IP Library › Granted Patent US 8,932,317
Granted Patent B2
US 8,932,317 · App. 11/418,551 · Granted Jan 13, 2015

Intracorporeal occlusive device and method

Inventors: Michael P. Marks (Hillsborough, CA); Michael Ross (Hillsborough, CA)
Assignee: MicroVention, Inc.
A61B17/12022A61B17/12109A61B17/12113A61B17/12136A61B17/12145A61B17/12163A61B17/12195A61B2017/00477A61B2017/00867A61B2017/12063A61B2017/22068A61B2017/22069A61M2025/1052A61B2017/12068A61B2017/12072A61B2017/12077
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Quick Facts
Patent No.
US 8,932,317
App. No.
11/418,551
Granted
Jan 13, 2015
Kind
B2
Abstract

An intracorporeal space filling device and a delivery system and method for using the device is disclosed. The space filling device is preferably configured for percutaneous delivery from a peripheral conduit of a patient. The space filling device has an elongated tubular or interconnected bead structure which may have a transmutable material disposed within it. The transmutable material can be altered from a non-rigid state to a rigid state by the application of various types of energy or by other suitable means. The space filling device can be positioned by a delivery system and detached from the delivery system after desired positioning is achieved.

Claims (22)

1. A detachment system for detaching an intracorporeal space-filling device from a delivery system, comprising:

(a) a delivery system;

(b) an intracorporeal space filling device; and

(c) a detachment mechanism that releases said intracorporeal device solely in response to a signal, the detachment mechanism comprising:

(i) a degradable polymer link securing the intracorporeal space-filling device to the delivery system;

(ii) a source of direct current; and

(iii) a heating element disposed proximal said intracorporeal device and in thermal contact with the degradable polymer link such that upon activation of said signal comprising direct current from said source, the heating element heats the degradable polymer link so as to degrade the degradable polymer link and release the intracorporeal space-filling device.

2. The system of claim 1 , wherein the degradable polymer link is degradable by a chain cleavage reaction.

3. The system of claim 1 , wherein the intracorporeal space filling device comprises a helical coil.

4. The system of claim 1 , wherein the degradable polymer link is degradable by a chain cleavage reaction.

5. A method of occluding an intracorporeal void comprising:

directing a distal end of an intracorporeal space-filling device to an intracorporeal void;

advancing the intracorporeal space-filling device into the intracorporeal void by distally displacing a delivery system coupled to a proximal end of the intracorporeal space-filling device; and

decoupling the intracorporeal space-filling device from the delivery system solely by providing a direct current to the delivery system, thereby heating a degradable polymer member associating the proximal end of the intracorporeal space-filling device to the delivery system until the member breaks and releases the intracorporeal space-filling device.

6. The method of claim 5 wherein the step of decoupling the intracorporeal space-filling device from the delivery system solely by providing a direct current to the delivery system, thereby heating a degradable polymer member associating the proximal end of the intracorporeal space-filling device to the delivery system comprises degrading the member through a chain cleavage reaction.

7. The method of claim 5 wherein the step of decoupling the intracorporeal space-filling device from the delivery system solely by providing a direct current to the delivery system, thereby heating a degradable polymer member associating the proximal end of the intracorporeal space-filling device to the delivery system comprises providing the direct current to a resistive element in thermal contact with the member.

8. The method of claim 5 wherein the step of advancing the intracorporeal space-filling device into the intracorporeal void comprises advancing a helical coil.

9. A system for deploying an intracorporeal space-filling device comprising:

an elongated shaft;

a heat-actuated detachable polymer link associating a distal end of the elongated shaft to a proximal end of an intracorporeal space-filling device; and

a heating element activated by a direct current and disposed in thermal contact with the detachable polymer link such that solely upon activation of said heating element said link degrades and releases said intracorporeal space-filling device.

10. The deployment system of claim 9 wherein the detachable polymer link is degradable by a chain cleavage reaction.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2017
From: MICROTRANSFORM, INC.
To: MARKS, MICHAEL P.
Reel/Frame 042393/0134 →
MERGER Recorded Nov 20, 2007
From: SETHEL INVERVENTIONAL, INC.
To: MICROTRANSFORM, INC.
Reel/Frame 020145/0203 →
Continuity (5)
Continuation 11169322 · Jun 28, 2005
Continuation 11033463 · Jan 11, 2005
Continuation 10106511 · Mar 25, 2002
Division 09324987 · Jun 2, 1999
Related Publication 20060271099A1 · Nov 30, 2006