IP Library Granted Patent US 10,959,751
Granted Patent B2
US 10,959,751 · App. 16/182,606 · Granted Mar 30, 2021

Piezoelectric thrombus removal

Inventor: Warren Z McCarthy (Salt Lake City, UT)
A61B17/320758A61B17/00234A61B34/73A61B2017/00345A61B2017/00402A61B2017/00411A61B2017/00876
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Quick Facts
Patent No.
US 10,959,751
App. No.
16/182,606
Granted
Mar 30, 2021
Kind
B2
Abstract

A miniature motorized cutter is provided to remove an occlusion or thrombus in the vein or artery of a patient. The miniature motorized cutter has a cutting device operated by a piezoelectric motor. The piezoelectric motor is wirelessly powered by electrical induction from outside of the body. The miniature motorized cutter has a positional orienting structure that has two poles of opposite charges. A strong magnet outside of the body can be used to orient the cutter by applying attractive and repulsive forces to the two poles of the positional orienting structure.

Claims (34)

1. A method for ablating an occlusion in a vein or artery of a patient comprising the steps of:

locating the occlusion,

placing a tourniquet on said patient on one side of said occlusion,

gaining access to a venous passage leading to said occlusion,

placing a miniature motorized cutter within said venous passage,

said miniature motorized cutting including

an elongate conductive shaft having a positive pole at one end and a negative pole at its other end,

a piezoelectric drive unit mounted to said shaft in a configuration such that when piezoelectric material of said piezoelectric drive unit receives electrical power, it expands in size along said elongate conductive shaft,

a cutting wheel mounted to one end of said elongate conductive shaft,

an arm mounted to said piezoelectric drive unit and to said cutter so that when said piezoelectric drive unit expands in size along said elongate conductive shaft, said arm causes said cutting wheel to rotate so that it may cut an occlusion,

using a magnet located outside of the patient's body to cause said miniature motorized cutter to move to a location adjacent said occlusion,

using a magnet located outside of the patient's body to orient said miniature motorized cutter so that said cutting wheel is located adjacent said occlusion where said cutting wheel may be rotated in order to cut said occlusion,

placing an induction coil outside of said patient's body in a location where it can inductively power said miniature motorized cutter by inducing a current along said elongate conductive shaft in order to power said piezoelectric drive unit so that said piezoelectric drive unit expands along said conductive elongate shaft in order to articulate said arm and turn said cutting wheel,

inductively powering said miniature motorized cutter in order to satisfactorily ablate said occlusion,

removing ablated occlusion material from said venous passage,

removing said miniature motorized cutter from said venous passage, and

allowing said patient to recover.

2. A method for ablating an occlusion in a vein or artery of a patient comprising the steps of:

locating the occlusion,

placing a tourniquet on said patient on one side of said occlusion,

gaining access to a venous passage leading to said occlusion,

placing a miniature motorized cutter within said venous passage,

said miniature motorized cutting including

an elongate conductive shaft having a positive pole at one end and a negative pole at its other end,

a piezoelectric drive unit mounted to said shaft in a configuration such that when piezoelectric material of said piezoelectric drive unit receives electrical power, it expands in size along said elongate conductive shaft,

a cutting wheel mounted to one end of said elongate conductive shaft,

an arm mounted to said piezoelectric drive unit and to said cutter so that when said piezoelectric drive unit expands in size along said elongate conductive shaft, said arm causes said cutting wheel to rotate so that it may cut an occlusion,

positive and negative wire leads on said piezoelectric drive unit for receiving electrical power from a wired power source located outside of the patient's body,

using a magnet located outside of the patient's body to cause said miniature motorized cutter to move to a location adjacent said occlusion,

using a magnet located outside of the patient's body to orient said miniature motorized cutter so that said cutting wheel is located adjacent said occlusion where said cutting wheel may be rotated in order to cut said occlusion,

electrically powering said miniature motorized cutter in order to satisfactorily ablate said occlusion,

removing ablated occlusion material from said venous passage,

removing said miniature motorized cutter from said venous passage, and

allowing said patient to recover.

Continuity (1)
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