IP Library Granted Patent US 9,622,728
Granted Patent B2
US 9,622,728 · App. 14/707,204 · Granted Apr 18, 2017

Biopsy apparatus including a biopsy device having a sample receiving notch with a tissue anchor

Inventors: Jason G. Seiger (Gilbert, AZ); Rafal Chudzik (Peoria, AZ); Angela K. Jensen (Mesa, AZ)
Assignee: C. R. Bard, Inc.
A61B10/0275A61B10/0283A61B2010/0208
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Quick Facts
Patent No.
US 9,622,728
App. No.
14/707,204
Granted
Apr 18, 2017
Kind
B2
Abstract

A biopsy device includes a vacuum source, and an elongate member having a lumen and a sample receiving notch. The sample receiving notch has a proximal hole, a distal end wall, and a floor. The proximal hole is separated from the distal end wall along the longitudinal axis. The proximal hole is in fluid communication with the lumen. A tissue anchor has a cantilever portion with a free end. The cantilever portion is configured to extend in a direction from the distal end wall toward the proximal hole. The free end has a tip portion configured to extend toward the floor. The tissue anchor and the proximal hole are collectively configured to place tissue received in the sample receiving notch in a state of tension between the tip portion and the proximal hole when a vacuum is applied by the vacuum source to the proximal hole via the lumen.

Claims (30)

1. A biopsy device, comprising:

a vacuum source;

an elongate member having a proximal end, a distal end, a lumen in fluid communication with the vacuum source, a longitudinal axis extending between the proximal end and the distal end, and a sample receiving notch, the sample receiving notch having a proximal hole, a distal end wall, and a floor, the distal end wall being located between the distal end and the proximal hole, the proximal hole being separated from the distal end wall along the longitudinal axis, the proximal hole being in fluid communication with the lumen; and

a tissue anchor having a cantilever portion with a free end, the cantilever portion configured to extend in a direction from the distal end wall toward the proximal hole, the free end having a tip portion configured to extend toward the floor of the sample receiving notch, the tissue anchor and the proximal hole collectively configured to place tissue received in the sample receiving notch in a state of tension between the tip portion and the proximal hole when a vacuum is applied by the vacuum source to the proximal hole via the lumen.

2. The biopsy device of claim 1 , wherein the sample receiving notch has a proximal end wall longitudinally spaced from the distal end wall, the proximal hole being formed in the proximal end wall.

3. The biopsy device of claim 1 , wherein the tip portion of the cantilever portion has a sharp tip and a planar face, wherein a plane of the planar face is oriented substantially perpendicular to the longitudinal axis.

4. The biopsy device of claim 1 , wherein the elongate member is a cylindrical tube, the floor is a first portion of a side wall of said cylindrical tube, and the tissue anchor is formed from a second portion of the side wall of the cylindrical tube.

5. The biopsy device of claim 1 , wherein the tissue anchor includes a plurality of cantilever portions, each cantilever portion of the plurality of cantilever portions having a curved end, with a tip of the curved end configured to extend toward the floor of the sample receiving notch.

6. A biopsy probe mechanism configured for connection to a vacuum source, comprising:

a frame;

a cutting cannula; and

an elongate member arranged coaxially with the cutting cannula, the cutting cannula and the elongate member being coupled to the frame,

the elongate member having a proximal end, a distal end, a lumen configured for fluid communication with the vacuum source, a longitudinal axis extending between the proximal end and the distal end, and a sample receiving notch, the sample receiving notch having a proximal hole, a distal end wall, and a floor, the distal end wall being located between the distal end and the proximal hole, the proximal hole being separated from the distal end wall along the longitudinal axis, the proximal hole being in fluid communication with the lumen; and

a tissue anchor having a cantilever portion with a free end, the cantilever portion configured to extend in a direction from the distal end wall toward the proximal hole, the free end having a tip portion configured to extend toward the floor of the sample receiving notch, the tissue anchor and the proximal hole collectively configured to place tissue received in the sample receiving notch in a state of tension between the tip portion and the proximal hole when a vacuum is applied by the vacuum source to the proximal hole via the lumen.

7. The biopsy probe mechanism of claim 6 , wherein the sample receiving notch has a proximal end wall longitudinally spaced from the distal end wall, the proximal hole being formed in the proximal end wall.

8. The biopsy probe mechanism of claim 6 , wherein the tip portion of the cantilever portion has a sharp tip and a planar face, wherein a plane of the planar face is oriented substantially perpendicular to the longitudinal axis.

9. The biopsy probe mechanism of claim 6 , wherein the elongate member is a cylindrical tube, the floor is a first portion of a side wall of said cylindrical tube, and the tissue anchor is formed from a second portion of the side wall of the cylindrical tube.

10. The biopsy probe mechanism of claim 6 , wherein the tissue anchor includes a plurality of cantilever portions, each cantilever portion of the plurality of cantilever portions having a curved end, with a tip of the curved end configured to extend toward the floor of the sample receiving notch.

11. A biopsy apparatus, comprising:

a driver assembly having a housing configured to be grasped by a user;

a vacuum source;

a biopsy probe mechanism drivably coupled to said driver assembly, the biopsy probe mechanism including:

a cutting cannula; and

an elongate member arranged coaxially with the cutting cannula,

the elongate member having a proximal end, a distal end, a lumen in fluid communication with the vacuum source, a longitudinal axis extending between the proximal end and the distal end, and a sample receiving notch, the sample receiving notch having a proximal hole, a distal end wall, and a floor, the distal end wall being located between the distal end and the proximal hole, the proximal hole being separated from the distal end wall along the longitudinal axis, the proximal hole being in fluid communication with the lumen; and

a tissue anchor having a cantilever portion with a free end, the cantilever portion configured to extend in a direction from the distal end wall toward the proximal hole, the free end having a tip portion configured to extend toward the floor of the sample receiving notch, the tissue anchor and the proximal hole collectively configured to place tissue received in the sample receiving notch in a state of tension between the tip portion and the proximal hole when a vacuum is applied by the vacuum source to the proximal hole via the lumen.

12. The biopsy apparatus of claim 11 , wherein the sample receiving notch has a proximal end wall longitudinally spaced from the distal end wall, the proximal hole being formed in the proximal end wall.

13. The biopsy apparatus of claim 11 , wherein the tip portion of the cantilever portion has a sharp tip and a planar face, wherein a plane of the planar face is oriented substantially perpendicular to the longitudinal axis.

14. The biopsy apparatus of claim 11 , wherein the elongate member is a cylindrical tube, the floor is a first portion of a side wall of said cylindrical tube, and the tissue anchor is formed from a second portion of the side wall of the cylindrical tube.

15. The biopsy apparatus of claim 11 , wherein the tissue anchor includes a plurality of cantilever portions, each cantilever portion of the plurality of cantilever portions having a curved end, with a tip of the curved end configured to extend toward the floor of the sample receiving notch.

Continuity (2)
Continuation 12552475 · Sep 2, 2009
Related Publication 20150238175A1 · Aug 27, 2015