Title :
Detection, classification, and superposition resolution of action potentials in multiunit single-channel recordings by an on-line real-time neural network
Author :
Chandra, Rishi ; Optican, Lance M.
Author_Institution :
Lab. of Sensorimotor Res., Nat. Eye Inst., Bethesda, MD, USA
fDate :
5/1/1997 12:00:00 AM
Abstract :
Determination of single-unit spike trains from multiunit recordings obtained during extracellular recording has been the focus of many studies over the last two decades. In multiunit recordings, superpositions can occur with high frequency if the firing rates of the neurons are high or correlated, making superposition resolution imperative for accurate spike train determination. In this work, a connectionist neural network (NN) was applied to the spike sorting challenge. A novel training scheme was developed which enabled the NN to resolve some superpositions using single-channel recordings. Simulated multiunit spike trains were constructed from templates and noise segments that were extracted from real extracellular recordings. The simulations were used to determine the performances of the NN and a simple matched template filter (MTF), which was used as a basis for comparison. The network performed as well as the MTF in identifying nonoverlapping spikes, and was significantly better in resolving superpositions and rejecting noise. An on-line, real-time implementation of the NN discriminator, using a high-speed digital signal processor mounted inside an IBM-PC, is now in use in six laboratories.
Keywords :
bioelectric potentials; biology computing; cellular biophysics; laboratory techniques; medical signal processing; neural nets; neurophysiology; signal detection; IBM-PC; action potentials; connectionist neural network; extracellular recording; high-speed digital signal processor; multiunit single-channel recordings; neuron firing rate; noise rejection; noise segments; nonoverlapping spikes identification; on-line real-time neural network; real extracellular recordings; simple matched template filter; spike sorting challenge; superposition resolution; training scheme; Electrodes; Extracellular; Frequency; Matched filters; Neural networks; Neurons; Optical filters; Optical recording; Shape; Sorting; Action Potentials; Algorithms; Analog-Digital Conversion; Animals; False Positive Reactions; Haplorhini; Humans; Infant, Newborn; Models, Neurological; Neural Networks (Computer); Online Systems; Sensitivity and Specificity; Signal Processing, Computer-Assisted; Temporal Lobe;
Journal_Title :
Biomedical Engineering, IEEE Transactions on