Using white noise to gate organic transistors for dynamic monitoring of cultured cell layers.

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Using white noise to gate organic transistors for dynamic monitoring of cultured cell layers. is …
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scholarly articleQ13442814

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P6179Dimensions Publication ID1010187560
P356DOI10.1038/SREP11613
P932PMC publication ID4481393
P698PubMed publication ID26112429
P5875ResearchGate publication ID279187167

P50authorMiriam HuertaQ75253801
Róisín M OwensQ41818168
Jonathan RivnayQ45974006
George G. MalliarasQ46118966
P2093author name stringAdel Hama
Pierre Leleux
Marc Ramuz
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Impact of synaptic neurotransmitter concentration time course on the kinetics and pharmacological modulation of inhibitory synaptic currents.Q37898524
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In vivo recordings of brain activity using organic transistors.Q39550649
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Impedance analysis of MDCK cells measured by electric cell-substrate impedance sensingQ41264224
Concentration-dependent effects of cytochalasin D on tight junctions and actin filaments in MDCK epithelial cells.Q41485174
Monitoring motion of confluent cells in tissue cultureQ41582166
High transconductance organic electrochemical transistorsQ43083760
Organic electrochemical transistors with maximum transconductance at zero gate biasQ43707873
Dynamic monitoring of Salmonella typhimurium infection of polarized epithelia using organic transistorsQ50002272
P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P407language of work or nameEnglishQ1860
P304page(s)11613
P577publication date2015-06-26
P1433published inScientific ReportsQ2261792
P1476titleUsing white noise to gate organic transistors for dynamic monitoring of cultured cell layers
P478volume5