EVALUATION OF IRIDOCILIARY AND LENTICULAR ELASTICITY USING SHEAR-WAVE ELASTOGRAPHY IN RABBIT EYES
Introduction: A previous study has employed shear-wave ultrasound elastographic imaging to assess corneal rigidity in an ex-vivo porcine eye model. This study employs the same modality in vivo in a rabbit eye model in order to assess lens, ciliary body and total ocular rigidity changes following the...
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doaj-78a3a6aff001437f938e53ddf91afe652020-11-24T22:52:49ZengKarolinum PressActa Medica1211-42861805-96942014-01-0157191410.14712/18059694.2014.2EVALUATION OF IRIDOCILIARY AND LENTICULAR ELASTICITY USING SHEAR-WAVE ELASTOGRAPHY IN RABBIT EYESEfstathios T. Detorakis0Eleni E. Drakonaki1Harilaos Ginis2Nikolaos Karyotakis3Ioannis G. Pallikaris4 Institute of Vision & Optics, University of CreteDepartment of Medical Imaging, University Hospital of Heraklion, Greece Institute of Vision & Optics, University of Crete Institute of Vision & Optics, University of Crete Institute of Vision & Optics, University of Crete; University Hospital of Heraklion, Greece, Department of OphthalmologyIntroduction: A previous study has employed shear-wave ultrasound elastographic imaging to assess corneal rigidity in an ex-vivo porcine eye model. This study employs the same modality in vivo in a rabbit eye model in order to assess lens, ciliary body and total ocular rigidity changes following the instillation of atropine and pilocarpine. Methods: Ten non-pigmented female rabbits were examined. Measurements of the lens, ciliary body and total ocular rigidity as well as lens thickness and anterior chamber depth were taken with the Aixplorer system (SuperSonic Imagine, Aix-en-Provence, France) with the SuperLinear™ SL 15-4 transducer in both eyes at baseline as well as after pilocarpine and atropine instillation. The IOP was also measured with the TonoPen tonometer. Results: Changes in rigidity in the examined areas following atropine instillation were statistically not significant. Ciliary body rigidity was significantly increased whereas lens and total ocular rigidity were significantly reduced following pilocarpine instillation. The decrease in lens rigidity following pilocarpine was significantly associated with the respective increase in ciliary body rigidity. Conclusions: Shear-wave ultrasound elastography can detect in vivo rigidity changes in the anterior segment of the rabbit eye model and may potentially be applied in human eyes, providing useful clinical information on conditions in which rigidity changes play an important role, such as glaucoma, pseudoexfoliation syndrome or presbyopia. https://actamedica.lfhk.cuni.cz/57/1/0009/Ultrasonography instrumentsLensCiliary bodyShear-wave elastographyOcular rigidity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Efstathios T. Detorakis Eleni E. Drakonaki Harilaos Ginis Nikolaos Karyotakis Ioannis G. Pallikaris |
spellingShingle |
Efstathios T. Detorakis Eleni E. Drakonaki Harilaos Ginis Nikolaos Karyotakis Ioannis G. Pallikaris EVALUATION OF IRIDOCILIARY AND LENTICULAR ELASTICITY USING SHEAR-WAVE ELASTOGRAPHY IN RABBIT EYES Acta Medica Ultrasonography instruments Lens Ciliary body Shear-wave elastography Ocular rigidity |
author_facet |
Efstathios T. Detorakis Eleni E. Drakonaki Harilaos Ginis Nikolaos Karyotakis Ioannis G. Pallikaris |
author_sort |
Efstathios T. Detorakis |
title |
EVALUATION OF IRIDOCILIARY AND LENTICULAR ELASTICITY USING SHEAR-WAVE ELASTOGRAPHY IN RABBIT EYES |
title_short |
EVALUATION OF IRIDOCILIARY AND LENTICULAR ELASTICITY USING SHEAR-WAVE ELASTOGRAPHY IN RABBIT EYES |
title_full |
EVALUATION OF IRIDOCILIARY AND LENTICULAR ELASTICITY USING SHEAR-WAVE ELASTOGRAPHY IN RABBIT EYES |
title_fullStr |
EVALUATION OF IRIDOCILIARY AND LENTICULAR ELASTICITY USING SHEAR-WAVE ELASTOGRAPHY IN RABBIT EYES |
title_full_unstemmed |
EVALUATION OF IRIDOCILIARY AND LENTICULAR ELASTICITY USING SHEAR-WAVE ELASTOGRAPHY IN RABBIT EYES |
title_sort |
evaluation of iridociliary and lenticular elasticity using shear-wave elastography in rabbit eyes |
publisher |
Karolinum Press |
series |
Acta Medica |
issn |
1211-4286 1805-9694 |
publishDate |
2014-01-01 |
description |
Introduction: A previous study has employed shear-wave ultrasound elastographic imaging to assess corneal rigidity in an ex-vivo porcine eye model. This study employs the same modality in vivo in a rabbit eye model in order to assess lens, ciliary body and total ocular rigidity changes following the instillation of atropine and pilocarpine. Methods: Ten non-pigmented female rabbits were examined. Measurements of the lens, ciliary body and total ocular rigidity as well as lens thickness and anterior chamber depth were taken with the Aixplorer system (SuperSonic Imagine, Aix-en-Provence, France) with the SuperLinear™ SL 15-4 transducer in both eyes at baseline as well as after pilocarpine and atropine instillation. The IOP was also measured with the TonoPen tonometer. Results: Changes in rigidity in the examined areas following atropine instillation were statistically not significant. Ciliary body rigidity was significantly increased whereas lens and total ocular rigidity were significantly reduced following pilocarpine instillation. The decrease in lens rigidity following pilocarpine was significantly associated with the respective increase in ciliary body rigidity. Conclusions: Shear-wave ultrasound elastography can detect in vivo rigidity changes in the anterior segment of the rabbit eye model and may potentially be applied in human eyes, providing useful clinical information on conditions in which rigidity changes play an important role, such as glaucoma, pseudoexfoliation syndrome or presbyopia. |
topic |
Ultrasonography instruments Lens Ciliary body Shear-wave elastography Ocular rigidity |
url |
https://actamedica.lfhk.cuni.cz/57/1/0009/ |
work_keys_str_mv |
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