IP Library Granted Patent US 11,793,498
Granted Patent B2
US 11,793,498 · App. 15/982,777 · Granted Oct 24, 2023

Biopsy needle devices and methods of use

Inventors: Jeremy Snow (South Jordan, UT); Jacob Forman (West Jordan, UT)
Assignee: Merit Medical Systems, Inc.
A61B10/0275A61B2010/0208
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Quick Facts
Patent No.
US 11,793,498
App. No.
15/982,777
Granted
Oct 24, 2023
Kind
B2
Abstract

A biopsy needle device is disclosed. The biopsy needle device may be configured to be advanced to a predetermined tissue sample, sever the tissue sample, and extract the tissue sample from a body tissue of a patient. The biopsy needle device may be further configured to dislodge the tissue sample from the biopsy needle device utilizing a stylet.

Claims (50)

1. A biopsy needle device, comprising:

a cannula comprising a beveled distal end configured to sever a tissue sample;

a trocar disposed within the cannula comprising an open beveled distal end and a notch configured to retain a tissue sample, wherein the notch is disposed proximal to a distal end of the trocar, wherein the trocar is hollow, and wherein the notch extends a length along the trocar from a proximal end of the notch to a distal end of the notch, wherein the length of the notch is greater than a width of the notch, and wherein the notch further comprises an open channel having a semi-circular wall with a length of the open channel greater than a width of the open channel; and

a stylet disposed within the trocar comprising a distal end configured to dislodge the tissue sample from the notch, wherein the distal end of the stylet comprises a bevel, and

wherein the bevel comprises:

a curved distal end to form a spade shovel shaped profile; a planar upper surface; and

a curved bottom surface to conform to a lumen wall of the trocar.

2. The biopsy needle device of claim 1 , further comprising an actuator wherein the actuator comprises:

a cannula hub configured to be coupled to the cannula; a trocar hub configured to be coupled to the trocar; and a stylet hub configured to be coupled to the stylet.

3. The biopsy needle device of claim 2 , wherein the stylet hub is coupled to a selector configured to displace the stylet hub distally and/or proximally.

4. The biopsy needle device of claim 2 , wherein the cannula hub is configured to lock into at least one of multiple discreet positions within the actuator.

5. The biopsy needle device of claim 1 , wherein a channel is formed between the opened beveled distal end and the notch.

6. The biopsy needle device of claim 2 , wherein the actuator further comprises an energy storage member configured to displace the cannula hub from a proximal position to a distal position.

7. The biopsy needle device of claim 6 , wherein the energy storage member is a compression spring.

8. The biopsy needle device of claim 2 , wherein the actuator further comprises a housing.

9. The biopsy needle device of claim 8 , wherein the housing comprises locking teeth configured to engage locking teeth of the cannula hub to lock the cannula hub in a ready position.

10. The biopsy needle device of claim 9 , wherein the trocar hub comprises a hook member configured to engage the cannula hub to displace the cannula hub to the ready position and configured to release the cannula hub from the ready position.

11. The biopsy needle device of claim 8 , wherein the housing further comprises a window configured to permit visualization of the cannula hub.

12. The biopsy needle device of claim 1 , wherein the cannula is configured to slide distally and proximally over the trocar.

13. The biopsy needle device of claim 1 , wherein the cannula further comprises at least one indicium.

14. A method of collecting a tissue sample: comprising, obtaining a biopsy needle device comprising:

a cannula comprising a beveled distal end configured to sever the tissue sample;

a trocar disposed within the cannula comprising an open beveled distal end and a notch configured to retain the tissue sample, wherein the notch is disposed adjacent a distal end of the trocar, and wherein the trocar is hollow such that a channel is formed between the opened beveled distal end and the notch;

a stylet disposed within the trocar configured to dislodge the tissue sample; and

an actuator wherein the cannula, the trocar and the stylet are operably coupled to the actuator;

cocking the actuator such that a distal end of the cannula is locked in a position that at least partially covers the notch;

inserting the cannula, the trocar and the stylet into a tissue of a patient such that a distal end of the trocar is adjacent to a lesion;

inserting the trocar into the lesion such that at least a portion of the notch is within the lesion and the tissue sample collapses into the portion of the notch within the lesion; activating the actuator wherein the cannula slides distally over the trocar such that the portion of the tissue sample is severed and collected in the notch; removing the cannula, the trocar and the stylet from the patient; and

distally sliding the stylet within the notch such that the tissue sample is extracted from the notch, wherein a distal end of the stylet comprises a bevel, and

wherein the bevel comprises:

a curved distal end to form a spade shovel shaped profile; a planar upper surface; and

a curved bottom surface to conform to a lumen wall of the trocar.

15. The method of collecting a tissue sample of claim 14 , wherein a selected length of the notch is exposed to the lesion such that a selected length of the tissue sample collapses into the notch.

16. The method of collecting a tissue sample of claim 14 , wherein the distal end of the stylet is at a selected position within the notch such that at least a portion of the notch is filled with the stylet.

17. The method of collecting a tissue sample of claim 16 , wherein the selected position of the distal end of the stylet within the notch is determined by a selector coupled to a stylet hub.

18. The method of collecting a tissue sample of claim 17 , further comprising:

positioning the distal end of the stylet adjacent to the distal end of the trocar;

inserting the trocar and the stylet into the lesion; and

retracting the stylet a selected distance utilizing the selector such that the distal end of the stylet is positioned within the notch wherein a selected length of the tissue sample collapses into the portion of the notch not filled by the stylet.

19. A biopsy needle apparatus, comprising:

a cannula comprising a beveled distal end configured to sever a tissue sample;

a trocar comprising:

a hollow elongate tubular member;

an open beveled distal end configured to penetrate tissue; and

a notch configured to retain a tissue sample, the notch extending a length along the trocar from a proximal end of the notch to a distal end of the notch, wherein the length of the notch is greater than a width of the notch, and wherein the notch further comprises an open channel having a semi-circular wall with a length of the open channel greater than a width of the open channel, and wherein the notch is disposed proximal to a distal end of the trocar; and

a stylet comprising a distal end configured to dislodge a tissue sample from the channel, wherein the distal end of the stylet comprises a bevel, and

wherein the bevel comprises:

a curved distal end to form a spade shovel shaped profile; a planar upper surface; and

a curved bottom surface to conform to a lumen wall of the trocar.

20. The biopsy needle of claim 19 , wherein the channel is configured to be slidingly coupled to a stylet such that when the stylet is displaced distally within the channel the tissue sample is radial outwardly dislodged from the channel.

Assignments (2)
SECURITY INTEREST Recorded Oct 1, 2018
From: MERIT MEDICAL SYSTEMS, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 047015/0301 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2018
From: SNOW, JEREMY; FORMAN, JACOB
To: MERIT MEDICAL SYSTEMS, INC.
Reel/Frame 046321/0014 →
Continuity (2)
Provisional Application 62508797 · May 19, 2017
Related Publication 20180333147A1 · Nov 22, 2018