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February 2, 2026Cell Reports3 citationsOpen Access

Leveraging current steering and the biophysics of spike generation for cellular-resolution electrical stimulation of neurons

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PVPraful VasireddyRVRamandeep VilkhuALAmrith Lotlikar

Key Points

  • The aim is to develop a method for precise cellular-resolution electrical stimulation of neurons using current steering.
  • Developed a framework for current steering based on biophysical principles.
  • Tested the framework on isolated macaque and human retina.
  • Used high-density microelectrode arrays for simultaneous electrical stimulation.
  • Combined currents from multiple electrodes to evoke spikes in retinal ganglion cells.
  • Successfully evoked single spikes in retinal ganglion cells using three electrodes.
  • Demonstrated that current combinations can drive spiking either linearly or nonlinearly based on electrode geometry.
  • Identified optimized stimulation patterns for enhanced cellular selectivity through modeling.

Abstract

Electrical stimulation at cellular resolution to restore the function of neural circuits is limited by the density of available electrode arrays. Although current steering with multi-electrode stimulation can be used to target cells between electrodes, it has not been proven for systematically targeting individual cells. We develop a framework for cellular-resolution current steering, leveraging the biophysics of electrically evoked spike generation, and test its efficacy in isolated macaque and human retina. Currents were passed through three electrodes simultaneously using large-scale high-density microelectrode arrays, directly evoking single spikes in retinal ganglion cells. The currents combined either linearly or nonlinearly to drive spiking, depending on the geometry of the electrodes relative to the cell. These findings were captured by a biophysical model and by a simpler parametric model in which spikes can initiate at several sites on the cell membrane and were leveraged to efficiently identify multi-electrode stimulation patterns that optimized cellular selectivity.

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Cite This Study

Vasireddy et al. (2026) studied this question.

synapsesocial.com/papers/6980fd18c1c9540dea80ee4ahttps://doi.org/10.1016/j.celrep.2025.116917
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