IP Library › Granted Patent US 10,649,162
Granted Patent B2
US 10,649,162 · App. 16/210,048 · Granted May 12, 2020

Medical laser device and related methods

Inventors: Steven Yihlih Peng (Fremont, CA); Wen-Jui Ray Chia (Sunnyvale, CA); Thomas Charles Hasenberg (Campbell, CA)
Assignee: Boston Scientific Scimed, Inc.
G02B6/4296A61B18/201A61B18/22A61B18/26G02B6/0006G02B6/02G02B6/02066G02B6/02147G02B6/02342G02B6/4292G02B6/443A61B2018/00505A61B2018/2266A61N2005/067G02B2006/4297H01S3/161H01S3/1643
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Quick Facts
Patent No.
US 10,649,162
App. No.
16/210,048
Granted
May 12, 2020
Kind
B2
Abstract

A laser delivery device may include a connector portion at a proximal end of the laser delivery device and an optical fiber connecting the connector portion to a distal end of the laser delivery device. The connector portion may include a capillary at least partially surrounding a proximal portion of the optical fiber, and the capillary may include dimples on at least a portion of a circumferential surface thereof.

Claims (29)

1. A laser delivery device, comprising:

an optical fiber, including a proximal portion configured to be coupled to an energy source and a distal portion opposite the proximal portion; and

a capillary surrounding at least a portion of the optical fiber and including a proximal portion and a distal portion,

wherein the capillary includes a dimpled portion and a dimple free portion, wherein the dimple free portion is at the proximal portion of the capillary, and

wherein the capillary is fused to the optical fiber over at least a portion of an overlap of the dimple free portion of the capillary and the optical fiber.

2. The laser delivery device of claim 1 , wherein the capillary is formed of glass.

3. The laser delivery device of claim 1 , wherein the dimpled portion includes a plurality of circular dimples on at least a portion of an outer circumferential surface thereof.

4. The laser delivery device of claim 3 , wherein the dimples are not included on the outer circumferential surface of the distal portion of the capillary.

5. The laser delivery device of claim 3 , wherein a portion of the outer circumferential surface of the capillary includes projections.

6. The laser delivery device of claim 3 , wherein the dimples are formed by melting with a CO 2 laser in a pulsed mode, and wherein the dimple free portion of the capillary is fused to the proximal end of the optical fiber with the CO 2 laser.

7. The laser delivery device of claim 1 , wherein the proximal portion of the optical fiber is configured to be coupled to a laser source.

8. The laser delivery device of claim 7 , wherein the proximal portion of the optical fiber is configured to be coupled to a holmium laser.

9. A laser delivery device, including:

an optical fiber, including a proximal portion configured to be coupled to an energy source and a distal portion configured to emit energy; and

a capillary at least partially surrounding a portion of the optical fiber,

wherein the capillary includes dimples on at least a portion of a circumferential surface thereof, wherein the capillary includes a proximal portion and a distal portion, wherein the proximal portion of the capillary is configured to surround at least a portion of the proximal portion of the optical fiber, and wherein the capillary includes a dimple free portion at the proximal portion, and

wherein the capillary is fused to the optical fiber over at least a portion of an overlap of the dimple free portion of the capillary and the optical fiber.

10. The laser delivery device of claim 9 , wherein the dimples are included on an outer circumferential surface of the capillary.

11. The laser delivery device of claim 9 , wherein the proximal portion of the optical fiber is configured to be coupled to a laser source to delivery laser energy from the laser source to the distal end of the optical fiber.

12. An optical device, comprising:

an optical fiber extending from a proximal portion to a distal portion; and

a capillary at least partially surrounding the proximal portion of the optical fiber,

wherein the capillary includes a plurality of circular dimples on at least a portion of an outer circumferential surface thereof, and

wherein the capillary includes a dimple free portion at a proximal portion of the capillary, and

wherein the capillary is fused to the optical fiber over at least a portion of an overlap of the dimple free portion of the capillary and the optical fiber.

13. The optical device of claim 12 , wherein the dimples are circular indentations on at least a portion of an outer circumferential surface of the capillary and extend between 1 and 50 micrometers through a radial thickness of the capillary from the outer circumferential surface of the capillary.

14. The optical device of claim 12 , wherein the dimple free portion includes between 10 and 30 percent of the capillary.

15. The optical device of claim 12 , wherein the capillary is fused to the optical fiber over the dimple free portion of the capillary.

16. The optical device of claim 12 , wherein the proximal portion of the optical fiber is configured to be coupled to a laser source to delivery laser energy from the laser source to a distal end of the optical fiber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2018
From: PENG, STEVEN YIHLIH; CHIA, WEN-JUI RAY; HASENBERG, THOMAS CHARLES
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 047676/0331 →
Continuity (4)
Continuation 15729718 · Oct 11, 2017
Provisional Application 62445770 · Jan 13, 2017
Provisional Application 62406706 · Oct 11, 2016
Related Publication 20190113700A1 · Apr 18, 2019
Cited By (1)
US 12,724,200