Anteriorly located zonular fibres as a tool for fine regulation in accommodation
Purpose To describe an anteriorly located system of zonular fibres that could be involved in fine‐tuning of accommodation. Methods Forty‐six human and 28 rhesus monkey eyes were dissected and special preparations were processed for scanning electron microscopy and reflected‐light microscopy. Additio...
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Published in | Ophthalmic & physiological optics Vol. 36; no. 1; pp. 13 - 20 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
England
Blackwell Publishing Ltd
01.01.2016
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Subjects | |
Online Access | Get full text |
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Summary: | Purpose
To describe an anteriorly located system of zonular fibres that could be involved in fine‐tuning of accommodation.
Methods
Forty‐six human and 28 rhesus monkey eyes were dissected and special preparations were processed for scanning electron microscopy and reflected‐light microscopy. Additional series of frontal and sagittal histological and ultrathin sections were analysed in respect to the origin and insertion of anteriorly located zonules. The presence of sensory terminals at the site of the originating zonules within the connective tissue of the ciliary body was studied by immunohistochemistry. For in‐vivo visualization ultrasound biomicroscopy (UBM) was performed on 12 human subjects.
Results
Fine zonular fibres originated from the valleys and lateral walls of the most anterior pars plicata that covers the anterior and inner circular ciliary muscle portion. These most anterior zonules (MAZ) showed attachments either to the anterior or posterior tines or they inserted directly onto the surface of the lens. At the site of origin, the course of the MAZ merged into the connective tissue fibres connecting the adjacent pigmented epithelium to the ciliary muscle. Numerous afferent terminals directly at the site of this MAZ‐origin were connected to the intrinsic nervous network of the ciliary muscle.
Conclusions
A newly described set of zonular fibres features the capabilities to register the tensions of the zonular fork and lens capsule. The close location and neural connection towards the circular ciliary muscle portion could provide the basis for stabilization and readjustment of focusing that serves fast and fine‐tuned accommodation and disaccommodation. |
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Bibliography: | NEI - No. RO1 EY10213; No. R21 EY018370-01A2; No. and R21 EY018370-01A2S1 Wisconsin National Primate Research Center, University of Wisconsin-Madison - No. # 5P51 RR 000167 Research to Prevent Blindness unrestricted Departmental Challenge Grant Ocular Physiology Research & Education Foundation istex:8628DC18AAA2E6F31EC9CA550BA0746C91DC9DAD ArticleID:OPO12257 ark:/67375/WNG-K0BT597T-H Core Grant for Vision Research - No. # P30 EY016665 ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 |
ISSN: | 0275-5408 1475-1313 |
DOI: | 10.1111/opo.12257 |