IP Library Patent Application 15472990
Patent Application
App. No. 15/472,990

MECHANICALLY ASSISTED STENT DELIVERY SYSTEM

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Quick Facts
Patent No.
US None
App. No.
15/472,990
Abstract

A mechanical assisted delivery system and method are provided. One mechanical assisted delivery system includes an outer screw housing, a screw configured to rotate within the outer screw housing, an engagement mechanism configured for selective engagement with the screw, an outer shaft coupled to an end of the outer screw housing, a midshaft extending through the screw and a hub coupled to an end of the midshaft. Translational movement and rotational movement of the hub is configured to deploy a stent located within the outer shaft

Claims (31)

1 . A mechanical assisted delivery system comprising:

an outer screw housing;

a screw configured to rotate within the outer screw housing;

an engagement mechanism configured for engagement with the screw;

an outer shaft coupled to an end of the outer screw housing;

a midshaft extending through the screw; and

a hub coupled to an end of the midshaft,

wherein, translational movement and rotational movement of the hub is configured to deploy a stent located within the outer shaft.

2 . The mechanical assisted delivery system of claim 1 , wherein the engagement mechanism comprises a key and a slotted keyway, wherein the slotted keyway is coupled to the midshaft, wherein in a disengaged state, the slotted keyway slides along an inner diameter of the screw.

3 . The mechanical assisted delivery system of claim 1 , wherein the engagement mechanism comprises a pin coupled to the screw.

4 . The mechanical assisted delivery system of claim 3 , wherein the screw is wound around the midshaft.

5 . The mechanical assisted delivery system of claim 1 , wherein the midshaft comprises at least one of metal hypotubing or high compression strength plastic tubing.

6 . The mechanical assisted delivery system of claim 1 , wherein a pitch of the screw defined by the outer screw housing and the screw is between 1 revolution per inch to 8 revolutions per inch.

7 . The mechanical assisted delivery system of claim 1 , wherein the outer screw housing and the screw are configured to move rotationally relative to each other when turned.

8 . The mechanical assisted delivery system of claim 1 , wherein the outer screw housing and the screw are configured to engage, stay fixed relative to each other, and move together as a unit when pushed or pulled.

9 . The mechanical assisted delivery system of claim 1 , wherein the engagement mechanism comprises a key and a slotted keyway and the midshaft with slotted keyway and screw are configured to move slidably and translationally relative to each other.

10 . The mechanical assisted delivery system of claim 1 , wherein the engagement mechanism comprises a key and a slotted keyway and the midshaft with slotted keyway and inner screw are configured to engage, stay fixed relative to each other, and rotate together as a unit when turned.

11 . The mechanical assisted delivery system of claim 1 , wherein rotation of the outer screw housing relative to the screw deploys the stent.

12 . The mechanical assisted delivery system of claim 1 , wherein translation of the midshaft relative to the outer screw housing with outer shaft deploys the stent.

13 . The mechanical assisted delivery system of claim 1 , wherein the engagement mechanism comprises a pin coupled to screw and the outer screw housing and the screw are configured to move rotationally and translationally relative to each other.

14 . The mechanical assisted delivery system of claim 1 , wherein the engagement mechanism comprises a pin coupled to the screw and the midshaft and screw are configured to engage, stay fixed relative to each other, and rotate together as a unit when turned.

15 . The mechanical assisted delivery system of claim 1 , wherein the engagement mechanism is configured for selective engagement.

16 . The mechanical assisted delivery system of claim 1 , wherein the engagement mechanism is configured for permanent engagement.

17 . A mechanical assisted delivery system comprising:

an engagement mechanism having a screw and configured for engagement with a shaft, the shaft extending through the screw; and

a hub coupled to an end of the shaft and configured to rotate,

wherein rotational movement of the hub is configured to deploy a stent located at an end of the shaft.

18 . The mechanical assisted delivery system of claim 17 , wherein the hub is configured to translate.

19 . The mechanical assisted delivery system of claim 18 , wherein the hub is configured to rotate during initial deployment of the stent and configured to translate after the initial deployment.

20 . A method of deploying a stent, the method comprising:

deploying a stent using a screw type deployment mechanism actuated and caused to move rotationally or translationally by movement of a hub coupled to a shaft that extends within the screw type deployment mechanism.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2019
From: LAGOE, DAN; KAO, STEPHEN; CHINUBHAI, ABHA; RECINELLA, DANIEL; ELKINS, JEFF; NGUYEN, TRUDY
To: VENITI, INC.
Reel/Frame 049407/0679 →
NUNC PRO TUNC ASSIGNMENT Recorded Jun 3, 2019
From: VENITI, INC.
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 049346/0180 →