IP Library Granted Patent US 9,636,189
Granted Patent B2
US 9,636,189 · App. 13/911,708 · Granted May 2, 2017

Method for enhancing ultrasound visibility of hyperechoic materials

Inventors: Frederick A. Ahari (Belleair Beach, FL); John S. Fisher (Belleair, FL)
Assignee: DEVICOR MEDICAL PRODUCTS, INC.
A61B90/39A61F2/02A61K49/226A61L31/06A61L31/145A61B2090/3908A61B2090/3925A61B2090/3995
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Quick Facts
Patent No.
US 9,636,189
App. No.
13/911,708
Granted
May 2, 2017
Kind
B2
Abstract

A hydrogel plug is placed under stress during its curing stage, in one embodiment, by application of an externally applied force. The stress may also be induced during or after the dehydration process. The direction of the externally applied force increases the length, width, depth, or radial extent of the plug. The elastic limit of the plug is exceeded when the external force is applied so that the plug substantially retains its stressed size and shape when the externally applied force is removed. When the stretched or otherwise deformed dehydrated plug is hydrated, it substantially returns to the configuration it had prior to its dehydration and prior to the application of the externally applied force.

Claims (26)

1. A method for making a dehydrated hydrogel plug that expands in a controlled manner when hydrated, the method comprising:

forming said hydrogel plug so that it has a predetermined geometric configuration when in a repose configuration;

subjecting said hydrogel plug to a dehydration process;

inducing stress into said hydrogel plug after said dehydration process by applying an external force so that said hydrogel plug is stressed beyond its elastic limit;

controlling said stress so that said hydrogel plug, when under stress, assumes a preselected stretched geometrical configuration;

curing said dehydrated hydrogel plug, wherein curing said dehydrated hydrogel plug comprises curing said dehydrated hydrogel plug inside a core of a coil and between loops of the coil to achieve a selected coverage of a hyperechoic marker;

removing said externally applied force after the dehydration process so that the cured and dehydrated hydrogel plug retains said preselected geometrical configuration after said externally applied force has been removed; and

hydrating said cured and dehydrated hydrogel plug to make said cured and dehydrated hydrogel plug substantially return to the repose configuration after the hydration process is concluded.

2. The method of claim 1 , further comprising:

inducing said stress into said hydrogel plug after said dehydration process by subjecting said hydrogel plug to an externally applied force coincident with a longitudinal axis of said hydrogel plug;

wherein said cured and dehydrated hydrogel plug, when hydrated, contracts only in a longitudinal direction.

3. The method of claim 2 , further comprising:

inducing said stress into said hydrogel plug after said dehydration process by subjecting said dehydrated hydrogel plug to an externally applied force coincident with a transverse axis of said dehydrated hydrogel plug, said transverse axis being normal to said longitudinal axis;

wherein said cured and dehydrated hydrogel plug, when hydrated, contracts only in a transverse direction.

4. The method of claim 3 , further comprising:

inducing said stress into said dehydrated hydrogel plug after said dehydration process by subjecting said dehydrated hydrogel plug to an externally applied force coincident with an axis normal to said longitudinal axis and normal to said transverse axis of said dehydrated hydrogel plug;

wherein said cured and dehydrated hydrogel plug, when hydrated, contracts only in a direction normal to said longitudinal axis and normal to said transverse axis.

5. The method of claim 4 , further comprising:

inducing said stress into said dehydrated hydrogel plug after said dehydration process by subjecting said dehydrated hydrogel plug to an externally applied radial force, said radial force causing said dehydrated hydrogel plug to expand radially relative to a longitudinal axis and to contract relative to said longitudinal axis;

determining a radial expansion to longitudinal contraction ratio;

wherein said dehydrated hydrogel plug, when hydrated, contracts in a radial direction relative to said longitudinal axis and contracts along said longitudinal axis; and

measuring the amount of radial expansion and the amount of longitudinal contraction and dividing the radial expansion by the longitudinal contraction to derive a radial expansion to longitudinal contraction ratio.

6. The method of claim 5 , further comprising:

inducing said stress into said dehydrated hydrogel plug after said dehydration process by subjecting said dehydrated hydrogel plug to at least one externally applied deformation force.

7. The method of claim 6 , wherein said at least one externally applied deformation force includes punching.

8. The method of claim 6 , wherein said at least one externally applied deformation force includes folding.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2020
From: BIOPSY SCIENCES, LLC
To: MED-GENESIS, LLC
Reel/Frame 053998/0496 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2018
From: DEVICOR MEDICAL PRODUCTS, INC.
To: BIOPSY SCIENCES, LLC
Reel/Frame 045289/0549 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2014
From: MED-GENESIS, LLC
To: HYDROMARK, LLC
Reel/Frame 033062/0706 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2014
From: HYDROMARK, LLC
To: DEVICOR MEDICAL PRODUCTS, INC.
Reel/Frame 033062/0765 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 21, 2013
From: AHARI, FREDERICK; FISHER, JOHN S.
To: MED-GENESIS, LLC
Reel/Frame 030663/0607 →
Continuity (2)
Division 11277721 · Mar 28, 2006
Related Publication 20130274893A1 · Oct 17, 2013