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US3628524A - Biopsy needle - Google Patents

Biopsy needle
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US3628524A
US3628524AUS803199*AUS3628524DAUS3628524AUS 3628524 AUS3628524 AUS 3628524AUS 3628524D AUS3628524D AUS 3628524DAUS 3628524 AUS3628524 AUS 3628524A
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needle
distal end
stylet
biopsy
distal
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Khosrow Jamshidi
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Abstract

A biopsy needle of uniform diameter throughout the major portion of its length includes a tapered distal end portion which terminates in a distal cutting edge. An elongate stylet is insertable into the needle and has a closed distal end which is positioned in close proximity to and cooperates with the distal cutting edge of the needle to present a symmetrical closed end to facilitate insertion of the needle into a patient and collection of a biopsy specimen. The stylet and needle are releasably interlocked together whereby upon removal of the stylet, a biopsy tissue will be collected in the tapered distal end portion of the needle. Because of the expanded tapered interior of the needle there is little, if any, compression of the tissue specimen within the needle and therefore little, if any, damage to the tissue specimen.

Description

United States Patent [72] Inventor Khosrow Jamshidi 124 4th Ave. N.W., Faribault, Minn. 55021 [21] Appl. No. 803,199 [22] Filed Feb. 28, 1969 [45] Patented Dec. 21, 1971 [54] BIOPSY NEEDLE 5 Claims, 4 Drawing Figs.
[52] U.S. Cl 128/2 B, l28/221,128/310,128/347 [51] Int. Cl A61b 10/00 [50] Field of Search 128/2, 310, 2 B, 347, 305, 221
[56] References Cited UNITED STATES PATENTS 3,540,447 11/1970 Howe 128/221 640,108 12/1899 Dalzell 128/310 UX 651,921 6/1900 De Vilbiss 128/310 2,416,391 2/1947 l-lixson 128/214 2,426,535 8/1947 Turkel..... 128/2 2,850,007 9/1958 Lingley.... 128/2 2,919,692 l/l960 Ackerman 128/2 3,020,912 2/1962 Chester 128/310 3,175,554 3/1965 Stewart 128/2 FQREIGN PATENTS 135,689 5/1952 Sweden 128/221 142,879 ll/1953 Sweden 123/347 153,540 6/1963 U.S.S.R. 128/2 Primary ExaminerRichard A. Gaudet Assistant Examinerl(yle L. Howell Attorney-Orrin M. Haugen ABSTRACT: A biopsy needle of uniform diameter throughout the major portion of its length includes a tapered distal end portion which terminates in a distal cutting edge, An elongate stylet is insertable into the needle and has a closed distal end which is positioned in close proximity to and cooperates with the distal cutting edge of the needle to present a symmetrical closed end to facilitate insertion of the needle into a patient and collection ofa biopsy specimen. The stylet and needle are releasably interlocked together whereby upon removal of the stylet, a biopsy tissue will be collected in the tapered distal end portion of the needle. Because of the expanded tapered interior of the needle there is little, if any, compression of the tissue specimen within the needle and therefore little, if any, damage to the tissue specimen.
BIOPSY NEEDLE SUMMARY OF THE INVENTION Heretofore, biopsy tissue has been obtained by means of a number of specialized biopsy instruments. One such instrument is a biopsy needle which is typically of elongate cylindrical construction andthe tissue is collected interiorly of the needle. However, it has been found that biopsy tissue collected in such needles is compressed and often crushed so that the specimen is unusable. Biopsy needles of this type are used to obtain bone marrow biopsy specimens and when the specimen is unusable a new specimen must be obtained.
It is therefore a general object of this invention to provide a biopsy needle whose distal end portion has a uniformly tapered interior so that the specimen is allowed to expand as it is collected and will therefore not be crushed and damaged.
