File:Eye_and_ray_path3.svg · Wikimedia Commons · See Wikimedia Commons
lens
Sign in to saveAlso known as crystalline lens, eye lens, lens of eye, lens of the eye, lens (anatomy), ocular lens, anatomical lens, aquula
transparent structure in the eye
A lens is a transparent structure inside your eye that focuses light onto the back of the eye so you can see images clearly. It's important because it works like the lens in a camera, adjusting its shape to help you focus on objects at different distances.
AI-generated from the Wikipedia summary — may contain errors.
Research
161,705 papers- Crystalline lens alterations in congenital aniridia.ReviewArchivos de la Sociedad Espanola de Oftalmologia · 2021D'Oria F, Barraquer R, Alio JLDOI: 10.1016/j.oftale.2020.12.008
- [Lens dislocation].Medicina · 2022Lazcano C, Larrañaga N, Polanco V et al.
- Management of the subluxated crystalline lens: A review.ReviewClinical & experimental ophthalmology · 2021Chee SP, Ti SE, Chan NSDOI: 10.1111/ceo.13975
- [Crystalline lens (1969-1970-1971)].ReviewArchives d'ophtalmologie et revue generale d'ophtalmologie · 1972Bronner A, Salomon JM
- Artificial crystalline lens.ReviewOphthalmology clinics of North America · 2006Norrby S, Koopmans S, Terwee TDOI: 10.1016/j.ohc.2005.10.001
- Using a "Wide Lens".Journal of breast imaging · 2023Harvey JADOI: 10.1093/jbi/wbad004
- Lens desensitizing: theory and practice.Applied optics · 2022Sasian JDOI: 10.1364/AO.443758
- Mechanically loaded GRIN lens for endoscopy.Optics express · 2023Němcová Š, Čáp JDOI: 10.1364/OE.485554
via PubMed
Wikidata facts
Show 2 more facts
- NCI Thesaurus ID
- C12743
- Commons category
- Lens (anatomy)
via Wikidata · CC0
~29 min read
Article
The lens, or crystalline lens, is a transparent biconvex structure in most land vertebrate eyes. Relatively long, thin fiber cells make up the majority of the lens. These cells vary in architecture and are arranged in concentric layers. New layers of cells are recruited from a thin epithelium at the front of the lens, just below the basement membrane surrounding the lens. As a result, the vertebrate lens grows throughout life. The surrounding lens membrane referred to as the lens capsule also grows in a systematic way, ensuring the lens maintains an optically suitable shape in concert with the underlying fiber cells. Thousands of suspensory ligaments are embedded into the capsule at its largest diameter which suspend the lens within the eye. Most of these lens structures are derived from the epithelium of the embryo before birth.
Along with the cornea, aqueous, and vitreous humours, the lens refracts light, focusing it onto the retina. In many land animals the shape of the lens can be altered, effectively changing the focal length of the eye, enabling them to focus on objects at various distances. This adjustment of the lens is known as accommodation (see also below). In many fully aquatic vertebrates, such as fish, other methods of accommodation are used, such as changing the lens's position relative to the retina rather than changing the shape of the lens. Accommodation is analogous to the focusing of a photographic camera via changing its lenses. In land vertebrates the lens is flatter on its anterior side than on its posterior side, while in fish the lens is often close to spherical.