Spatiotemporal processing of linear acceleration: primary afferent and central vestibular neuron responses.

Abstract:

:Spatiotemporal convergence and two-dimensional (2-D) neural tuning have been proposed as a major neural mechanism in the signal processing of linear acceleration. To examine this hypothesis, we studied the firing properties of primary otolith afferents and central otolith neurons that respond exclusively to horizontal linear accelerations of the head (0.16-10 Hz) in alert rhesus monkeys. Unlike primary afferents, the majority of central otolith neurons exhibited 2-D spatial tuning to linear acceleration. As a result, central otolith dynamics vary as a function of movement direction. During movement along the maximum sensitivity direction, the dynamics of all central otolith neurons differed significantly from those observed for the primary afferent population. Specifically at low frequencies (

journal_name

J Neurophysiol

authors

Angelaki DE,Dickman JD

doi

10.1152/jn.2000.84.4.2113

subject

Has Abstract

pub_date

2000-10-01 00:00:00

pages

2113-32

issue

4

eissn

0022-3077

issn

1522-1598

journal_volume

84

pub_type

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