Sometimes extracellular recordings fail for good reasons
Karoline Horgmo Jæger1, Aslak Tveito2
1Simula Research Laboratory, Oslo, Norway. karolihj@simula.no.
NPJ Systems Biology and Applications
|May 2, 2026
Summary
Homogeneous excitable cells and tissues generate no extracellular potentials (EPs) during uniform activity. Detectable EPs arise from spatial variations, electrical waves, or external stimuli, explaining silent excitable systems.
Area of Science:
- Biophysics
- Computational Neuroscience
- Cellular Electrophysiology
Background:
- Excitable cells generate extracellular potentials (EPs) crucial for physiological signals like EEG and ECG.
- Some excitable systems exhibit minimal or undetectable EPs, a phenomenon lacking clear explanation.
- Understanding EP generation is vital for interpreting bioelectrical recordings.
Purpose of the Study:
- To mathematically elucidate the conditions under which excitable cells and tissues produce extracellular potentials.
- To explain the absence of detectable EPs in certain homogeneous excitable systems.
- To identify the key factors driving EP generation in biological tissues.
Main Methods:
- Development of mathematical models for excitable cells and tissues.
- Analysis of extracellular potential generation under conditions of spatial homogeneity and uniformity.
- Simulation of cellular and tissue-level electrophysiology, including Purkinje neurons, hiPSC-CMs, and pancreatic β-cells.
Main Results:
- Homogeneous excitable cells and tissues produce zero extracellular potentials during spatially uniform, non-propagating activity.
- Absence of EPs in isolated, autonomous cells with uniform membrane properties, irrespective of model complexity.
- EPs are generated solely by spatial inhomogeneities, propagating waves, or applied currents.
- Demonstrated physiological relevance in Purkinje neurons, where channel clustering enables synchronization and EP detection.
Conclusions:
- Spatial homogeneity is the primary reason for the absence of extracellular potentials in certain excitable systems.
- Heterogeneity, electrical waves, and external stimuli are necessary and sufficient for generating detectable EPs.
- The findings provide a fundamental principle for understanding bioelectrical signal generation and detection in diverse cell types.
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