More specifically, it is an object of this invention to provide a biopsy needle having a tapered distal portion terminating in a cutting edge which is useful in not only obtaining bone marrow biopsy tissue but also biopsy specimens from the liver, kidney, spleen, skin, muscle and other tissues. One particular cutting edge which may be employed in a biopsy needle to great advantage is a double saw tooth cutting edge, the teeth being diametrically opposed and each presenting a cutting edge which is substantially parallel to the axis of the needle thereby permitting effective radial cutting as well as penetration by the needle.
These and other objects and advantages of this invention will more fully appear from the following description made in connection with the accompanying drawings wherein like reference characters refer to the same or similar parts throughout the several views.
BRIEF DESCRIPTION OF THE FIGURES OF THE DRAWING DETAILED DESCRIPTION OF THE INVENTION Referring now to the drawings and more specificallyto FIG. 1, it will be seen that one embodiment of a novel biopsy needle designated generally by the reference numeral is there shown. This biopsy needle is preferably constructed of metal and includes an elongate substantiallycylindrical body 11 which terminates in a tapereddistal end portion 12. Referring now to FIG. 3, it will be noted that the interior or lumen 12a of the distal end portion is uniformly tapered and very smoothly communicates with lumen or interior 11a of the major portion of thetubular body 11. Thetapered end portion 12 terminates in a distal cutting edge 13 which, as shown, is oblique or bevelled relative to the longitudinal axis of the needle. The interior surface at the distal end of the distal end portion is bevelled or tapered outwardly to define the cutting edge 13.
Thebiopsy needle 11 is provided with a pair of outwardly projecting oppositely disposedfinger grip elements 14 and terminates in a cylindrical slightly enlarged end member 15. The proximal end member 15 has adistal end wall 16 which has an aperture therein that communicates with the lumen 11a of thetubular body 11. Theproximal end member 14 also has a notch 17 therein which extends from the proximal end thereof and terminates in an offset portion.
Anelongate stylet 18 is provided and is similar in shape and length to theneedle 11 and is also formed of a suitable metallic material. The stylet is of substantially cylindrical configuration but includes a tapereddistal end portion 19 which terminates in a bevelled or obliquedistal end 20. The major portion of thestylet 18 corresponds in length to the length of thetubular body 11 but is of slightly smaller diameter and thetapered end portion 19 corresponds in length to the length of thetapered end portion 12 of the needle 10. Thus the stylet is adapted to be inserted into the needle in snug-fitting relation therein as best seen in FIG. 3.
Thestylet 18 includes aproximal end member 21 which is of cylindrical configuration and which is adapted to be positioned within the proximal end member 15 of the needle 10. Alocking pin 22 is affixed to theproximal end member 21 and projects radially outwardly therefrom. Thislocking pin 22 is adapted to be inserted into the notch 17 to be seated in the offset portion thereof when the stylet is inserted into the needle 10 to releasably interlock the stylet and needle together. This locking notch and pin on the stylet and needle also positions the bevelleddistal end 20 in a congruent relationship with respect to the distal end 13 of theneedle 11. By positioning the stylet and needle in this predetermined relation, the distal end of the assembly presents a closed end surface which is disposed in substantially a single oblique plane.
Thetapered end portion 12 of the needle 10 has a rasplike exterior surface 12b to facilitate penetration of bone when a bone or bone marrow specimen is to be obtained. It is also pointed out that the stylet illustrated in FIG. 2 and designated generally 23 is used in the removal of the tissue specimen from the needle 10. This stylet 23 is of cylindrical configuration and is formed of a suitable metallic material and includes a loopedend portion 24 which defines a handle. It is pointed out that this stylet has a substantially smaller diameter than the diameter defined by the opened distal end of the needle 10. The stylet is inserted into the distal end to gently urge the specimen towards the proximal end of the needle.
