IP Library Granted Patent US 8,475,458
Granted Patent B2
US 8,475,458 · App. 12/490,301 · Granted Jul 2, 2013

Miniature shredding tool for use in medical applications and methods for making

Inventors: Michael S. Lockard (Lake Elizabeth, CA); Uri Frodis (Los Angeles, CA); Adam L. Cohen (Los Angeles, CA); Richard T. Chen (Woodland Hills, CA); Ming Ting Wu (Encino, CA); Gregory P. Schmitz (Los Gatos, CA); Eric C. Miller (Los Gatos, CA)
Assignee: Microfabrica Inc.
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Quick Facts
Patent No.
US 8,475,458
App. No.
12/490,301
Granted
Jul 2, 2013
Kind
B2
Abstract

The present invention relates generally to the field of micro-scale or millimeter scale devices and to the use of multi-layer multi-material electrochemical fabrication methods for producing such devices with particular embodiments relate to shredding devices and more particularly to shredding devices for use in medical applications. In some embodiments, tissue removal devices are used in procedures to removal spinal tissue and in other embodiments, similar devices are used to remove thrombus from blood vessel.

Claims (20)

1. A method of removing tissue from a spinal disc within a body of a patient, comprising:

(a) positioning a distal housing of a medical device to a target tissue site,

(b) penetrating the annulus of the disc to position a working end the device within the nucleus pulposus of the disc wherein the working end comprises a housing holding a first rotatable member comprising a plurality of separated disc shaped blades and an first axis of rotation and holding a second rotatable member comprising a plurality of disc shaped rotatable blades having a second axis of rotation, wherein the first and second axes of rotations are not collinear;

(c) rotating the first and second rotatable members in opposite directions while pressing against a portion of the nucleus pulposus to be removed; and

(d) drawing extract nucleus material into the housing between the oppositely rotating first and second rotatable members; and

(e) thereafter removing the working end from the annulus.

2. The method of claim 1 , wherein each of the plurality of separated blades of the first rotatable member is disc-shaped and lies in a plane parallel to and axially offset from a plane of another of the blades of the first rotatable member, each of the plurality of separated blades of the first rotatable member being directly adjacent to at least one of the rotatable blades of the second rotatable member and positioned to partially overlap the adjacent blade of the second rotatable member such that tissue may be sheared between the adjacent, overlapping blades.

3. A method of removing a thrombus from a vessel within a body of a patient, comprising:

(a) positioning a distal housing of a medical device to a target tissue site in proximity to the thrombus wherein the medical device comprises a lumen having an expanded distal end,

(b) a maceration device including a housing holding a first rotatable member comprising a plurality of separated blades and an first axis of rotation and holding a second rotatable member comprising a plurality of rotatable blades having a second axis of rotation, wherein the first and second axes of rotations are not collinear, wherein the blades of the first and the second rotatable members are adjacent to one another and partially overlap such that they are configured to shear soft tissue between them;

(c) bringing the thrombus and the maceration device into proximity and;

(d) rotating the first and second rotatable members in opposite directions while pressing against the thrombus to macerate at least a portion of the thrombus between the blades of the first and the second rotatable members to draw it proximally down the lumen relative to the maceration device, and

(e) removing the medical device from the vessel such that a passage in the vessel previously obstructed by the thrombus it cleared.

4. A medical device for removing tissue from a subject, comprising:

(a) a distal housing comprising a distal end, a proximal end, a plurality of sides, a first rotatable member and a second rotatable member, the first and the second rotatable members each comprising a plurality of disc shaped blades, wherein each of the plurality of blades of the first rotatable member lies in a plane parallel to and axially offset from a plane of another of the blades of the first rotatable member, each of the plurality of blades of the first and the second rotatable members being directly adjacent to at least one parallel surface and positioned to partially overlap the adjacent parallel surface such that tissue may be sheared between the adjacent, overlapping blades and parallel surfaces and such that the first and the second rotatable members are configured to rotate and direct tissue into an interior portion of the distal housing;

(b) an elongate member coupled to the distal housing for introducing the distal housing to a target tissue site,

wherein at least a portion of the rotatable members are located on the sides of the housing for engaging tissue or other material located on those sides.

5. A medical device for removing tissue from a subject, comprising:

(a) a distal housing comprising a plurality of rotatable members configured to rotate and direct tissue into an interior portion of the distal housing, wherein a most distal of the rotatable members includes blades that are configured to draw material into the housing while a more proximal of the rotatable members comprises blades that are configured to provide more efficient shredding of the tissue than the blades of the most distal rotatable member;

(b) an elongate member coupled to the distal housing for introducing the distal housing to a target tissue site.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2009
From: LOCKARD, MICHAEL S.; FRODIS, URI; COHEN, ADAM L.; CHEN, RICHARD T.; WU, MING TING; SCHMITZ, GREGORY P.; MILLER, ERIC C.
To: MICROFABRICA INC.
Reel/Frame 023280/0641 →
Continuity (4)
Provisional Application 61075006 · Jun 23, 2008
Provisional Application 61164864 · Mar 30, 2009
Provisional Application 61164883 · Mar 30, 2009
Related Publication 20100010492A1 · Jan 14, 2010