Development of novel signal and spike velocity analysis tools in peripheral nerve cuffs
Klus, J.; Boys, A. J.; Serrano, R. R.-M.; Malliaras, G. G.; Carnicer Lombarte, A.
Show abstract
ObjectivePeripheral nerve neurotechnologies hold significant promise as avenues for new closed-loop clinical treatments. However, analysis tools for nerve recordings - a key component of closed-loop nerve technologies - remain underdeveloped compared to brain-focused methods. This study introduces and explores the performance of two novel nerve signal analysis techniques which rely on a defining feature of peripheral nerve signals: the reliable conduction velocity of signals transmitted by axons in nerves. ApproachWe test the capabilities of the introduced cross-correlation and spike delay velocity analysis techniques both in silico on synthetic nerve signals and on in vivo nerve signals acquired from freely-moving rats. Main resultsOur findings show that both techniques can be successfully employed to extract transmission direction and velocity information from nerve cuff recordings. Notably, cross-correlation analysis can be employed to detect neural signals of very low signal-to-noise ratio, otherwise undetectable by typical spike detection approaches. SignificanceOur findings provide new techniques to both enhance detection and extract new information in the form of velocity data from nerve recordings. As axon signal conduction direction and velocity is tightly linked to neural function, these techniques can support new research into peripheral nervous system function and new therapeutic approaches driven by neural interfaces.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- An automated method for precise axon reconstruction from recordings of high-density micro-electrode arrays 95%
- Understanding responses to multi-electrode epiretinal stimulation using a biophysical model 95%
- Combining biophysical models and machine learning to optimize implant geometry and stimulation protocol for intraneural electrodes 94%
Similar papers in this journal
- Simulation Insights on the Compound Action Potential in Multifascicular Nerves 94%
- Parameterization of intraoperative human microelectroderecordings: Linking action potential morphology to brainanatomy 94%
- Canonical Response Parameterization: Quantifying the structure of responses to single-pulse intracranial electrical brain stimulation 92%
Similar papers in this journal
Similar papers in this journal
- I-Spin live: An open-source software based on blind-source separation for real-time decoding of motor unit activity in humans 95%
- The control and training of single motor units in isometric tasks are constrained by a common synaptic input signal 92%
- Patch-walking: Coordinated multi-pipette patch clamp for efficiently finding synaptic connections 92%
Similar papers in this journal
- Multiformity of extracellular microelectrode recordings from Aδ neurons in the dorsal root ganglia: A computational modeling study 94%
- A neural network for online spike classification that improves decoding accuracy 92%
- Behavioral training of marmosets and electrophysiological recording from the cerebellum 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.