In use, thestylet 18 will be inserted into the needle 10 and will be interlocked therewith so that the tapereddistal end 20 is positioned in predetermined relation with respect to the distal cutting edge 13 whereby a closed symmetrical end surface disposed substantially in a single plane is presented. The needle may be inserted into the patient until the tissue to be removed is engaged by the distal end of the needle. In the event that a bone matter sample is to be obtained, the rasplike surface 12b will facilitate penetration of a bone such as the iliac crest. Rotating the needle about its longitudinal axis, the rasplike surface serves to produce a boring effect upon the bone and facilities entry into the marrow. When the distal end of the needle has reached the tissue from which the specimen is to be removed, thestylet 18 will be removed from the needle and the needle may again be revolved about its longitudinal axis while urging the same forwardly. This movement of the needle produces a cutting action of the tissue and allows the specimen to be collected interiorly of the needle. Because of the expanded configuration of the interior of thetapered portion 12, the biopsy specimen will not be crushed. After the specimen has been collected, the needle 10 may be removed from the biopsy tract and the stylet 23 may be inserted into the distal end to urge to specimen gently toward the proximal end of the needle and outwardly thereof. Alternatively, a conventional syringe may be attached to the proximal end of the needle to allow the specimen to be aspirated from the needle.
Referring now to FIG. 4, it will be seen that a slightly different embodiment of the cutting edge of the needle is there shown. The needle is identical in construction to that shown in FIG. 1 and includes a tubular body (not shown) and a uniformly tapereddistal end portion 25. The interior of the tapered end portion terminates in a distal end which defines a cutting edge 26. The cutting edge 26 is provided with a pair of diametricallyopposed teeth 27 which projects axially of the needle. Eachtooth 27 defines anaxial cutting edge 28 which is disposed substantially parallel to the longitudinal axis of the needle. Theseaxial cutting edges 28 are of substantially the same length and the point of each tooth is disposed in substantially coplanar relation. The cutting edge surface defined between eachaxial cutting edge 28 is generally of spiral configuration and facilitates cutting of a tissue as the needle is urged forwardly in an axial direction. However, theaxial cutting edges 28 permit radial cutting when the needle is revolved about its longitudinal axis. The needle illustrated in FIG. 4 will also be provided 'with a stylet having a distal end configuration which will present a closed end surface disposed in a single plane.
It has therefore been found that a needle having a cutting edge such as that shown in F IG. 4 is specifically adaptable for use in obtaining a biopsy specimen from softer tissues such as the liver, kidney, skin and muscle tissue. The tissue sample will enters the expanding tapereddistal end portion 25 and be moved axially of the needle without the attendant compression effect normally associated with conventional biopsy needles. With respect to muscle tissue, it is preferred that because of the striations, characteristic of muscle tissue, the needle will be of elliptical cross-sectional configuration rather than circular cross-sectional configuration. The distal end portion thereof will be tapered and the distal end will terminate in a cutting edge. The stylet associated with such needle will also have similar configuration to permit accurate telescoping of the stylet within the needle and proper positioning of the end of the stylet with respect to the distal end of the needle.
[t has been found that through the use of the biopsy needle described hereinabove, specimens may be obtained without damage through crushing of the specimen and thus preserves the spatial relationships of i the cellular elements and organelles of the tissue biopsied. This obviates the necessity of repeating the tissue removing technique for a biopsy specimen and thus minimizes anxiety problems associated with patients when obtaining biopsy specimens. It also will permit a more accurate assessment of the relationship of the various components of the tissue biopsied. It has also been found that the present biopsy needle which uses a uniformly tapered distal end portion is adaptable for obtaining biopsy specimens from various kinds of tissues and organs and thereby eliminates the need for specialized instruments.
As pointed out above, the cutting edge of the biopsy needle may be changed slightly in design from the oblique or bevelled cutting edge to the design illustrated in FIG. 4 wherein a pair of diametrically opposed teeth are utilized for cutting soft tissue. The use of a rasplike exterior surface may be employed in biopsy needles used in the obtaining of bone and/or bone marrow biopsy specimens. Thus present concept contemplates the use of biopsy needles for the purpose of acquiring biopsy specimens regardless of the tissue specimen to be taken.
There it will be seen, from the preceding paragraphs, that we have provided a biopsy needle which is not only of simple and inexpensive construction, but one which functions in a more efficient-manner than any heretofore known comparable needle.
