Assaying Spontaneous Network Activity and Cellular Viability Using Multi-well Microelectrode Arrays
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Publisher
Springer New York
Link
http://link.springer.com/content/pdf/10.1007/978-1-4939-6960-9_13
Reference7 articles.
1. Valdivia P, Martin MT, Houck K, Lefew WR, Ross J, Shafer TJ (2014) Multi-well microelectrode array recordings detect neuroactivity of ToxCast compounds. Neurotoxicology 44:204–217
2. Nicolas J, Hendriksen PJM, van Kleef RGDM, de Groot A, Bovee TFH, Rietjens IMCM, Westerink RHS (2014) Detection of marine neurotoxins in food safety testing using a multielectrode array. Mol Nutr Food Res 58:2369–2378
3. Hogberg HT, Sobanski T, Novellino A, Whelan M, Weiss DG, Bal-Price AK (2011) Application of micro-electrode arrays (MEAs) as an emerging technology for developmental neurotoxicity: evaluation of domoic acid-induced effects in primary cultures of rat cortical neurons. Neurotoxicology 32:158–168
4. Robinette BL, Harrill JA, Mundy WR, Shafer TJ (2011) In vitro assessment of developmental neurotoxicity: use of microelectrode arrays to measure functional changes in neuronal network ontogeny. Front Neuroeng 4:1
5. Cotterill E, Hall D, Wallace K, Mundy WR, Eglen SJ, Shafer TJ (2016) Characterization of early cortical neural network development in multiwell microelectrode array plates. J Biomol Screen 21(5):510–519
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