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Extracellular Detection of Neuronal Coupling

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Journal Sci Rep
Specialty Science
Date 2021 Jul 20
PMID 34282275
Citations 1
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Abstract

We developed a method to non-invasively detect synaptic relationships among neurons from in vitro networks. Our method uses microelectrode arrays on which neurons are cultured and from which propagation of extracellular action potentials (eAPs) in single axons are recorded at multiple electrodes. Detecting eAP propagation bypasses ambiguity introduced by spike sorting. Our methods identify short latency spiking relationships between neurons with properties expected of synaptically coupled neurons, namely they were recapitulated by direct stimulation and were sensitive to changing the number of active synaptic sites. Our methods enabled us to assemble a functional subset of neuronal connectivity in our cultures.

Citing Articles

From End to End: Gaining, Sorting, and Employing High-Density Neural Single Unit Recordings.

Bod R, Rokai J, Meszena D, Fiath R, Ulbert I, Marton G Front Neuroinform. 2022; 16:851024.

PMID: 35769832 PMC: 9236662. DOI: 10.3389/fninf.2022.851024.

References
1.
Sabatini B, Regehr W . Timing of neurotransmission at fast synapses in the mammalian brain. Nature. 1996; 384(6605):170-2. DOI: 10.1038/384170a0. View

2.
Vardi R, Goldental A, Sardi S, Sheinin A, Kanter I . Simultaneous multi-patch-clamp and extracellular-array recordings: Single neuron reflects network activity. Sci Rep. 2016; 6:36228. PMC: 5099952. DOI: 10.1038/srep36228. View

3.
Silberberg G, Wu C, Markram H . Synaptic dynamics control the timing of neuronal excitation in the activated neocortical microcircuit. J Physiol. 2004; 556(Pt 1):19-27. PMC: 1664894. DOI: 10.1113/jphysiol.2004.060962. View

4.
Sabatini B, Regehr W . Timing of synaptic transmission. Annu Rev Physiol. 1999; 61:521-42. DOI: 10.1146/annurev.physiol.61.1.521. View

5.
Radivojevic M, Franke F, Altermatt M, Muller J, Hierlemann A, Bakkum D . Tracking individual action potentials throughout mammalian axonal arbors. Elife. 2017; 6. PMC: 5633342. DOI: 10.7554/eLife.30198. View