It will, of course, be understood that various changes may be made in the fonn, details, arrangement and proportions of the various parts without departing from the scope of my invention.
What is claimed is:
1. An elongate hollow biopsy needle having opened distal and proximal ends, said distal end defining a cutting edge,
said needle being of uniform hollow cylindrical configuration throughout the major portion of its length, and having an external distal end surface portion tapered generally uniformly, uninterrupted, toward the tip of the distal end, and an internal end surface defining an inner biopsy tissue receiving and retaining bore immediately adjacent the distal end and with the needle converging from a first circular diameter which extends along the major portion of the length of the needle toward and to a second and significantly smaller circular diameter at the distal end, an elongate stylet positioned within said needle and corresponding generally in length and shape to the bore formed in said needle, said stylet being of uniformly cylindrical configuration throughout a major portion of its length, and having a uniformly uninterrupted tapered distal end portion convergin to a closed distal end tip; means arranged on said nee e and stylet to position the stylet within said needle so that the distal ends of the needle and stylet cooperate with each other to present a symmetrical closed tip end whereby said needle and stylet may be inserted as a unit into a tissue, and when said stylet is removed from the needle after insertion into a tissue, and upon manipulation of the needle, the distal cutting end of the needle will cut a tissue sample and the tissue sample will be collected in the expanded distal end portion of the bore of the needle to thereby minimize damage to the tissue.
2. The biopsy needle as defined in claim 1 wherein said distal cutting edge of the needle is obliquely disposed relative to the longitudinal axis of said needle.
3. The biopsy needle as defined in claim 1 wherein said distal cutting edge of the needle has a plurality of teeth thereon extending along an axis disposed generally parallel to the longitudinal axis of the needle.
4. The biopsy needle as defined in claim 1 wherein said distal cutting edge of the needle has a pair of diametrically opposed teeth extending therefrom along an axis generally parallel to the longitudinal axis of the needle and each tooth defining a cutting edge extending substantially parallel to said longitudinal axis of said needle.
5. The biopsy needle as defined in claim 1 wherein the tapered portion of said needle adjacent the tip edge of said distal end portion has a rasplike circumferential exterior surface to facilitate cutting through hard tissues such as a bone.
TTNTTTD STATES PATENT oTTTtT QEHTWIWATE @TF @Q-RRECTKUN Patent No. 3,628,524 Dated December 21, 1971 Inventor(s) Khosrow Jamshidi It is certified that error appears in the above-identified patent and that said Letters Patent are hereby corrected as shown below:
Column 1, line 69, "14" should read l5 Column 2, line 58, "to" (second occurrence) should read the Line 67, after "portion"insert 25 is also uniformly tapered and this tapered end portion Column 4, Claim 1,line 12, after "surface" insert portion tapered generally uniformly, uninterrupted, toward the tip of the distal end,
Signed and sealed this 30th day of May 1972..
(SEAL) Attest:
EDWARI PMFLETCHERJR, ROBERT GOTTSGHALK Attesting; Officer Commissioner of Patents FORM PO-1050 (10-69) USCOMM-DC 60376-F'69 w u.s. GOVERNMENT PRINTING OFFICE: I969 O-366334

Claims (5)

1. An elongate hollow biopsy needle having opened distal and proximal ends, said distal end defining a cutting edge, said needle being of uniform hollow cylindrical configuration throughout the major portion of its length, and having an external distal end surface portion tapered generally uniformly, uninterrupted, toward the tip of the distal end, and an internal end surface defining an inner biopsy tissue receiving and retaining bore immediately adjacent the distal end and with the needle converging from a first circular diameter which extends along the major portion of the length of the needle toward and to a second and significantly smaller circular diameter at the distal end, an elongate stylet positioned within said needle and corresponding generally in length and shape to the bore formed in said needle, said stylet being of uniformly cylindrical configuration throughout a major portion of its length, and having a uniformly uninterrupted tapered distal end portion converging to a closed distal end tip; means arranged on said needle and stylet to position the stylet within said needle so that the distal ends of the needle and stylet cooperate with each other to present a symmetrical closed tip end whereby said needle and stylet may be inserted as a unit into a tissue, and when said stylet is removed from the needle after insertion into a tissue, and upon manipulation of the needle, the distal cutting end of the needle will cut a tissue sample and the tissue sample will be collected in the expanded distal end portion of the bore of the needle to thereby minimize damage to the tissue.
