and reliabilit...
Physical forces regulate the behavior of cells and tissues and are essential in cell organization an...
Abstract This paper presents a method for detecting the mechanical stiffness of micro-metric biologi...
Abstract—This paper presents a fully automated micro-robotic system based on force/vision referenced...
Abstract—This paper deals with the development of an open design platform for explorative cell mecha...
Abstract—This paper deals with the development of an open design platform for explorative cells mech...
Abstract – This paper deals with the design of a micro-force sens-ing device for biomechanical chara...
There has been an increasing demand of micromanipulation in the field of biotechnology during the la...
Abstract — Current research work on the development of a nanohandling robot station for automated ch...
We propose a method to characterize the mechanical properties of cells using a robot-integrated micr...
Abstract. Recent advances in molecular biology such as cloning demonstrate that in-creasingly comple...
Mechanical manipulation and characterization of biological cells have wide applications in genetics,...
Abstract — This paper presents a microrobotic system that inte-grates microscope vision and microfor...
In vitro tissues are significant biological substitute for drug test, cell morphogenesis exploration...
59 p.Micromanipulation techniques have come into the foray of science and engineering recently and h...
Cellular force sensing and control techniques are capable of en-hancing the dexterity and reliabilit...
Physical forces regulate the behavior of cells and tissues and are essential in cell organization an...
Abstract This paper presents a method for detecting the mechanical stiffness of micro-metric biologi...