Literature DB >> 18068804

Dynamic multi-arm radial lens stretcher: a robotic analog of the ciliary body.

Matthew A Reilly1, Paul D Hamilton, Nathan Ravi.   

Abstract

We developed a dynamic lens stretching device to quantitatively determine the relationships between force, equatorial displacement, and anterior curvature. A computer-controlled four-arm lens stretcher, equipped with real-time force transducers in each arm, was designed and constructed to obtain transient force measurements during lens stretching. The force-decay spectrum was fitted with a seven-parameter viscoelastic model characterized by three time constants. A corneal topography unit was used to measure the curvature of fresh porcine lenses ex vivo and in vitro in a four-arm lens stretcher at various equatorial displacements. The lens stretcher and corneal topography unit provided detailed information regarding the behavior of the porcine lens in vitro. For all lenses, the central portion of the anterior surface flattened as zonular force increased. Force increased nonlinearly with equatorial displacement. Relaxation time constants for accommodation were 34.5+/-12.2 ms, 310+/-122 ms, and 12,800+/-9490 ms. Time constants for disaccommodation were 34.9+/-4.7 ms, 291+/-79.1 ms, and 3400+/-775 ms, which were not statistically different from those measured for accommodation. The lens stretcher acts as a robotic analog of the ciliary body. This device allows direct, quantitative measurement of the forces and curvature changes relevant to accommodation. However, distortions were present due to the use of only four arms.

Mesh:

Year:  2007        PMID: 18068804     DOI: 10.1016/j.exer.2007.10.005

Source DB:  PubMed          Journal:  Exp Eye Res        ISSN: 0014-4835            Impact factor:   3.467


  4 in total

1.  High refractive index polysiloxane as injectable, in situ curable accommodating intraocular lens.

Authors:  Xiaojuan Hao; Justine L Jeffery; Tam P T Le; Gail McFarland; Graham Johnson; Roger J Mulder; Qian Garrett; Fabrice Manns; Derek Nankivil; Esdras Arrieta; Arthur Ho; Jean-Marie Parel; Timothy C Hughes
Journal:  Biomaterials       Date:  2012-05-15       Impact factor: 12.479

2.  Age-dependence of the optomechanical responses of ex vivo human lenses from India and the USA, and the force required to produce these in a lens stretcher: the similarity to in vivo disaccommodation.

Authors:  Robert C Augusteyn; Ashik Mohamed; Derek Nankivil; Pesala Veerendranath; Esdras Arrieta; Mukesh Taneja; Fabrice Manns; Arthur Ho; Jean-Marie Parel
Journal:  Vision Res       Date:  2011-05-24       Impact factor: 1.886

3.  Functionalised polysiloxanes as injectable, in situ curable accommodating intraocular lenses.

Authors:  Xiaojuan Hao; Justine L Jeffery; John S Wilkie; Gordon F Meijs; Anthony B Clayton; Jason D Watling; Arthur Ho; Viviana Fernandez; Carolina Acosta; Hideo Yamamoto; Mohamed G M Aly; Jean-Marie Parel; Timothy C Hughes
Journal:  Biomaterials       Date:  2010-08-07       Impact factor: 12.479

4.  Lens Stretching Modulates Lens Epithelial Cell Proliferation via YAP Regulation.

Authors:  Bharat Kumar; Heather L Chandler; Timothy Plageman; Matthew A Reilly
Journal:  Invest Ophthalmol Vis Sci       Date:  2019-09-03       Impact factor: 4.799

  4 in total

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