US803199*A1969-02-281969-02-28Biopsy needleExpired - LifetimeUS3628524A (en)

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Cited By (107)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3850158A (en)*1973-07-091974-11-26E EliasBone biopsy instrument and method
US3860006A (en)*1973-06-251975-01-14Kendall & CoSuprapubic catheter system using an internal stylet
US3882849A (en)*1974-03-251975-05-13Khosrow JamshidiSoft Tissue Biopsy Device
US3893445A (en)*1974-01-091975-07-08Becton Dickinson CoBone marrow biopsy instrument
US4013080A (en)*1974-10-031977-03-22Froning Edward CCannula connector and direction indicator means for injection system
US4163446A (en)*1978-01-311979-08-07Khosrow JamshidiBiopsy needle and removable pad therefor
US4243050A (en)*1977-12-131981-01-06Littleford Philip OMethod for inserting pacemaker electrodes and the like
US4256119A (en)*1979-09-171981-03-17Gauthier Industries, Inc.Biopsy needle
US4258722A (en)*1978-12-151981-03-31Ferris Manufacturing Corp.Disposable biopsy needle, particularly for bone marrow samplings
US4262676A (en)*1979-08-241981-04-21Khosrow JamshidiBiopsy needle having integral stylet locking device
US4266555A (en)*1979-11-091981-05-12Khosrow JamshidiBiopsy needle with stylet and cannula orientation
US4269174A (en)*1979-08-061981-05-26Medical Dynamics, Inc.Transcutaneous vasectomy apparatus and method
US4314565A (en)*1978-03-031982-02-09Lee Peter FBiopsy and aspiration needle unit
US4341206A (en)*1978-12-191982-07-27Synthes AgDevice for producing a hole in a bone
US4345606A (en)*1977-12-131982-08-24Littleford Philip OSplit sleeve introducers for pacemaker electrodes and the like
WO1982003167A1 (en)*1981-03-161982-09-30Donald N MehlBiopsy needle
US4469109A (en)*1981-12-241984-09-04Creative Research And Manufacturing Inc.Bone marrow aspiration needle
US4487209A (en)*1981-03-161984-12-11Creative Research And Manufacturing Inc.Biopsy needle
US4513754A (en)*1978-03-031985-04-30Southland Instruments, Inc.Biopsy and aspiration unit with a replaceable cannula
US4543966A (en)*1981-06-101985-10-01Downs Surgical PlcBiopsy needle
US4640296A (en)*1983-11-121987-02-03Schnepp Pesch WolframBiopsy cannula
US4649918A (en)*1980-09-031987-03-17Custom Medical Devices, Inc.Bone core removing tool
US4655226A (en)*1983-12-161987-04-07Southland Instruments, Inc.Disposable biopsy needle unit
US4785826A (en)*1987-03-021988-11-22Ward John LBiopsy instrument
US4798213A (en)*1987-09-091989-01-17Doppelt Samuel HBone biopsy apparatus
US4799494A (en)*1986-10-221989-01-24Wang Ko PPercutaneous aspiration lung biopsy needle assembly
USD300243S (en)1986-07-211989-03-14Southland Instruments, Inc.Disposable biopsy needle unit
US4913143A (en)*1986-05-281990-04-03The United States Of America As Represented By The Secretary Of The Air ForceTrephine assembly
US4922602A (en)*1981-03-161990-05-08Creative Research And Manufacturing, Inc.Method of manufacturing a biopsy needle
US5018530A (en)*1989-06-151991-05-28Research Corporation Technologies, Inc.Helical-tipped lesion localization needle device and method of using the same
US5111828A (en)*1990-09-181992-05-12Peb Biopsy CorporationDevice for percutaneous excisional breast biopsy
US5279570A (en)*1992-09-221994-01-18Wayne State UniversityNeedle assembly with a movable stylet controlled by a spacer mechanism
