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Andreas Hierlemann

Showing results (61-70 of 180) with videos related to

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Analytical Chemistry|September 22, 2016
Automated, Multiplexed Electrical Impedance Spectroscopy Platform for Continuous Monitoring of Microtissue SpheroidsSebastian C Bürgel, Laurin Diener, Olivier Frey, et al.
Scientific Reports|November 27, 2015
Time-lapse electrical impedance spectroscopy for monitoring the cell cycle of single immobilized S. pombe cellsZhen Zhu, Olivier Frey, Niels Haandbaek, et al.
Frontiers in Neuroscience|May 21, 2019
Optimal Electrode Size for Multi-Scale Extracellular-Potential Recording From Neuronal AssembliesVijay Viswam, Marie Engelene J Obien, Felix Franke, et al.
Methods in Molecular Biology (Clifton, N.J.)|April 11, 2018
Fabrication and Operation of Microfluidic Hanging-Drop NetworksPatrick M Misun, Axel K Birchler, Moritz Lang, et al.
Sensors (Basel, Switzerland)|May 14, 2025
A Low-Cost Multimodal Testbed for Array-Based Electrophysiological MicroelectrodesCat-Vu H Bui, Neethu Maliakal, Hasan Ulusan, et al.
Advanced Biosystems|October 19, 2020
Predicting Metabolism-Related Drug-Drug Interactions Using a Microphysiological Multitissue SystemChristian Lohasz, Flavio Bonanini, Lisa Hoelting, et al.
Frontiers in Cellular Neuroscience|September 27, 2019
Large-Scale Mapping of Axonal Arbors Using High-Density Microelectrode ArraysTorsten Bullmann, Milos Radivojevic, Stefan T Huber, et al.
Tissue Engineering. Part A|August 5, 2008
Modulation of cardiomyocyte electrical properties using regulated bone morphogenetic protein-2 expressionCarlota Diaz Sanchez-Bustamante, Urs Frey, Jens M Kelm, et al.
Journal of Laboratory Automation|December 20, 2014
96-well format-based microfluidic platform for parallel interconnection of multiple multicellular spheroidsJin-Young Kim, David A Fluri, Jens M Kelm, et al.
Microsystems & Nanoengineering|May 7, 2019
Multi-analyte biosensor interface for real-time monitoring of 3D microtissue spheroids in hanging-drop networksPatrick M Misun, Jörg Rothe, Yannick R F Schmid, et al.
Pageof 18

Showing results (61-70 of 180) with videos related to

Sort By:
Pageof 18
Analytical Chemistry|September 22, 2016
Automated, Multiplexed Electrical Impedance Spectroscopy Platform for Continuous Monitoring of Microtissue SpheroidsSebastian C Bürgel, Laurin Diener, Olivier Frey, et al.
Scientific Reports|November 27, 2015
Time-lapse electrical impedance spectroscopy for monitoring the cell cycle of single immobilized S. pombe cellsZhen Zhu, Olivier Frey, Niels Haandbaek, et al.
Frontiers in Neuroscience|May 21, 2019
Optimal Electrode Size for Multi-Scale Extracellular-Potential Recording From Neuronal AssembliesVijay Viswam, Marie Engelene J Obien, Felix Franke, et al.
Methods in Molecular Biology (Clifton, N.J.)|April 11, 2018
Fabrication and Operation of Microfluidic Hanging-Drop NetworksPatrick M Misun, Axel K Birchler, Moritz Lang, et al.
Sensors (Basel, Switzerland)|May 14, 2025
A Low-Cost Multimodal Testbed for Array-Based Electrophysiological MicroelectrodesCat-Vu H Bui, Neethu Maliakal, Hasan Ulusan, et al.
Advanced Biosystems|October 19, 2020
Predicting Metabolism-Related Drug-Drug Interactions Using a Microphysiological Multitissue SystemChristian Lohasz, Flavio Bonanini, Lisa Hoelting, et al.
Frontiers in Cellular Neuroscience|September 27, 2019
Large-Scale Mapping of Axonal Arbors Using High-Density Microelectrode ArraysTorsten Bullmann, Milos Radivojevic, Stefan T Huber, et al.
Tissue Engineering. Part A|August 5, 2008
Modulation of cardiomyocyte electrical properties using regulated bone morphogenetic protein-2 expressionCarlota Diaz Sanchez-Bustamante, Urs Frey, Jens M Kelm, et al.
Journal of Laboratory Automation|December 20, 2014
96-well format-based microfluidic platform for parallel interconnection of multiple multicellular spheroidsJin-Young Kim, David A Fluri, Jens M Kelm, et al.
Microsystems & Nanoengineering|May 7, 2019
Multi-analyte biosensor interface for real-time monitoring of 3D microtissue spheroids in hanging-drop networksPatrick M Misun, Jörg Rothe, Yannick R F Schmid, et al.
Pageof 18