Scoop Cannula for a Coring Biopsy Device
20170231606 · 2017-08-17
Inventors
- Kimberly White (Plainfield, IN, US)
- Douglas Perianu Knoll (Indianapolis, IN, US)
- Deborah Rae Beck (Zionsville, IN, US)
Cpc classification
A61B10/0275
HUMAN NECESSITIES
International classification
Abstract
A full-core biopsy device comprises an outer cannula hub with an outer cannula coupled at a proximal end to the hub, the outer cannula with a tissue slicing feature defined at the distal tip configured for cutting tissue. The device further comprises an inner member hub and an inner member coaxially disposed within the outer cannula and coupled at a proximal end to the inner member hub. The inner member includes a tubular body, an inner member tip at an opposite distal end thereof and an elongated scoop portion defined between the tubular body and tip. The distal ends of the outer cannula and the scoop portion of the inner member define cooperating forcing cone features.
Claims
1. A biopsy device comprising: an outer cannula hub; an outer cannula coupled at a proximal end to the outer cannula hub, the outer cannula including: an outer cannula tip at an opposite distal end; a tissue slicing feature defined at said tip configured for cutting tissue; and an inner surface including a countersink formed at said tip and extending 1.0-5.0 mm (0.04-0.21 in.) proximally from said tip; an inner member hub; and an inner member coupled at a proximal end to said inner member hub, said inner member including; a main cylindrical body configured to be disposed coaxially within the outer cannula; and a scoop portion extending from said main body and defined by a partially cylindrical wall configured to be disposed coaxially within the outer cannula.
2. The biopsy device according to claim 1, wherein said partially cylindrical wall subtends a circumferential angle of about 180 degrees.
3. The biopsy device according to claim 2, wherein said countersink in said inner surface of said outer cannula subtends a circumferential angle that is complementary to the circumferential angle of said partially cylindrical wall.
4. The biopsy device according to claim 1, wherein said scoop portion includes a distal end having a sharpened edge configured for slicing tissue.
5. The biopsy device according to claim 4, wherein said distal end of said scoop portion has a nib configuration defining said sharpened edge.
6. The biopsy device according to claim 1, wherein said scoop portion includes an inner surface and said inner surface includes a countersink at said distal end that is substantially coextensive with the countersink in said outer cannula.
7. The biopsy device according to claim 6, wherein the countersink of said outer cannula and the countersink of said inner member are defined at an angle of one to five degrees (1-5°).
8. The biopsy device according to claim 6, wherein said countersink in said inner surface of said outer cannula subtends a circumferential angle that is complementary to the circumferential angle of said partially cylindrical wall.
9. The biopsy device according to claim 1, further comprising a mechanism coupled to said outer cannula hub and said inner member hub for charging and firing said outer cannula relative to said inner member to capture a tissue sample within said outer cannula tip, said mechanism configured to fire said outer cannula at a stroke length relative to the inner member.
10. The biopsy device according to claim 9, wherein said scoop portion has a length from said main body that is approximately equal to said stroke length.
11. The biopsy device according to claim 1, wherein said main cylindrical body of said inner member is solid.
12. The biopsy device of claim 1, wherein said tissue slicing feature of said outer cannula is a Franseen tip.
13. The biopsy device of claim 1, wherein the inner member includes a distal end opposite said cylindrical body, said distal end including a trocar tip.
14. The biopsy device of claim 13, wherein said distal end of said inner member includes a cylindrical body from which said trocar tip extends, said body including an upper portion defining a tapered surface that corresponds to and nests within said countersink in said outer cannula.
15. The biopsy device of claim 14, wherein said body further defines an annular proximally-facing ledge that is coextensive with the partially cylindrical wall of said scoop portion and that is arranged to contact the distal end of said outer cannula.
Description
DESCRIPTION OF THE FIGURES
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DETAILED DESCRIPTION
[0033] For the purposes of promoting an understanding of the principles of the invention, reference will now be made to the embodiments illustrated in the drawings and described in the following written specification. It is understood that no limitation to the scope of the invention is thereby intended. It is further understood that the present invention includes any alterations and modifications to the illustrated embodiments and includes further applications of the principles of the invention as would normally occur to one skilled in the art to which this invention pertains.
