IP Library Granted Patent US 12685536
Granted Patent B2
US 12685536 · App. 18/014,039 · Granted Jul 21, 2026

Guglielmi detachable coil pushing rod end structure, and detaching system and embolization system with same

Inventors: Shuhao Deng (Shanghai, CN); Bing Chen (Shanghai, CN); Yuanyi Guo (Shanghai, CN); Guangliang Pan (Shanghai, CN); Shuo Zhang (Shanghai, CN)
Assignee: MICROPORT NEUROTECH (AMERICA) INC.
A61B17/1214A61B17/12113A61B2017/00526A61B2017/00929A61B2017/12063
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12685536
App. No.
18/014,039
Granted
Jul 21, 2026
Kind
B2
Abstract

An end structure of a push rod for a guglielmi detachable coil, detachment systems thereof, and an embolization system are disclosed. The end structure includes at least one metal wire, at least one first conductive tube, at least one insulator and at least one second conductive tube. The at least one insulator is connected to both the first conductive tube and the second conductive tube and configured to electrically insulate the first conductive tube from the second conductive tube. One end of the at least one metal wire is electrically connected to the at least one second conductive tube. The first conductive tube and the second conductive tube are coaxially assembled into an integral structure, which can be inserted into an electrolytic device, resulting in the formation of an electrical circuit.

Claims (40)

1 . An end structure of a push rod for a guglielmi detachable coil, comprising at least one metal wire, at least one first conductive tube, at least one insulator, at least one second conductive tube, at least one stopper and at least one securing member,

the at least one insulator connected to both the first conductive tube and the second conductive tube and configured to electrically insulate the first conductive tube from the second conductive tube, the first conductive tube and the second conductive tube assembled coaxially into an integral tubular structure,

one end of the at least one metal wire electrically connected to the at least one second conductive tube, the metal wire having a proximal section disposed in a lumen of the second conductive tube and being hooked on the at least one stopper,

wherein the integral tubular structure is configured to be inserted as a whole into a detacher, enabling the first conductive tube and the second conductive tube to respectively establish electrical connections with a positive power supply terminal and a negative power supply terminal of the detacher,

wherein one end of the at least one metal wire is connected to the at least one stopper, the at least one stopper is implemented as any of a circular ring, a perforated circular tube, a perforated square tube and a perforated ball, the at least one stopper is disposed inside the second conductive tube by gluing, welding or latching,

wherein the at least one securing member is formed at one end of the second conductive tube, one end of the securing member extends into the lumen of the second conductive tube so as to wrap around one end of each of the stopper and the metal wire.

2 . The end structure of the push rod for the guglielmi detachable coil of claim 1 , wherein the at least one securing member is connected to one end of the at least one metal wire.

3 . The end structure of the push rod for the guglielmi detachable coil of claim 1 , wherein the metal wire has the proximal section, a distal section and an intermediate section, the intermediate section is arranged between the proximal section and the distal section.

4 . The end structure of the push rod for the guglielmi detachable coil of claim 3 , wherein the metal wire is made of a material selected from one or more of silver, copper, platinum and stainless steel, the metal wire has a diameter of 0.04 mm to 0.08 mm and the metal wire has a length of 1600 mm to 2400 mm.

5 . The end structure of the push rod for the guglielmi detachable coil of claim 3 , wherein the intermediate section of the metal wire is disposed in a lumen of the first conductive tube, and the distal section of the metal wire is disposed outside of the lumen of the first conductive tube.

6 . The end structure of the push rod for the guglielmi detachable coil of claim 5 , wherein at least part of the proximal section of the metal wire forms a first bare wire segment, which is not covered with an insulating coating and brought into contact with both the stopper and the securing member, the first bare wire segment having a length in the range of 10-50 mm, and/or wherein the intermediate section of the metal wire is covered with an insulating coating and has a length in the range of 1550-2200 mm, and/or wherein the distal section of the metal wire has a length in the range of 50-200 mm.

7 . The end structure of the push rod for the guglielmi detachable coil of claim 6 , wherein the distal section of the metal wire has a second bare wire segment that is not covered with an insulating coating, the second bare wire segment severing as a detachable feature for forming a detachment circuit with the first conductive tube in an electrolytic environment, the detachable feature having a length in the range of 0.01-0.08 mm.

8 . The end structure of the push rod for the guglielmi detachable coil of claim 1 , wherein each of the first conductive tube and the second conductive tube is fabricated from a metal tube, and/or wherein each of the first conductive tube and the second conductive tube has an outer diameter in the range of 0.30-0.45 mm and an inner diameter in the range of 0.15-0.35 mm, wherein the first conductive tube has a length in the range of 1400-2000 mm and the second conductive tube has a length in the range of 200-400 mm.

9 . The end structure of the push rod for the guglielmi detachable coil of claim 1 , wherein the first conductive tube and the second conductive tube are directly connected to each other, the insulator being disposed at a joint of the first conductive tube and the second conductive tube; or

wherein the first conductive tube and the second conductive tube are indirectly connected to each other by the insulator.

10 . The end structure of the push rod for the guglielmi detachable coil of claim 1 , wherein the first conductive tube and the second conductive tube are nested together and, accordingly, the first conductive tube or the second conductive tube has at least one nested end portion, the at least one nested end portion having a length in the range of 10-40 mm.

