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Microsecond-scale Timing Precision in Rodent Trigeminal Primary Afferents

Overview
Journal J Neurosci
Specialty Neurology
Date 2015 Apr 17
PMID 25878266
Citations 24
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Abstract

Communication in the nervous system occurs by spikes: the timing precision with which spikes are fired is a fundamental limit on neural information processing. In sensory systems, spike-timing precision is constrained by first-order neurons. We found that spike-timing precision of trigeminal primary afferents in rats and mice is limited both by stimulus speed and by electrophysiological sampling rate. High-speed video of behaving mice revealed whisker velocities of at least 17,000°/s, so we delivered an ultrafast "ping" (>50,000°/s) to single whiskers and sampled primary afferent activity at 500 kHz. Median spike jitter was 17.4 μs; 29% of neurons had spike jitter < 10 μs. These results indicate that the input stage of the trigeminal pathway has extraordinary spike-timing precision and very high potential information capacity. This timing precision ranks among the highest in biology.

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References
1.
Gollisch T, Meister M . Rapid neural coding in the retina with relative spike latencies. Science. 2008; 319(5866):1108-11. DOI: 10.1126/science.1149639. View

2.
Wagner H, Brill S, Kempter R, Carr C . Microsecond precision of phase delay in the auditory system of the barn owl. J Neurophysiol. 2005; 94(2):1655-8. PMC: 3268176. DOI: 10.1152/jn.01226.2004. View

3.
Ritt J, Andermann M, Moore C . Embodied information processing: vibrissa mechanics and texture features shape micromotions in actively sensing rats. Neuron. 2008; 57(4):599-613. PMC: 4391974. DOI: 10.1016/j.neuron.2007.12.024. View

4.
Diamond M, von Heimendahl M, Knutsen P, Kleinfeld D, Ahissar E . 'Where' and 'what' in the whisker sensorimotor system. Nat Rev Neurosci. 2008; 9(8):601-12. DOI: 10.1038/nrn2411. View

5.
Suga N, Schlegel P . Coding and processing in the auditory systems of FM-signal-producing bats. J Acoust Soc Am. 1973; 54(1):174-90. DOI: 10.1121/1.1913561. View