Fast absolute-reflectance method for the determination of tear film lipid layer thickness
US-2015351627-A1 · Dec 10, 2015 · US
US10146065B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10146065-B2 |
| Application number | US-201815882872-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 29, 2018 |
| Priority date | May 21, 2013 |
| Publication date | Dec 4, 2018 |
| Grant date | Dec 4, 2018 |
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The present invention discloses methods and apparatus for methods and apparatus for manufacturing an Ophthalmic Lens with passive event coloration mechanisms, which may not require a power source. In some embodiments, the passive event coloration mechanisms may be combined with Rigid Inserts or Media Inserts, wherein the inserts may provide additional functionalities.
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The invention claimed is: 1. An ophthalmic lens comprising: an optic zone portion and a peripheral edge portion surrounding the optic zone portion; an event coloration mechanism in proximity to the optic zone portion wherein the event coloration mechanism is capable of triggering coloration in the optic zone of the ophthalmic lens as to be visible to a wearer, based on an occurrence of a predefined event occurring while the ophthalmic lens is in the eye of the wearer; and wherein the event coloration mechanism comprises: a first reservoir containing a first substance, wherein the first substance is capable of coloration by reacting with a predefined constituent or a predefined condition of a tear fluid of an eye, and wherein the predefined constituent or the predefined condition is indicative of the predefined event; and an encapsulating layer encapsulating the first reservoir. 2. The ophthalmic lens of claim 1 , wherein the event coloration mechanism further comprises a rigid insert. 3. The ophthalmic lens of claim 1 , wherein the predefined event comprises a predefined pH level. 4. The ophthalmic lens of claim 1 , wherein the event coloration mechanism comprises liquid crystal, wherein the liquid crystal is capable of altering color based on a temperature change in the ocular environment. 5. The ophthalmic lens of claim 1 , wherein the encapsulating layer is selectively permeable to the predefined constituent. 6. The ophthalmic lens of claim 1 , wherein the event coloration mechanism is not visible to the wearer of the ophthalmic lens in an absence of the predefined event occurring. 7. The ophthalmic lens of claim 1 , wherein at least a portion of the event coloration mechanism that is capable of triggering the visual indication is outside of the line of sight of the wearer of the ophthalmic lens in an absence of the predefined event occurring. 8. The ophthalmic lens of claim 1 , wherein at least a portion of the event coloration mechanism that is capable of triggering the visual indication is in the line of sight of the wearer of the ophthalmic lens. 9. The ophthalmic lens of claim 1 , wherein the encapsulating layer comprises a degradable material. 10. The ophthalmic lens of claim 9 , wherein the encapsulating layer is degraded by a constituent of tear fluid of the wearer. 11. The ophthalmic lens of claim 1 , wherein the first substance is a colored substance. 12. The ophthalmic lens of claim 1 further comprising a second reservoir. 13. The ophthalmic lens of claim 10 , wherein the second reservoir is configured to collect the first substance subsequent to a release of the first substance due to the degradation of the encapsulating layer. 14. The ophthalmic lens of claim 1 , wherein the even coloration mechanism is coated in a substance with low permeability. 15. The ophthalmic lens of claim 14 , wherein the substance with low permeability is parylene.
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