IP Library › Granted Patent US 10,751,162
Granted Patent B2
US 10,751,162 · App. 15/466,213 · Granted Aug 25, 2020

Injection zone markers for biomedical implants

Inventors: Krasimira Hristov (Hillsborough, NJ); Leo B. Kriksunov (Ithaca, NY); Robert J. Tannhauser (Bridgewater, NJ)
Assignee: MENTOR WORLDWIDE LLC
A61F2/12A61B8/481A61F2240/001A61F2250/0003A61F2250/0069A61F2250/0096A61F2250/0098
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Quick Facts
Patent No.
US 10,751,162
App. No.
15/466,213
Granted
Aug 25, 2020
Kind
B2
Abstract

A mammary implant and method of making are provided herein. The implant includes an outer shell configured to retain fluid therein, an injection element coupled to the outer shell and adapted to receive therethrough an injection device for injecting fluid into the outer shell, and an injection marker zone made of a material having ultrasonically detectable markers incorporated therein. The markers are a plurality of microcavities that are located relative to the injection element so that, when ultrasonically detected, such detection indicates a location of the injection element.

Claims (16)

1. A method of making an implant having an ultrasonically detectable injection marker zone, comprising:

forming an outer shell of said implant, said outer shell comprising a flexible material;

coupling to said flexible outer shell an injection element adapted to receive therethrough an injection device for injecting fluid into said outer shell;

preparing a liquid material having a plurality of microcavities suspended therein, wherein said plurality of microcavities are gas filled and has a size less than or equal to 200 microns; and

applying the liquid material having the plurality of microcavities suspended therein to the implant at a predetermined location to form an injection marker zone, wherein the injection marker zone identifies a relative location of said injection element when ultrasonically detected;

wherein the preparing step further comprises injecting a gas into the liquid material through an injector or sparger having a plurality of orifices having a size less than or equal to 200 microns.

2. The method according to claim 1 , wherein the preparing step further comprises using a high speed agitator to agitate the liquid material in the presence of gas.

3. The method according to claim 1 , wherein the outer shell and injection marker zone are comprised of silicone.

4. A method of making an implant having an ultrasonically detectable injection marker zone, comprising:

forming an outer shell of said implant, said outer shell comprising a flexible material;

coupling to said flexible outer shell an injection element adapted to receive therethrough an injection device for injecting fluid into said outer shell;

preparing a liquid material having a plurality of microcavities suspended therein, wherein said plurality of microcavities are gas filled and has a size less than or equal to 200 microns; and

applying the liquid material having the plurality of microcavities suspended therein to the implant at a predetermined location to form an injection marker zone, wherein the injection marker zone identifies a relative location of said injection element when ultrasonically detected;

wherein the preparing step further comprises using a high speed agitator to agitate the liquid material in the presence of gas.

5. The method according to claim 4 , wherein the preparing step further comprises injecting a gas into the liquid material through an injector or sparger having a plurality of orifices having a size less than or equal to 200 microns.

6. The method according to claim 4 , wherein the outer shell and injection marker zone are comprised of silicone.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2017
From: HRISTOV, KRASIMIRA; KRIKSUNOV, LEO B.; TANNHAUSER, ROBERT J.
To: ETHICON, INC.
Reel/Frame 041684/0781 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2017
From: ETHICON, INC.
To: MENTOR WORLDWIDE LLC
Reel/Frame 041684/0920 →
Continuity (2)
Division 14280864 · May 19, 2014
Related Publication 20170189165A1 · Jul 6, 2017
Cited By (1)
US 12,406,161