Contact Lens for Measuring Intraocular Pressure
US-2015164321-A1 · Jun 18, 2015 · US
US11442291B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11442291-B2 |
| Application number | US-201816635755-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 3, 2018 |
| Priority date | Aug 3, 2017 |
| Publication date | Sep 13, 2022 |
| Grant date | Sep 13, 2022 |
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Official abstract text for this publication.
A contact lens according to an embodiment of the present disclosure includes a lens section attachable to an eyeball, and one or a plurality of structure portions provided in the lens section and intended to accumulate tears. This makes it possible to, for example, measure an absorption spectrum of the tears, by emitting light toward the tears accumulated in the one or plurality of structure portions.
Opening claim text (preview).
The invention claimed is: 1. A contact lens comprising: a lens section attachable to an eyeball; and one or a plurality of structure portions provided in the lens section and intended to accumulate tears, wherein the one or plurality of structure portions includes an inlet coupled with an inflow path and an outlet coupled with a discharge path, and the inlet is adjacent to an outer edge of the lens and the outlet is provided in an area between a pupil and an iris. 2. The contact lens according to claim 1 , wherein the one or plurality of structure portions is formed to avoid a middle of the lens section. 3. The contact lens according to claim 2 , wherein the one or plurality of structure portions includes a channel provided inside the lens section. 4. The contact lens according to claim 3 , wherein the channel includes an inflow path enabled to draw tears in by a capillary phenomenon. 5. The contact lens according to claim 4 , wherein the channel includes a discharge path having a width wider than a width of the inflow path. 6. The contact lens according to claim 4 , wherein an entrance of the inflow path is disposed at a position close to an edge of the lens section, in the channel. 7. The contact lens according to claim 3 , wherein the one or plurality of structure portions further includes a sealing section that includes a material dissolvable by tears and seals an inlet of the channel. 8. The contact lens according to claim 7 , wherein the one or plurality of structure portions further includes a suction chamber coupled to the channel. 9. The contact lens according to claim 8 , wherein the one or plurality of structure portions further includes a plurality of storage chambers that is coupled to the channel and stores tears. 10. The contact lens according to claim 9 , wherein the channel is subjected to a water-repellent treatment. 11. The contact lens according to claim 10 , wherein each of the storage chambers includes a material that develops color or displays fluorescence by enzymatic reaction or chemical reaction with tears. 12. The contact lens according to claim 1 , wherein the one or plurality of structure portions further includes a first optical element that guides external light to inside of the channel, a second optical element that guides the external light propagating through the inside of the channel to a pupil or an iris, and a reaction material provided in the inside of the channel, the reaction material developing color or displaying fluorescence by enzymatic reaction or chemical reaction with tears. 13. The contact lens according to claim 3 , wherein the one or plurality of structure portions further includes a diffraction element disposed to be opposed to the channel in a thickness direction of the lens section. 14. The contact lens according to claim 13 , wherein the one or plurality of structure portions further includes a reflection layer disposed to be opposed to the channel in the thickness direction of the lens section. 15. The contact lens according to claim 3 , wherein at least a portion of the channel has a prism shape, and the one or plurality of structure portions further includes a reflection layer and a diffraction element disposed to be opposed to each other with at least the portion having the prism shape of the channel interposed therebetween. 16. The contact lens according to claim 3 , wherein the one or plurality of structure portions further includes a reflection layer disposed to be opposed to the channel in a thickness direction of the lens section. 17. A detection method comprising: emitting light toward tears accumulated in one or a plurality of structure portions in a contact lens that includes a lens section attachable to an eyeball, and the one or plurality of structure portions provided in the lens section and intended to accumulate tears, wherein the one or plurality of structure portions includes an inlet coupled with an inflow path and an outlet coupled with a discharge path, and the inlet is adjacent to an outer edge of the lens and the outlet is provided in an area between a pupil and an iris; and detecting, through the tears accumulated in the one or plurality of structure portions, transmitted light transmitted by the contact lens, reflected light reflected by the contact lens, diffracted-transmitted light diffracted and transmitted by the contact lens, or diffracted-reflected light diffracted and reflected by the contact lens, of the light emitted toward the tears accumulated in the one or plurality of structure portions. 18. The detection method according to claim 17 , wherein the one or plurality of structure portions further includes a reflection layer disposed to be opposed to the channel in a thickness direction of the lens section, and the measurement method further includes detecting the reflected light transmitted by the tears accumulated in the one or plurality of structure portions, and reflected by the reflection layer, of the light emitted toward the tears accumulated in the one or plurality of structure portions. 19. The detection method according to claim 17 , wherein the one or plurality of structure portions further includes a diffraction element disposed to be opposed to the channel in a thickness direction of the lens section, and the measurement method further includes detecting the diffracted-transmitted light diffracted by the diffraction element, and transmitted by the tears accumulated in the one or plurality of structure portions, of the light emitted toward the tears accumulated in the one or plurality of structure portions. 20. The detection method according to claim 17 , wherein the one or plurality of structure portions further includes a diffraction element disposed to be opposed to the channel in a thickness direction of the lens section, and a reflection layer disposed to be opposed to the diffraction element with the channel interposed therebetween, of the channel, at least a portion opposed to the diffraction element has a prism shape, and the measurement method further includes detecting the diffracted-reflected light diffracted by the diffraction element, refracted by the portion having the prism shape of the channel, transmitted by the tears accumulated in the one or plurality of structure portions, and reflected by the reflection layer, of the light emitted toward the tears accumulated in the one or plurality of structure portions.
Contact lenses having special fitting or structural features achieved by special materials or material structures · CPC title
with contact lenses · CPC title
in the liquid or fluent state {(burettes, pipettes B01L3/02; sampling of ground water E02D1/06; metering by volume of fluids or fluent solid material G01F11/00, G01F13/00)} · CPC title
producing a change of colour · CPC title
Contact lenses for the eyes (disinfection or sterilisation of contact lenses A61L12/00) · CPC title
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