The analysis of electrode-recording-horizon in multi-electrode array(MEA)
Yunsheng Lin, Chuanping Chen, Lin Chen, Shaoqun Zeng, Qingming Luo
Abstract
Yunsheng Lin, Chuanping Chen, Lin Chen, Shaoqun Zeng, Qingming Luo
Abstract
There is a problem that can't be ignored in the MEA collected-signal-sorting process: When a neuron positions in two adjacent microelectrodes, can its activity be detected at the same time by both microelectrodes? Under certain conditions, the contact between the electrode and the cultured cell could be simplified as capacitive contact. Because the distance and the covering area affect the capacitance the amplitude of potential decreases rapidly with the increase of distance to the microelectrode. We show that common MEA chip whose spacing of electrodes is 200 μ m can't detect the neuronal potential in its adjacent electrodes simultaneously. About 100-recorded experiments data in our lab confirm this conclusion.
OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
There is a problem that can't be ignored in the MEA collected-signal-sorting process: When a neuron positions in two adjacent microelectrodes, can its activity be detected at the same time by both microelectrodes? Under certain conditions, the contact between the electrode and the cultured cell could be simplified as capacitive contact. Because the distance and the covering area affect the capacitance the amplitude of potential decreases rapidly with the increase of distance to the microelectrode. We show that common MEA chip whose spacing of electrodes is 200 μ m can't detect the neuronal potential in its adjacent electrodes simultaneously. About 100-recorded experiments data in our lab confirm this conclusion.
Key concepts: Microelectrode, Electrode, Capacitive sensing, Capacitance, Materials science, Multielectrode array, Sorting, SIGNAL (programming language)