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Influence of Magnitude and Duration of Altered Gravity and Readaptation to 1 G on the Structure and Function of the Utricle in Toadfish,

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Journal Front Physiol
Date 2018 Nov 9
PMID 30405430
Citations 2
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Abstract

Gravity has remained constant during animal evolution and the neural sensory systems detecting acceleration forces have remained remarkably conserved among vertebrates. The utricular organ senses the sum of inertial force due to head translation and head tilt relative to gravitational vertical. Change in gravitational force would be expected to have profound effects on how an organism maintains equilibrium. We characterize the physiology of utricular afferents to applied accelerations in the oyster toadfish, , in normal 1 g to establish benchmarks, after 1-32-day exposures to 2.24 g (resultant) via centrifugation (hypergravity, HG), after 4- and 16-day exposures to 1.12 g (resultant), and following 1-8 days recovery to HG exposures to study re-adaptation to 1 g. Afferents were also examined during activation of efferent vestibular pathway. Centrifugation at 2.24 g included 228°/s constant angular velocity component, and thus horizontal canal afferent responses to yaw rotation were recorded as an internal control in each fish. Afferents studied after 228°/s rotation for 4 and 16 days without centripetal acceleration, called On-Center-Control, were indistinguishable from their control counterparts. Principal response to HG was an adjustment of afferent sensitivity as a function of magnitude and duration of exposure: an initial robust increase at 3-4 days followed by a significant decrease from 16 to 32 days. Initial increase observed after 4 days of HG took >4 days in 1 g to recover, and the decrease observed after 16 days of HG took >2 days to readapt to 1 g. Hair cells in striola and medial extrastriola macula regions were serially reconstructed in 3D from thin sections using transmission electron microscopy in control fish and fish exposed to 4 and 16 days of HG. Despite the highly significant differences in afferent physiology, synaptic body counts quantified in the fish were equivalent in their inter-animal variability and averages. No clear role of the efferent pathway as a feedback mechanism regulating afferent behavior to HG was found. Transfer from 1 g to HG imparts profound effects on gravitational sensitivity of utricular afferents and the accompanying transfer from the HG back to the 1 g resembles in part (as an analog) the transfer from 1 g to the micrograms.

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References
1.
Balaban P, Malyshev A, Ierusalimsky V, Aseyev N, Korshunova T, Bravarenko N . Functional changes in the snail statocyst system elicited by microgravity. PLoS One. 2011; 6(3):e17710. PMC: 3066201. DOI: 10.1371/journal.pone.0017710. View

2.
Fernandez C, Goldberg J . Physiology of peripheral neurons innervating otolith organs of the squirrel monkey. II. Directional selectivity and force-response relations. J Neurophysiol. 1976; 39(5):985-95. DOI: 10.1152/jn.1976.39.5.985. View

3.
Marco J, Lee W, Suarez C, Hoffman L, Honrubia V . Morphologic and quantitative study of the efferent vestibular system in the chinchilla: 3-D reconstruction. Acta Otolaryngol. 1993; 113(3):229-34. DOI: 10.3109/00016489309135798. View

4.
Lim D, Stith J, Stockwell C, Oyama J . Observations on saccules of rats exposed to long-term hypergravity. Aerosp Med. 1974; 45(7):705-10. View

5.
Jamali M, Sadeghi S, Cullen K . Response of vestibular nerve afferents innervating utricle and saccule during passive and active translations. J Neurophysiol. 2008; 101(1):141-9. PMC: 3815216. DOI: 10.1152/jn.91066.2008. View