Literature DB >> 21743010

Responses of medial rectus motoneurons in monkeys with strabismus.

Anand C Joshi1, Vallabh E Das.   

Abstract

PURPOSE: Monkeys reared under conditions of alternating monocular occlusion during their first few months of life show large horizontal strabismus, "A" patterns, and dissociated vertical deviation. "A" patterns manifest as an inappropriate horizontal component in the deviated eye during vertical eye movements (cross-axis movement). The objective of this study was to investigate response properties of medial rectus motoneurons (MRMNs) in relation to strabismus properties.
METHODS: Burst-tonic activity of 21 MRMNs in the oculomotor nucleus were recorded from two monkeys with exotropia as they performed horizontal and vertical smooth pursuit (0.2 Hz, ±10°) under monocular viewing conditions. Neuronal responses and horizontal component of eye movements were used to identify regression coefficients in a first-order model for each tracking condition.
RESULTS: Comparison of position, velocity, and constant parameter coefficients, estimated from horizontal tracking data with either eye viewing, showed no significant differences (P > 0.07), indicating that neuronal activity could account for the horizontal misalignment. Comparison of the position, velocity, and constant parameter coefficients estimated from horizontal tracking and the cross-axis condition showed no significant differences (P > 0.07), suggesting that motoneuron activity could account for most of the inappropriate horizontal cross-axis movement observed in the covered eye during vertical smooth pursuit.
CONCLUSIONS: These data suggest that, in animals with sensory-induced strabismus, central innervation to extraocular muscles is responsible for setting the state of strabismus. Mechanical factors such as muscle length adaptation (for horizontal misalignment) and pulley heterotopy or static torsion (for "A" patterns) likely do not play a major role in determining properties in a sensory-induced strabismus.

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Year:  2011        PMID: 21743010      PMCID: PMC3262551          DOI: 10.1167/iovs.11-7402

Source DB:  PubMed          Journal:  Invest Ophthalmol Vis Sci        ISSN: 0146-0404            Impact factor:   4.799


  37 in total

1.  Present concepts of oculomotor organization.

Authors:  U Büttner; J A Büttner-Ennever
Journal:  Prog Brain Res       Date:  2006       Impact factor: 2.453

2.  The 10th Bielschowsky Lecture. Changes in strabismus over time: the roles of vergence tonus and muscle length adaptation.

Authors:  David L Guyton
Journal:  Binocul Vis Strabismus Q       Date:  2006

3.  Esotropia associated with early presbyopia caused by inappropriate muscle length adaptation.

Authors:  Weldon W Wright; Katherina C Gotzler; David L Guyton
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4.  Horizontal eye movement networks in primates as revealed by retrograde transneuronal transfer of rabies virus: differences in monosynaptic input to "slow" and "fast" abducens motoneurons.

Authors:  Gabriella Ugolini; François Klam; Maria Doldan Dans; David Dubayle; Anne-Marie Brandi; Jean Büttner-Ennever; Werner Graf
Journal:  J Comp Neurol       Date:  2006-10-20       Impact factor: 3.215

5.  Correlation of cross-axis eye movements and motoneuron activity in non-human primates with "A" pattern strabismus.

Authors:  Vallabh E Das; Michael J Mustari
Journal:  Invest Ophthalmol Vis Sci       Date:  2007-02       Impact factor: 4.799

6.  The effect of resection on satellite cell activity in rabbit extraocular muscle.

Authors:  Stephen P Christiansen; Linda K McLoon
Journal:  Invest Ophthalmol Vis Sci       Date:  2006-02       Impact factor: 4.799

7.  Horizontal saccade disconjugacy in strabismic monkeys.

Authors:  LaiNgor Fu; Ronald J Tusa; Michael J Mustari; Vallabh E Das
Journal:  Invest Ophthalmol Vis Sci       Date:  2007-07       Impact factor: 4.799

8.  Eye position signals in the abducens and oculomotor nuclei of monkeys during ocular convergence.

Authors:  W M King; W Zhou; R D Tomlinson; K M McConville; W K Page; G D Paige; J S Maxwell
Journal:  J Vestib Res       Date:  1994 Sep-Oct       Impact factor: 2.435

9.  Incomitance in monkeys with strabismus.

Authors:  Vallabh E Das; Lai Ngor Fu; Michael J Mustari; Ronald J Tusa
Journal:  Strabismus       Date:  2005-03

10.  Change of eye muscle sarcomeres according to eye position.

Authors:  A B Scott
Journal:  J Pediatr Ophthalmol Strabismus       Date:  1994 Mar-Apr       Impact factor: 1.402

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  27 in total

Review 1.  Neural mechanisms of oculomotor abnormalities in the infantile strabismus syndrome.

Authors:  Mark M G Walton; Adam Pallus; Jérome Fleuriet; Michael J Mustari; Kristina Tarczy-Hornoch
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2.  Responses of cells in the midbrain near-response area in monkeys with strabismus.

Authors:  Vallabh E Das
Journal:  Invest Ophthalmol Vis Sci       Date:  2012-06-22       Impact factor: 4.799

3.  Horizontal and vertical optokinetic eye movements in macaque monkeys with infantile strabismus: directional bias and crosstalk.

Authors:  Fatema Ghasia; Lawrence Tychsen
Journal:  Invest Ophthalmol Vis Sci       Date:  2014-01-13       Impact factor: 4.799

4.  Muscle path length in horizontal strabismus.

Authors:  Ronen Rabinowitz; Joseph L Demer
Journal:  J AAPOS       Date:  2014-02       Impact factor: 1.220

5.  Abnormal activity of neurons in abducens nucleus of strabismic monkeys.

Authors:  Mark M G Walton; Michael J Mustari; Christy L Willoughby; Linda K McLoon
Journal:  Invest Ophthalmol Vis Sci       Date:  2014-11-20       Impact factor: 4.799

6.  Electrical stimulation of superior colliculus affects strabismus angle in monkey models for strabismus.

Authors:  Suraj Upadhyaya; Hui Meng; Vallabh E Das
Journal:  J Neurophysiol       Date:  2016-12-28       Impact factor: 2.714

7.  Abnormal Eye Position Signals in Interstitial Nucleus of Cajal in Monkeys With "A" Pattern Strabismus.

Authors:  Adam Pallus; Michael Mustari; Mark M G Walton
Journal:  Invest Ophthalmol Vis Sci       Date:  2019-09-03       Impact factor: 4.799

8.  Comparison of three models of saccade disconjugacy in strabismus.

Authors:  Mark M G Walton; Michael J Mustari
Journal:  J Neurophysiol       Date:  2017-09-13       Impact factor: 2.714

9.  Rectus Extraocular Muscle Size and Pulley Location in Concomitant and Pattern Exotropia.

Authors:  Rui Hao; Soh Youn Suh; Alan Le; Joseph L Demer
Journal:  Ophthalmology       Date:  2016-07-19       Impact factor: 12.079

10.  Functional magnetic resonance imaging of horizontal rectus muscles in esotropia.

Authors:  Kirsta Schoeff; Zia Chaudhuri; Joseph L Demer
Journal:  J AAPOS       Date:  2013-01-24       Impact factor: 1.220

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