An outlook on extracellular waveforms produced by the three neuronal compartments

Fuente: arXiv
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Main Authors: Sibille, Jérémie, Teh, Kai Lun, Tzilivaki, Alexandra, Schmitz, Dietmar, Kuokkanen, Paula T.
Format: Preprint
Published: 2026
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author Sibille, Jérémie
Teh, Kai Lun
Tzilivaki, Alexandra
Schmitz, Dietmar
Kuokkanen, Paula T.
author_facet Sibille, Jérémie
Teh, Kai Lun
Tzilivaki, Alexandra
Schmitz, Dietmar
Kuokkanen, Paula T.
contents The brain is composed of billions of neurons with virtually endless morphologies and ion channel compositions, resulting in unique extracellular waveforms. Nevertheless, almost all neuronal morphologies can be reduced to a simple architecture made of three principal compartments: 1) the soma and nearby axonal hillock, 2) axonal projections ending in arbors or single synaptic contacts, and 3) dendrites. This review offers a perspective on how these three ubiquitous neuronal compartments can be identified and how they shape the extracellularly recorded waveforms, when spatial considerations are taken into account. This outlook utilizes biophysical modelling to complement existing experimental observations. Modeling has predicted a rich landscape of putative extracellular waveforms based on morphology, channel density, and sequential temporal activation. Recent advances in extracellular in vivo recording, combining low noise with high spatial density of recording sites, have improved the precision of extracellular waveform measurements, particularly in capturing waveforms beyond the classical somatic spikes, and in some cases, combinations originating from different compartments. This review aims to reorganize extracellular waveform heterogeneity by separating signals stemming from three neuronal compartments using three dimensions: amplitude, duration, and spatial extent or footprint. In doing so, we argue for a change of perspective, looking beyond somatic spikes to include spatiality and waveform combinations.
format Preprint
id arxiv_https___arxiv_org_abs_2601_05893
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle An outlook on extracellular waveforms produced by the three neuronal compartments
Sibille, Jérémie
Teh, Kai Lun
Tzilivaki, Alexandra
Schmitz, Dietmar
Kuokkanen, Paula T.
Neurons and Cognition
The brain is composed of billions of neurons with virtually endless morphologies and ion channel compositions, resulting in unique extracellular waveforms. Nevertheless, almost all neuronal morphologies can be reduced to a simple architecture made of three principal compartments: 1) the soma and nearby axonal hillock, 2) axonal projections ending in arbors or single synaptic contacts, and 3) dendrites. This review offers a perspective on how these three ubiquitous neuronal compartments can be identified and how they shape the extracellularly recorded waveforms, when spatial considerations are taken into account. This outlook utilizes biophysical modelling to complement existing experimental observations. Modeling has predicted a rich landscape of putative extracellular waveforms based on morphology, channel density, and sequential temporal activation. Recent advances in extracellular in vivo recording, combining low noise with high spatial density of recording sites, have improved the precision of extracellular waveform measurements, particularly in capturing waveforms beyond the classical somatic spikes, and in some cases, combinations originating from different compartments. This review aims to reorganize extracellular waveform heterogeneity by separating signals stemming from three neuronal compartments using three dimensions: amplitude, duration, and spatial extent or footprint. In doing so, we argue for a change of perspective, looking beyond somatic spikes to include spatiality and waveform combinations.
title An outlook on extracellular waveforms produced by the three neuronal compartments
topic Neurons and Cognition
url https://arxiv.org/abs/2601.05893