[0034] In accordance with the present disclosure, the inner stylet, needle or cannula 30 of the biopsy device 10 described above can be modified as shown in
[0035] In one aspect of the present disclosure, the inner member includes a scoop portion 44 extending from the main body to a distal end 46 that is configured to penetrate tissue at the biopsy site. As seen at the distal end 46, the scoop portion 44 is defined by a partially cylindrical wall that extends for about half the circumference of the tubular body. Thus, in the illustrated embodiment the scoop portion 44 subtends an angle of about 180° to form a trough that can hold tissue. Other subtended angles are contemplated, although it is preferable that the scoop wall be configured or manufactured for sufficient rigidity and resistance to flexure as the device is introduced into a biopsy site or when the device is fired as described above.
[0036] The distal end 46 of the scoop portion 44 may include a sharpened cutting edge to facilitate passage through tissue and clean slicing of the tissue as the scooped catheter is introduced into the biopsy site. In one embodiment, the sharpened cutting edge is formed at the inner surface of the cannula. In other words, the outer surface 44a of the cannula may have a constant radius throughout the entire length of the cannula, including the tubular body 42, while the inner surface 44b defines an angled surface 47 at the tip 46, as shown in
[0037] In one embodiment, the inner member 40 may be formed by performing an O.D. grind at the end of a stylet or a needle and then cutting a notch along the end of the cannula to form the scoop 44. Alternatively, the scoop 44 may be created by wire EDM on bar stock. The notch may be cut so that the scoop portion 44 has a predetermined length from the opening of the lumen 48 of the tubular body 42 to the distal end 46. This predetermined length may correspond to the stroke or throw of the outer cannula 20 when the device is fired. For example, in one specific embodiment the length of the scoop portion 44 may be about 2 cm. It is contemplated that the inner member 40 can be formed using other suitable techniques.
[0038] In certain uses of the device 10 it is desirable to have an indication of the extent of the outer cannula stroke when the device is introduced into a biopsy site. Thus, the scoop portion 44 may have a length approximately equal to the stroke of the biopsy device. The firing mechanism of the device may be configured to allow the inner member to be extended beyond the distal end 26 of the outer cannula in situ after the device is charged but prior to firing, as illustrated in
[0039] In other embodiments, the scoop portion 44 may be attached to or formed as part of a solid stylet to form the inner member 40. The scoop portion may be removably attached to be removed along with the tissue sample after a biopsy procedure. In further embodiments, a solid tip may be formed on or attached to the distal end 46 of the scoop portion. The solid tip may be in the form of a Trocar, a bevel, a conical “pencil point” configuration or other known tip designs.
[0040] The inner member 40 and scoop portion 44 disclosed herein are configured for passage through a full core outer cannula 20, but it is understood that the same inner member may be used with other biopsy devices, such as the SABD™ discussed above. In some uses it may be desirable to block the lumen 48 when the device is fired to prevent the tissue sample from being drawn into the inner member. In this instance a plug, such as an obturator, may be introduced into the inner member 40 prior to firing. Alternatively, the lumen can remain open and the obturator may be used to help expel the tissue sample when the device is removed from the patient.
[0041] In an alternative embodiment, an outer cannula 50 is provided that can be used with the inner member 40. The outer cannula, as shown in
[0042] The remaining portion of the circumference 58 does not have any countersink and instead is formed at the same inner radius as the inner wall 52 proximal to the countersink 56. In one specific embodiment, the portion 58 without the forcing cone is co-extensive with the scoop portion 44 of the inner member 40 (
[0043] The inner member may be modified to cooperate with the forcing cone 56 of the outer member 50. In particular, a modified inner member 40′, shown in
[0044] In a further embodiment, an inner member 60, shown in
[0045] The inner member 60 incorporates additional features to coincide with the outer cannula 50. In particular, the distal end 66 is configured to mate with the distal end of the outer cannula, and in particular with the forcing cone 56 and non-forcing cone portion 58 (
[0046] In a further embodiment, the inner member 80 can include a proximal end 62 and scoop portion 64 similar to the previous embodiments. However, the distal end 86 of the inner member 80 is modified to a nib configuration 88. The nib configuration extends from the half-circumference of the scoop portion 84 with the circumferential extent gradually decreasing to a sharpened point 89. The distal end 88 is thus configured to be easily introduced into tissue.
[0047] The foregoing detailed description of one or more embodiments of the biopsy device with an inner member disposed within an outer cannula has been presented herein by way of example and not limitation. It will be recognized that there are advantages to certain individual features and functions described herein. Moreover, it will be recognized that various alternatives, modifications, variations or improvements of the above-disclosed embodiments and other features and functions, or alternatives thereof, may be desirably combined into many other different embodiments, systems or applications. Presently unforeseen or unanticipated alternatives, modifications, variations or improvements therein may be subsequently made by those skilled in the art which are also intended to be encompassed by the appended claims.