Artificial eye boosted by hemispherical retina

An artificial eye has been reported that incorporates densely packed, nanometre-scale light sensors into a hemispherical retina-like component. Some of its sensory capabilities are comparable to that of its biological counterpart. A sensory device that mimics the structure of the human eye.

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Bibliographic Details
Published inNature (London) Vol. 581; no. 7808; pp. 264 - 265
Main Author Jiang, Hongrui
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 01.05.2020
Nature Publishing Group
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Abstract An artificial eye has been reported that incorporates densely packed, nanometre-scale light sensors into a hemispherical retina-like component. Some of its sensory capabilities are comparable to that of its biological counterpart. A sensory device that mimics the structure of the human eye.
AbstractList An artificial eye has been reported that incorporates densely packed, nanometre-scale light sensors into a hemispherical retina-like component. Some of its sensory capabilities are comparable to that of its biological counterpart.
An artificial eye has been reported that incorporates densely packed, nanometre-scale light sensors into a hemispherical retina-like component. Some of its sensory capabilities are comparable to that of its biological counterpart. A sensory device that mimics the structure of the human eye.
An artificial eye has been reported that incorporates densely packed, nanometre-scale light sensors into a hemispherical retina-like component. Some of its sensory capabilities are comparable to that of its biological counterpart. A sensory device that mimics the structure of the human eye.
The responsivity of the nanowires, which measures the current produced per watt of incident light, is almost the same for all frequencies of the visible spectrum. [...]when the nanowire array is stimulated by regular, rapid pulses of light, it can produce a current in response to a pulse in just 19.2 milliseconds, and can then take as little as 23.9 ms to recover (return to its inactive state) when the pulse has ended. [...]the photosensor array is currently only 10x10 pixels, with roughly 200-gm gaps between the pixels; this means that the light-detecting region is only about 2 mm wide. [...]the fabrication process involves some costly and low-throughput steps - for example, an expensive process known as focused-ion-beam etching is used to prepare each pore for nanowire formation. [...]the authors note that the response and recovery times of their device are reduced at higher concentrations of the ionic liquid, but at the expense of light transmission through the liquid.
Audience Academic
Author Jiang, Hongrui
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CitedBy_id crossref_primary_10_1038_s41467_021_26606_z
crossref_primary_10_1155_2023_9099778
crossref_primary_10_1002_adom_202102163
crossref_primary_10_1088_1538_3873_ac9f6d
Cites_doi 10.1038/nature07113
10.1038/s41467-017-01926-1
10.1002/smll.201400037
10.1126/science.1123053
10.1073/pnas.1015440108
10.1073/pnas.1219068110
10.1038/nnano.2015.90
10.1073/pnas.1517953113
10.1038/s41586-020-2285-x
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Snippet An artificial eye has been reported that incorporates densely packed, nanometre-scale light sensors into a hemispherical retina-like component. Some of its...
The responsivity of the nanowires, which measures the current produced per watt of incident light, is almost the same for all frequencies of the visible...
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SubjectTerms 639/766/25
639/925
Arrays
Biomimetics
Calcium Compounds
Comparative analysis
Design and construction
Etching
Eye, Artificial
Eyes, Artificial
Fabrication
Humanities and Social Sciences
Incident light
Ion beams
Ionic liquids
Light
Light effects
Light transmission
Materials
multidisciplinary
Nanotechnology
Nanowires
News And Views
Oxides
Photodetectors
Photoreceptors
Pixels
Retina
Science
Sensors
Titanium
Visible spectrum
Title Artificial eye boosted by hemispherical retina
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