IP Library Granted Patent US 11,484,694
Granted Patent B2
US 11,484,694 · App. 15/523,193 · Granted Nov 1, 2022

Magnetic injection of therapeutic agents by addition of material extrusions with differing magnetization and magnetic permeability

Inventor: Benjamin Shapiro (Washington, DC)
Assignee: Otomagnetics, Inc.
A61M37/00B82Y5/00
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Quick Facts
Patent No.
US 11,484,694
App. No.
15/523,193
Granted
Nov 1, 2022
Kind
B2
Abstract

A device and method for directing an agent that is magnetic or magnetizable having a magnetic configuration in which a first magnet has a first magnetization that is opposite to a second magnetization of the second magnet. The first magnet and the second magnet define a minimal convex set and the push node is outside the convex set. The first magnetic field and the second magnetic create a combined field and a pushing force.

Claims (28)

1. A method for directing an agent into or through material, comprising:

positioning a magnetic configuration having a plurality of magnetic elements, wherein a first magnetic element having a first magnetic north-south pole in the plurality of magnetic elements produces a first magnetic field;

a second magnetic element having a second magnetic north-south pole in the plurality of magnetic elements produces a second magnetic field;

the first magnetic element has a first magnetization that is opposite to a second magnetization of the second magnetic element;

the first magnetic element and the second magnetic element are positioned in a linear orientation along a vertical axis such that the first magnetic north-south pole of the first magnetic element abuts to a same polarity of the second magnetic north-south pole of the second magnetic element and define a minimal convex set, and wherein a push node is outside the minimal convex set;

the first magnetic field and the second magnetic field create a combined magnetic field and a pushing force from the first magnetic element and the second magnetic element, and the second magnetic field has a further spatial extent than the first magnetic field, wherein the pushing force is in a vertical direction along the vertical axis of the linear orientation of the first magnetic element and the second magnetic element; and

moving the agent with the pushing force into or through the material.

2. The method as claimed in claim 1 , wherein the agent is magnetic, superparamagnetic, ferrimagnetic, ferromagnetic, or paramagnetic.

3. The method as claimed in claim 1 , further comprising depositing the agent onto the material or putting the agent into a cavity, a canal, and a compartment, wherein the material is tissue.

4. The method as claimed in claim 1 , wherein the first magnetic element and the second magnetic element are bonded together.

5. The method as claimed in claim 1 , wherein the second magnetic element comprises one magnet or multiple magnets aligned in the same north-south down direction to combine and create the second magnetic field.

6. The method of claim 1 , wherein the first magnetic element comprises one or more of a permanent magnet or an electromagnet.

7. The method of claim 1 , wherein the second magnetic element comprises an electromagnet, and wherein the second magnetization of the second magnetic element is manipulatable based on a desired push node force.

8. The method as claimed in claim 1 , wherein either the first magnetic field or the second magnetic field has a field strength of about 1 micro-Tesla to about 10 Tesla.

9. A device for directing an agent that is magnetic or magnetizable, comprising:

a magnetic configuration having a plurality of magnets, wherein a first magnetic element having a first magnetic north-south pole in the plurality of magnets produces a first magnetic field;

a second magnetic element having a second magnetic north-south pole in the plurality of magnets produces a second magnetic field;

the first magnetic element has a first magnetization that is opposite to a second magnetization of the second magnetic element;

the first magnetic element and the second magnetic element are positioned in a linear orientation along a vertical axis such that the first magnetic north-south pole of the first magnetic element abuts to a same polarity of the second magnetic north-south pole of the second magnetic element and define a minimal convex set, and wherein a push node is outside the minimal convex set;

the first magnetic field and the second magnetic field create a combined field and a pushing force from the first magnetic element and the second magnetic element, and the second magnetic field has a further spatial extent than the first magnetic field, wherein the pushing force is in a vertical direction along the vertical axis of the linear orientation of the first magnetic element and the second magnetic element.

10. The device as claimed in claim 9 , wherein the combined field repels a magnetic, superparamagnetic, ferrimagnetic, ferromagnetic, or paramagnetic agent.

11. The device as claimed in claim 9 , wherein the first magnetic element and the second magnetic element are bonded together.

12. The device as claimed in claim 9 , wherein the first magnetic field or the second magnetic field has a field strength of about 1 micro-Tesla to about 10 Tesla.

13. The device as claimed in claim 9 , wherein the first magnetic element or the second magnetic element is electromagnetic.

14. A device comprising a magnetic configuration having a magnetic element that produces a first magnetic field;

a magnetizable material that interacts with the first magnetic field to produce a second magnetic field;

the magnetic element and the magnetizable material are positioned in a linear orientation along a vertical axis such that a first magnetic north-south pole of the magnetic element abuts to a same polarity of a second magnetic north-south pole of the magnetizable material and define a minimal convex set, and wherein a push node is outside the minimal convex set; and

the first magnetic field and the second magnetic create a combined field and a pushing force, wherein the magnetic element and the magnetizable material are opposite by pole to one another, wherein the pushing force is in a vertical direction along the vertical axis of the linear orientation of the magnetic element and the magnetizable material.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2017
From: SHAPIRO, BENJAMIN
To: OTOMAGNETICS, LLC
Reel/Frame 042183/0304 →
Continuity (2)
Provisional Application 62072656 · Oct 30, 2014
Related Publication 20180280674A1 · Oct 4, 2018