The basic structural and functional unit of a living organism is a single cell. To understand the variability and to improve the biomedical requirement of a single cell, its analysis has become a key technique in biological and biomedical research. With a physical boundary of microchannels and microstructures, single cells are efficiently captured and analyzed, whereas electric forces sort and position single cells. Various microfluidic techniques have been exploited to manipulate single cells through hydrodynamic and electric forces. Digital microfluidics (DMF), the manipulation of individual droplets holding minute reagents and cells of interest by electric forces, has received more attention recently. Because of ease of fabrication, comp...
Stochastic variations within seemingly homogeneous cell populations determine the emergent propertie...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...
In vitro microenvironments used for culturing and studying living cells have remained virtually unch...
The basic structural and functional unit of a living organism is a single cell. To understand the va...
Abstract: The basic structural and functional unit of a living organism is a single cell. To underst...
In a forest of a hundred thousand trees, no two leaves are alike. Similarly, no two cells in a genet...
Many scientific domains focus on the gathering of fundamental knowledge in physiological, biochemica...
Biological cell manipulation and analysis is one of the most investigated applications of microfluid...
Multicellular organisms, from roundworms to humans, are composed of interacting individual cells tha...
Multicellular organisms, from roundworms to humans, are composed of interacting individual cells tha...
Item does not contain fulltextMiniaturization has been the key driver for many remarkable technologi...
Cellular heterogeneity of any tissue or organ makes it challenging to identify and study the impact ...
Digital microfluidics (DMF) has recently emerged as a popular technology for a wide range of applic...
Substantial evidence shows that the heterogeneity of individual cells within a genetically identical...
Digital microfluidics (DMF) has emerged in the past decade as a novel microfluidic paradigm. As a li...
Stochastic variations within seemingly homogeneous cell populations determine the emergent propertie...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...
In vitro microenvironments used for culturing and studying living cells have remained virtually unch...
The basic structural and functional unit of a living organism is a single cell. To understand the va...
Abstract: The basic structural and functional unit of a living organism is a single cell. To underst...
In a forest of a hundred thousand trees, no two leaves are alike. Similarly, no two cells in a genet...
Many scientific domains focus on the gathering of fundamental knowledge in physiological, biochemica...
Biological cell manipulation and analysis is one of the most investigated applications of microfluid...
Multicellular organisms, from roundworms to humans, are composed of interacting individual cells tha...
Multicellular organisms, from roundworms to humans, are composed of interacting individual cells tha...
Item does not contain fulltextMiniaturization has been the key driver for many remarkable technologi...
Cellular heterogeneity of any tissue or organ makes it challenging to identify and study the impact ...
Digital microfluidics (DMF) has recently emerged as a popular technology for a wide range of applic...
Substantial evidence shows that the heterogeneity of individual cells within a genetically identical...
Digital microfluidics (DMF) has emerged in the past decade as a novel microfluidic paradigm. As a li...
Stochastic variations within seemingly homogeneous cell populations determine the emergent propertie...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...
In vitro microenvironments used for culturing and studying living cells have remained virtually unch...