IP Library › Granted Patent US 9,131,848
Granted Patent B2
US 9,131,848 · App. 13/956,698 · Granted Sep 15, 2015

Aberration corrected short working distance optical probe with large confocal parameter

Inventor: Matthew A. Sinclair (Somerville, MA)
Assignee: NINEPOINT MEDICAL, INC.
A61B5/0082A61B5/0066A61B5/0084G02B6/32G02B6/34A61B2562/16G02B6/262G02B6/3624
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Quick Facts
Patent No.
US 9,131,848
App. No.
13/956,698
Granted
Sep 15, 2015
Kind
B2
Abstract

An optical probe is provided. The optical probe includes a lens extending along an axis between a first end and a second end. A spacer extends along the axis between a first end and a second end. The first end of the spacer is connected to the second end of the lens. A prism is connected to the second end of the spacer such that the prism is spaced apart from the lens by the spacer.

Claims (43)

1. An optical probe, comprising:

a lens extending along an axis between a first end and a second end, the first and second ends of the lens each defining an end surface that is not perpendicular to the axis;

a spacer extending along the axis between a first end and a second end, the first end of the spacer being connected to the second end of the lens; and

a prism connected to the second end of the spacer such that the prism is spaced apart from the lens by the spacer.

2. An optical probe as recited in claim 1 , wherein the first end of the spacer is directly connected to the second end of the lens and the prism is directly connected to the second end of the spacer.

3. An optical probe as recited in claim 1 , wherein:

the spacer is connected to the lens using an epoxy having an index of refraction that matches an index of refraction of at least one of the spacer and the lens; and

the spacer is connected to the prism using an epoxy having an index of refraction that matches an index of refraction of at least one of the spacer and the prism.

4. An optical probe as recited in claim 1 , wherein the first end of the spacer is fused to the second end of the lens and the prism is fused to the second end of the spacer.

5. An optical probe as recited in claim 1 , wherein the probe is configured to emit a light path from the prism such that the light path extends at angle between about 1 and about 10 degrees relative to a second axis that extends perpendicular to the axis.

6. An optical probe as recited in claim 1 , wherein the probe is configured to emit a light path from the prism such that the light path extends at angle of 4 degrees relative to a second axis that extends perpendicular to the axis.

7. An optical probe as recited in claim 1 , wherein:

the probe is configured to emit a light path from the prism;

the end surfaces of the lens are not perpendicular to the light path; and

the first and second ends of the spacer define end surfaces that are not perpendicular to the light path or the axis.

8. An optical probe as recited in claim 1 , wherein the lens is a gradient index lens and the spacer comprises glass.

9. An optical probe as recited in claim 1 , wherein the spacer is fused to the lens and the prism and comprises fused silica.

10. An optical probe as recited in claim 1 , wherein a thickness of the lens defined by a distance between the first and second ends of the lens is greater than a thickness of the spacer defined by a distance between the first and second ends of the spacer.

11. An optical probe as recited in claim 1 , wherein a thickness of the lens defined by a distance between the first and second ends of the lens is 3.0 mm and a thickness of the spacer defined by a distance between the first and second ends of the spacer is 2.65 mm.

12. An optical probe as recited in claim 1 , wherein a thickness of the lens defined by a distance between the first and second ends of the lens is equal to a thickness of the spacer defined by a distance between the first and second ends of the spacer.

13. An optical probe, comprising:

a lens extending along an axis between a first end and a second end, the first and second ends of the lens each defining an end surface that is not perpendicular to the axis;

one or more optical fibers connected to the first end of the lens;

a spacer extending along the axis between a first end and a second end, the first end of the spacer being connected to the second end of the lens;

a prism connected to the second end of the spacer such that the prism is spaced apart from the lens by the spacer; and

a sheath including an inner surface defining a passageway having the lens, the spacer and the prism removably disposed therein.

14. An optical probe as recited in claim 13 , wherein the sheath comprises a flexible material and is transparent.

15. An optical probe as recited in claim 13 , wherein the sheath includes on or more openings extending through the inner surface and an outer surface of the sheath configured for passage of optical energy.

16. An optical probe as recited in claim 13 , wherein the sheath includes a blunt tip.

17. An optical probe as recited in claim 13 , wherein the spacer is connected to at least one of the lens and the prism using an epoxy having an index of refraction that matches an index of refraction of at least one of the spacer, the lens and the prism.

18. An optical probe as recited in claim 13 , wherein:

the probe is configured to emit a light path from the prism;

the end surfaces of the lens are not perpendicular to the light path; and

the first and second ends of the spacer define end surfaces that are not perpendicular to the light path or the axis.

19. An optical probe, comprising:

a gradient index lens extending along an axis between a first end and a second end;

one or more optical fibers connected directly to the first end of the lens;

a spacer comprising fused silica extending along the axis between a first end and a second end, the first end of the spacer being connected directly to the second end of the lens by an epoxy having an index of refraction that matches an index of refraction of at least one of the spacer and the lens;

a prism connected directly to the second end of the spacer such that the prism is spaced apart from the lens by the spacer, the prism being connected to the spacer by an epoxy having an index of refraction that matches an index of refraction of at least one of the spacer and the prism; and

a flexible sheath including an inner surface defining a passageway having the lens, the spacer and the prism removably disposed therein,

wherein a thickness of the lens defined by a distance between the first and second ends of the lens is greater than a thickness of the spacer defined by a distance between the first and second ends of the spacer, and

wherein the probe is configured to emit a light path from the prism, the first and second ends of the lens defining end surfaces that are not perpendicular to the light path, and the first and second ends of the spacer defining end surfaces that are not perpendicular to the light path.

20. An optical probe as recited in claim 1 , wherein the spacer comprises an index controlled liquid.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Mar 25, 2021
From: MERIT MEDICAL SYSTEMS, INC.
To: NINEPOINT MEDICAL, INC.
Reel/Frame 055722/0219 →
SECURITY INTEREST Recorded Nov 14, 2019
From: NINEPOINT MEDICAL, INC.
To: MERIT MEDICAL SYSTEMS, INC.
Reel/Frame 051007/0896 →
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION NUMBER PREVIOUSLY RECORDED AT REEL: 046100 FRAME: 0171. ASSIGNOR(S) HEREBY CONFIRMS THE RELEASE OF SECURITY INTEREST. Recorded Jun 19, 2018
From: HORIZON TECHNOLOGY FINANCE CORPORATION
To: NINEPOINT MEDICAL, INC.
Reel/Frame 046406/0430 →
RELEASE OF SECURITY INTEREST Recorded Jun 15, 2018
From: HORIZON TECHNOLOGY FINANCE CORPORATION
To: NINEPOINT MEDICAL, INC.
Reel/Frame 046100/0171 →
SECURITY INTEREST Recorded Jan 5, 2018
From: NINEPOINT MEDICAL, INC.
To: HORIZON TECHNOLOGY FINANCE CORPORATION
Reel/Frame 044542/0057 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2013
From: SINCLAIR, MATTHEW A.
To: NINEPOINT MEDICAL, INC.
Reel/Frame 030924/0168 →
Continuity (2)
Provisional Application 61678761 · Aug 2, 2012
Related Publication 20140037245A1 · Feb 6, 2014