Literature DB >> 17591878

Fascicular specialization in human and monkey rectus muscles: evidence for anatomic independence of global and orbital layers.

Key Hwan Lim1, Vadims Poukens, Joseph L Demer.   

Abstract

PURPOSE: Connective tissue pulleys inflect the extraocular muscles (EOMs) and receive insertions from some fibers. The authors investigated insertions and anatomic relationships of fiber fascicles within rectus EOMs to clarify the relationship to their pulleys.
METHODS: Two human and two monkey orbits were removed intact, serially sectioned in the coronal plane, histologically stained, and digitally photographed. The authors traced representative fascicles in the human medial rectus (MR) and inferior rectus and monkey lateral rectus and superior rectus muscles. In the human MR, the authors computed average collagen fractions in the orbital layer (OL) and the global layer (GL).
RESULTS: In human and monkey, OL fascicles remained distinct from each other and from the GL throughout. Most OL fascicles were inserted into the pulley through short tendons. Most GL fascicles bypassed the pulley without insertion. Collagen content in the human MR OL increased from 29% +/- 5% (SD) in midorbit to 65% +/- 9% in the anterior orbit but slightly decreased from 26% +/- 6% to 23% +/- 1% in the GL. Tracing of every fiber in a human MR OL fascicle demonstrated terminations on pulley tendons without myomyous junctions.
CONCLUSIONS: Fibers in the primate rectus OL lack myomyous or GL junctions, but nearly all insert on the pulley through a broad distribution of short tendons and dense intercalated collagen. Fibers in the GL generally do not insert on pulley tissues and are associated with less collagen. These features support the distinct role of the OL in anteroposterior positioning of connective tissues proposed in the active pulley hypothesis and substantial mechanical independence of the OL and GL.

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Mesh:

Year:  2007        PMID: 17591878      PMCID: PMC1978188          DOI: 10.1167/iovs.06-0692

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


  40 in total

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2.  Extraocular connective tissue architecture.

Authors:  Joel M Miller; Joseph L Demer; Vadims Poukens; Dmitri S Pavlovski; Hien N Nguyen; Ethan A Rossi
Journal:  J Vis       Date:  2003       Impact factor: 2.240

Review 3.  Pivotal role of orbital connective tissues in binocular alignment and strabismus: the Friedenwald lecture.

Authors:  Joseph L Demer
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Review 4.  Evidence supporting extraocular muscle pulleys: refuting the platygean view of extraocular muscle mechanics.

Authors:  Joseph L Demer
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5.  Stimulation-evoked eye movements with and without the lateral rectus muscle pulley.

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7.  Evidence for active control of rectus extraocular muscle pulleys.

Authors:  J L Demer; S Y Oh; V Poukens
Journal:  Invest Ophthalmol Vis Sci       Date:  2000-05       Impact factor: 4.799

8.  Quantitative analysis of the structure of the human extraocular muscle pulley system.

Authors:  Reika Kono; Vadims Poukens; Joseph L Demer
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9.  Evidence for a pulley of the inferior oblique muscle.

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Review 10.  Control of eye orientation: where does the brain's role end and the muscle's begin?

Authors:  Dora E Angelaki; Bernhard J M Hess
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  18 in total

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Authors:  Joseph L Demer; Robert A Clark
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7.  Independent passive mechanical behavior of bovine extraocular muscle compartments.

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8.  Magnetic resonance imaging of differential compartmental function of horizontal rectus extraocular muscles during conjugate and converged ocular adduction.

Authors:  Joseph L Demer; Robert A Clark
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9.  Long-term outcome of medial rectus recession and pulley posterior fixation in esotropia with high AC/A ratio.

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10.  Two novel/ancient myosins in mammalian skeletal muscles: MYH14/7b and MYH15 are expressed in extraocular muscles and muscle spindles.

Authors:  Alberto C Rossi; Cristina Mammucari; Carla Argentini; Carlo Reggiani; Stefano Schiaffino
Journal:  J Physiol       Date:  2009-11-30       Impact factor: 5.182

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