11 . The end structure of the push rod for the guglielmi detachable coil of claim 1 , wherein the insulator is implemented as a heat-shrinkable insulating tube, one end of the heat-shrinkable insulating tube being fitted over an outer circumference of an end portion of the first conductive tube and the other end of the heat-shrinkable insulating tube fitting within an inner circumference of an end portion of the second conductive tube, or one end of the heat-shrinkable insulating tube being fitted over an outer circumference of an end portion of the second conductive tube and the other end of the heat-shrinkable insulating tube fitting within an inner circumference of an end portion of the first conductive tube.

12 . The end structure of the push rod for the guglielmi detachable coil of claim 1 , wherein the insulator is implemented as a sleeve connecting the first conductive tube to the second conductive tube, the sleeve covering outer circumferences of joint portions of the first conductive tube and the second conductive tube, the joint portions of the first conductive tube and the second conductive tube abut against each other or together form a lap joint, the sleeve having a length in the range of 20-60 mm and a thickness in the range of 0.05-0.1 mm.

13 . The end structure of the push rod for the guglielmi detachable coil of claim 1 , wherein the at least one stopper is made of a material selected from one or more of gold, silver, copper, a platinum-gold alloy, a platinum-tungsten alloy and a platinum-iridium alloy.

14 . The end structure of the push rod for the guglielmi detachable coil of claim 1 ,

wherein the securing member is made of a conductive adhesive material, which cures so as to assume the shape of a hemisphere or ellipsoid, the hemisphere having a radius in the range of 0.3-0.45 mm, or the ellipsoid having an apex spaced from an end of the second conductive tube by a distance in the range of 0.15-0.65 mm.

15 . The end structure of the push rod for the guglielmi detachable coil of claim 1 , wherein the insulator is made of an insulating material, the insulating material spray coated on a joint of the first conductive tube and the second conductive tube, the insulating material selected from any one of a polyimide coating, an alumina ceramic coating, a ceramic polymer coating, a polybenzimidazole coating and a polytetrafluoroethylene coating.

16 . The end structure of the push rod for the guglielmi detachable coil of claim 1 , wherein the insulator is implemented as a plunger tube connecting the first conductive tube to the second conductive tube and having a length in the range of 20-60 mm and a thickness in the range of 0.1-0.15 mm, or the insulator is implemented as a plug or socket assembly connecting the first conductive tube to the second conductive tube, or threadedly couples the first conductive tube to the second conductive tube.

17 . A detachment system comprising: an end structure of a push rod for a guglielmi detachable coil of, comprising at least one metal wire, at least one first conductive tube, at least one insulator, and at least one second conductive tube, at least one stopper and at least one securing member,

the at least one insulator connected to both the first conductive tube and the second conductive tube and configured to electrically insulate the first conductive tube from the second conductive tube, the first conductive tube and the second conductive tube assembled coaxially into an integral tubular structure,

one end of the at least one metal wire electrically connected to the at least one second conductive tube, the metal wire having a proximal section disposed in a lumen of the second conductive tube and being hooked on the at least one stopper,

wherein the integral tubular structure is configured to be inserted as a whole into a detacher, enabling the first conductive tube and the second conductive tube to respectively establish electrical connections with a positive power supply terminal and a negative power supply terminal of the detacher,

wherein one end of the at least one metal wire is connected to the at least one stopper, the at least one stopper is implemented as any of a circular ring, a perforated circular tube, a perforated square tube and a perforated ball, the at least one stopper is disposed inside the second conductive tube by gluing, welding or latching,

wherein the at least one securing member is formed at one end of the second conductive tube, one end of the securing member extends into the lumen of the second conductive tube so as to wrap around one end of each of the stopper and the metal wire, and

further comprising the detacher, the detacher comprising the positive power supply terminal and the negative power supply terminal,

the negative power supply terminal forming a negative circuit portion together with the first conductive tube,

the positive power supply terminal forming a positive circuit portion together with the second conductive tube and the metal wire,

wherein the distal section of the metal wire comprises a detachable feature, which, when situated in an electrolytic environment together with the first conductive tube, an electrical connection is established between the negative circuit portion and the positive circuit portion so that the two portions form a detachment circuit.

18 . An embolization system comprising: an end structure of a push rod for a guglielmi detachable coil, comprising at least one metal wire, at least one first conductive tube, at least one insulator, and at least one second conductive tube, at least one stopper and at least one securing member,

the at least one insulator connected to both the first conductive tube and the second conductive tube and configured to electrically insulate the first conductive tube from the second conductive tube, the first conductive tube and the second conductive tube assembled coaxially into an integral tubular structure,

one end of the at least one metal wire electrically connected to the at least one second conductive tube, the metal wire having a proximal section disposed in a lumen of the second conductive tube and being hooked on the at least one stopper,

wherein the integral tubular structure is configured to be inserted as a whole into a detacher, enabling the first conductive tube and the second conductive tube to respectively establish electrical connections with a positive power supply terminal and a negative power supply terminal of the detacher,

wherein one end of the at least one metal wire is connected to the at least one stopper, the at least one stopper is implemented as any of a circular ring, a perforated circular tube, a perforated square tube and a perforated ball, the at least one stopper is disposed inside the second conductive tube by gluing, welding or latching,

wherein the at least one securing member is formed at one end of the second conductive tube, one end of the securing member extends into the lumen of the second conductive tube so as to wrap around one end of each of the stopper and the metal wire, and

further comprising a metal coil or a degradable coil.