AbstractThe electrical sheet resistance between living cells grown on planar electronic contacts of semiconductors or metals is a crucial parameter for bioelectronic devices. It determines the strength of electrical signal transduction from cells to chips and from chips to cells. We measured the sheet resistance by applying AC voltage to oxidized silicon chips and by imaging the voltage change across the attached cell membrane with a fluorescent voltage-sensitive dye. The phase map of voltage change was fitted with a planar core-coat conductor model using the sheet resistance as a free parameter. For nerve cells from rat brain on polylysine as well as for HEK293 cells and MDCK cells on fibronectin we find a similar sheet resistance of 10MΩ....
Recent advances in material sciences have led to the development of novel silicon integrated circuit...
AbstractAn experimental method has been established to measure the electric properties of a cell mem...
Organs-on-chips, in vitro models involving the culture of (human) tissues inside microfluidic device...
ABSTRACT The electrical sheet resistance between living cells grown on planar electronic contacts of...
AbstractThe electrical sheet resistance between living cells grown on planar electronic contacts of ...
AbstractThe interaction of cells in a tissue depends on the nature of the extracellular matrix. The ...
Cell surface charge is an important element of the function of biological barriers, but no chip devi...
The blood-brain barrier (BBB) is crucial to maintain brainhomeostasis and prevent toxic substances f...
Transepithelial/transendothelial electrical resistance (TEER) measurements can be applied in organ-o...
With the advent of semiconductor technologies, great advances have been achieved with the combinatio...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
Electronic transducers of neuronal cellular activity are important devices in neuroscience and neuro...
Electronic transducers of neuronal cellular activity are important devices in neuroscience and neuro...
Measuring transendothelial or transepithelial electrical resistance (TEER) is a widely used method t...
The interfacing of artificial devices with biological systems is a challenging field that crosses se...
Recent advances in material sciences have led to the development of novel silicon integrated circuit...
AbstractAn experimental method has been established to measure the electric properties of a cell mem...
Organs-on-chips, in vitro models involving the culture of (human) tissues inside microfluidic device...
ABSTRACT The electrical sheet resistance between living cells grown on planar electronic contacts of...
AbstractThe electrical sheet resistance between living cells grown on planar electronic contacts of ...
AbstractThe interaction of cells in a tissue depends on the nature of the extracellular matrix. The ...
Cell surface charge is an important element of the function of biological barriers, but no chip devi...
The blood-brain barrier (BBB) is crucial to maintain brainhomeostasis and prevent toxic substances f...
Transepithelial/transendothelial electrical resistance (TEER) measurements can be applied in organ-o...
With the advent of semiconductor technologies, great advances have been achieved with the combinatio...
We describe a silicon chip-based supported bilayer system to detect the presence of ion channels and...
Electronic transducers of neuronal cellular activity are important devices in neuroscience and neuro...
Electronic transducers of neuronal cellular activity are important devices in neuroscience and neuro...
Measuring transendothelial or transepithelial electrical resistance (TEER) is a widely used method t...
The interfacing of artificial devices with biological systems is a challenging field that crosses se...
Recent advances in material sciences have led to the development of novel silicon integrated circuit...
AbstractAn experimental method has been established to measure the electric properties of a cell mem...
Organs-on-chips, in vitro models involving the culture of (human) tissues inside microfluidic device...