IP Library › Granted Patent US 12,539,392
Granted Patent B2
US 12,539,392 · App. 17/818,821 · Granted Feb 3, 2026

Introducer assembly with selectable side holes

Inventor: Adam Fitzgerald (St. Louis Park, MN)
Assignee: Medtronic Vascular, Inc.
A61M25/007A61M39/0247A61M2025/0079A61M2025/0681A61M2039/0258A61M2039/0291
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Quick Facts
Patent No.
US 12,539,392
App. No.
17/818,821
Granted
Feb 3, 2026
Kind
B2
Abstract

An introducer assembly includes a plurality of selectable side holes through which a fluid can be delivered. In some examples, an introducer assembly includes an outer elongated body defining a plurality of outer body side holes and an inner elongated body defining a plurality of inner body side holes. The inner elongated body is configured to rotate relative to the outer elongated body between a first rotational orientation in which a first subset of outer body side holes aligns with a first subset of inner body side holes and the inner elongated body blocks fluid flow out of the outer elongated body through a second subset of outer body side holes, and a second rotational orientation in which the second subset of outer body side holes aligns with a second subset of inner body side holes and inner elongated body blocks fluid the first subset of outer body side holes.

Claims (52)

1 . A medical assembly comprising:

an outer elongated body defining an outer body lumen and a plurality of outer body side holes distributed longitudinally along the outer elongated body and open to the outer body lumen; and

an inner elongated body defining an inner body lumen and a plurality of inner body side holes distributed longitudinally along the inner elongated body and open to the inner body lumen, the inner elongated body being configured to be inserted in the outer body lumen,

wherein when the inner elongated body is positioned in the outer body lumen, the inner elongated body is configured to rotate relative to the outer elongated body between:

a first rotational orientation in which a first subset of outer body side holes aligns with a first subset of inner body side holes and in which the inner elongated body blocks a second subset of outer body side holes, and

a second rotational orientation in which the second subset of outer body side holes aligns with a second subset of inner body side holes and in which the inner elongated body blocks the first subset of outer body side holes, and

wherein the outer elongated body is an introducer sheath and the inner elongated body is a dilator.

2 . The medical assembly of claim 1 , wherein the plurality of outer body side holes are longitudinally spaced at an axial interval along the outer elongated body and wherein the plurality of inner body side holes are longitudinally spaced at the axial interval along the inner elongated body.

3 . The medical assembly of claim 2 , wherein the axial interval is 15 centimeters to about 60 centimeters.

4 . The medical assembly of claim 1 , wherein the plurality of outer body side holes are evenly spaced along a longitudinal axis of the outer elongated body.

5 . The medical assembly of claim 1 , wherein the plurality of outer body side holes are unevenly spaced along a longitudinal axis of the outer elongated body.

6 . The medical assembly of claim 1 , wherein the plurality of outer body side holes are circumferentially spaced around the outer elongated body and the plurality of inner body side holes are longitudinally aligned along the inner elongated body.

7 . The medical assembly of claim 6 , wherein the outer elongated body comprises:

a first marking configured to indicate a first circumferential position of the first subset of outer body side holes along a circumference of the outer elongated body; and

a second marking configured to indicate a second circumferential position of the second subset of outer body side holes along the circumference of the outer elongated body, and

wherein the inner elongated body comprises a third marking configured to indicate a third circumferential position of the plurality of inner body side holes along a circumference of the inner elongated body.

8 . The medical assembly of claim 1 , wherein the plurality of outer body side holes are longitudinally aligned along the outer elongated body and the plurality of inner body side holes are circumferentially spaced around the inner elongated body.

9 . The medical assembly of claim 8 , wherein the inner elongated body comprises:

a first marking configured to indicate a first circumferential position of the first subset of inner body side holes along a circumference of the inner elongated body; and

a second marking configured to indicate a second circumferential position of the second subset of inner body side holes along the circumference of the inner elongated body, and

wherein the outer elongated body comprises a third marking configured to indicate a third circumferential position of the plurality of outer body side holes along a circumference of the outer elongated body.

10 . The medical assembly of claim 1 , wherein a diameter of the plurality of outer body side holes is less than or equal to 10 millimeters.

