IP Library Granted Patent US 9,636,257
Granted Patent B2
US 9,636,257 · App. 14/490,117 · Granted May 2, 2017

Patient interface for ophthalmologic diagnostic and interventional procedures

Inventors: Phillip Gooding (Mountain View, CA); Christine Beltran (Sunnyvale, CA); Jonathan Talamo (Newton, MA)
Assignee: Optimedica Corporation
A61F9/009A61F9/00812A61F9/00827A61F2009/0052A61F2009/0087A61F2009/00844A61F2009/00853A61F2009/00865A61F2009/00872A61F2009/00887A61F2009/00889
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Quick Facts
Patent No.
US 9,636,257
App. No.
14/490,117
Granted
May 2, 2017
Kind
B2
Abstract

A patient interface assembly for interfacing an ophthalmic intervention system with an eye of a patient includes a housing, an optical lens coupled to the housing, an eye engagement assembly coupled to the housing, the eye engagement assembly including an inner seal and an outer seal, and a tissue migration bolster structure positioned between the inner seal and outer seal and configured to apply a resisting load against portions of the eye in a vacuum zone which are capable of distending upon application of the vacuum load. The eye engagement assembly is adapted to be placed into contact with the eye of the patient by sealably engaging the eye with the inner and outer seals, thereby defining the vacuum zone as being between the inner and outer seals when placed into contact with the eye.

Claims (21)

1. A patient interface assembly for interfacing an ophthalmic intervention system with an eye of a patient, comprising:

a housing;

an optical lens coupled to the housing;

an eye engagement assembly coupled to the housing, the eye engagement assembly comprising an inner seal and an outer seal, the eye engagement assembly adapted to be placed into contact with the eye of the patient by sealably engaging the eye with the inner and outer seals, thereby defining a vacuum zone between the inner and outer seals when placed into contact with the eye; and

a tissue migration bolster structure positioned between the inner seal and outer seal and configured to apply a resisting load against portions of the eye in the vacuum zone which are capable of distending upon application of a vacuum load,

wherein one or more surfaces of the tissue migration bolster structure occupies a majority of a surface area defined between the inner and outer seal.

2. The patient interface assembly of claim 1 , further comprising means for monitoring one or more interfacial loads representative of contact loads applied to the eye of the patient by the patient interface assembly.

3. The patient interface assembly of claim 1 , further comprising one or more load cells operatively coupled to the patient interface configured to output a signal based upon an interfacial load applied to the eye of the patient by the patient interface assembly.

4. The patient interface assembly of claim 1 , wherein the vacuum load in the vacuum zone is between 100 mm Hg and 500 mm Hg.

5. The patient interface assembly of claim 1 , wherein the eye surface engagement assembly is configured to be removably coupled to the eye such that the geometric axis of the eye is aligned with a focal axis of the optical lens of the patient interface assembly.

6. The patient interface assembly of claim 1 , wherein the inner seal and the outer seal are spherical when engaged to the eye of the patient.

7. The patient interface assembly of claim 1 , wherein the tissue migration bolster structure further comprises a spherical surface configured to be interfaced with the eye of the patient.

8. The patient interface assembly of claim 7 , wherein the spherical surface of the tissue migration bolster structure has a radius of curvature equivalent to that of the eye.

9. The patient interface assembly of claim 1 , wherein the tissue migration bolster structure further comprises one or more ports configured to allow gas to pass between the eye of the patient and a position opposite the tissue migration bolster structure from the eye.

10. The patient interface assembly of claim 9 , further comprising an equalizing volume fluidly connecting the one or more ports on the side of the tissue migration bolster structure opposite from the eye of the patient.

11. The patient interface assembly of claim 9 , wherein the ports have diameters between ½ mm and 2 mm.

12. The patient interface assembly of claim 9 , wherein the ports are distributed evenly about a circumference of the tissue migration bolster structure.

13. The patient interface assembly of claim 1 , wherein tissue migration bolster structure is fixedly coupled between an inner seal wall and the outer seal wall.

14. The patient interface assembly of claim 1 , wherein the tissue migration bolster structure is press fit in between an inner seal wall and an outer seal wall.

15. The patient interface assembly of claim 1 , wherein the tissue migration bolster structure is loosely fit in between an inner seal wall and an outer seal wall.

16. The patient interface assembly of claim 1 , further comprising an aperture through which at least one of an interventional and an imaging system may direct various forms of radiation en route to the eye of the patient.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 18, 2014
From: GOODING, PHILIP; BELTRAN, CHRISTINE; TALAMO, JONATHAN
To: OPTIMEDICA CORPORATION
Reel/Frame 033770/0104 →
Continuity (2)
Continuation 13279152 · Oct 21, 2011
Related Publication 20150005754A1 · Jan 1, 2015