11 . The medical assembly of claim 1 , wherein the inner elongated body defines a closed distal end.

12 . An introducer assembly comprising:

an introducer sheath defining an introducer sheath lumen and a plurality of introducer sheath side holes distributed longitudinally along the introducer sheath and open to the introducer sheath lumen; and

an inner member defining an inner member lumen and a plurality of inner member side holes distributed longitudinally along the inner member and open to the inner member lumen,

wherein when the inner member is inserted in the introducer sheath lumen, different subsets of introducer sheath side holes are configured to align with one more of the inner member side holes depending on a rotational orientation of the introducer sheath and the inner member to enable selective fluid delivery through a subset of introducer sheath side holes from the inner member lumen, and

wherein the inner member is a dilator.

13 . The introducer assembly of claim 12 , wherein the introducer sheath is more flexible than the inner member.

14 . The introducer assembly of claim 12 , wherein the plurality of introducer sheath side holes are circumferentially spaced around the introducer sheath and the plurality of inner member side holes are longitudinally aligned along the inner member.

15 . The introducer assembly of claim 12 , wherein the plurality of introducer sheath side holes are longitudinally aligned along the introducer sheath and the plurality of inner member side holes are circumferentially spaced around the inner member.

16 . A method comprising:

introducing a medical assembly into vasculature of a patient, the medical assembly comprising:

an outer elongated body defining an outer body lumen and a plurality of outer body side holes distributed longitudinally along the outer elongated body and open to the outer body lumen; and

an inner elongated body defining an inner body lumen and a plurality of inner body side holes distributed longitudinally along the inner elongated body and open to the inner body lumen, the inner elongated body being configured to be inserted in the outer body lumen,

wherein when the inner elongated body is positioned in the outer body lumen, the inner elongated body is configured to rotate relative to the outer elongated body between:

a first rotational orientation in which a first subset of outer body side holes aligns with a first subset of inner side and in which the inner elongated body blocks a second subset of outer body side holes, and

a second rotational orientation in which the second subset of outer body side holes aligns with a second subset of inner body side holes and in which the inner elongated body blocks the first subset of outer body side holes, and

wherein the outer elongated body is an introducer sheath and the inner elongated body is a dilator; and

rotating at least one of the inner elongated body or the outer elongated body to position the inner elongated body in the first rotational orientation.

17 . The method of claim 16 , further comprising:

after the inner elongated body in the first rotational orientation, introducing a fluid through the inner body lumen, wherein the fluid exits the outer elongated body and the inner elongated body where the first subset of outer body side holes aligns with a first subset of inner body side holes.

18 . The method of claim 16 , further comprising:

rotating at least one of the inner elongated body or the outer elongated body to position the inner elongated body in the second rotational orientation; and

after the inner elongated body in the second rotational orientation, introducing a fluid through the inner body lumen, wherein the fluid exits the outer elongated body and the inner elongated body where the second subset of outer body side holes aligns with the second subset of inner body side holes.

19 . A medical assembly comprising:

an outer elongated body defining an outer body lumen and a plurality of outer body side holes distributed longitudinally along the outer elongated body and open to the outer body lumen; and

an inner elongated body defining an inner body lumen and a plurality of inner body side holes distributed longitudinally along the inner elongated body and open to the inner body lumen, the inner elongated body being configured to be inserted in the outer body lumen,

wherein when the inner elongated body is positioned in the outer body lumen, the inner elongated body is configured to rotate relative to the outer elongated body between:

a first rotational orientation in which a first subset of outer body side holes aligns with a first subset of inner body side holes and in which the inner elongated body blocks a second subset of outer body side holes, and

a second rotational orientation in which the second subset of outer body side holes aligns with a second subset of inner body side holes and in which the inner elongated body blocks the first subset of outer body side holes, and

wherein the inner elongated body defines a closed distal end.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2022
From: FITZGERALD, ADAM
To: MEDTRONIC VASCULAR, INC.
Reel/Frame 060769/0568 →
Continuity (2)
Provisional Application 63247919 · Sep 24, 2021
Related Publication 20230096007A1 · Mar 30, 2023
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