US5279306A (en)*1981-03-161994-01-18Creative Research And ManufacturingBiopsy needle
US5336191A (en)*1992-08-131994-08-09Dlp, IncorporatedSurgical needle assembly
US5353804A (en)*1990-09-181994-10-11Peb Biopsy CorporationMethod and device for percutaneous exisional breast biopsy
US5360406A (en)*1992-11-191994-11-01Minnesota Mining And Manufacturing CompanyStylet for retrograde coronary sinus cannula
WO1995005123A1 (en)*1993-08-181995-02-23Karlin Technology, IncImproved surgical rongeur
US5423824A (en)*1992-03-231995-06-13Radi Medical Systems AbMethod of accessing hard tissue
USD359801S (en)1993-07-071995-06-27Minnesota Mining And Manufacturing CompanyStylet for retrograde coronary sinus cannula
US5429138A (en)*1993-06-031995-07-04Kormed, Inc.Biopsy needle with sample retaining means
US5526821A (en)*1993-06-031996-06-18Medical Biopsy, Inc.Biopsy needle with sample retaining means
US5653713A (en)*1989-04-241997-08-05Michelson; Gary KarlinSurgical rongeur
US5709697A (en)*1995-11-221998-01-20United States Surgical CorporationApparatus and method for removing tissue
US5782775A (en)*1995-10-201998-07-21United States Surgical CorporationApparatus and method for localizing and removing tissue
US5807277A (en)*1995-12-151998-09-15Swaim; William R.Biopsy hand tool for capturing tissue sample
US5817034A (en)*1995-09-081998-10-06United States Surgical CorporationApparatus and method for removing tissue
US5857982A (en)*1995-09-081999-01-12United States Surgical CorporationApparatus and method for removing tissue
US5868684A (en)*1993-12-221999-02-09Radi Medical Systems AbDevice for hard tissue biopsy sampling
US6267732B1 (en)1997-09-122001-07-31Imagyn Medical Technologies, Inc.Incisional breast biopsy device
US6383145B1 (en)1997-09-122002-05-07Imagyn Medical Technologies California, Inc.Incisional breast biopsy device
WO2002019930A3 (en)*2000-09-012002-06-13Synthes AgTools and methods for creating cavities in bone
US6436054B1 (en)1998-11-252002-08-20United States Surgical CorporationBiopsy system
US6468279B1 (en)1998-01-272002-10-22Kyphon Inc.Slip-fit handle for hand-held instruments that access interior body regions
US6551253B2 (en)1997-09-122003-04-22Imagyn Medical TechnologiesIncisional breast biopsy device
US6575919B1 (en)1999-10-192003-06-10Kyphon Inc.Hand-held instruments that access interior body regions
US20030187409A1 (en)*2002-03-292003-10-02Bioform, Inc.Connection indicator for a medical delivery/extraction system
US6749595B1 (en)*2000-06-152004-06-15Kieran P. J. MurphyCement delivery needle
US6814743B2 (en)2001-12-262004-11-09Origin Medsystems, Inc.Temporary seal and method for facilitating anastomosis
US20050124997A1 (en)*2000-05-252005-06-09Pajunk Ohg BesitzverwaltungApparatus for the application of bone cement and a cannula for such an apparatus
US7081122B1 (en)*1999-10-192006-07-25Kyphon Inc.Hand-held instruments that access interior body regions
US20060173476A1 (en)*2005-02-022006-08-03Gino BradicaCoring device for preserving living tissue
US20060178677A1 (en)*2005-02-102006-08-10Technical Innovations, L.L.C.Hair punch
USD532513S1 (en)2004-03-192006-11-21Galt Medical CorporationHandle for an introducer sheath
US20070118050A1 (en)*2005-11-232007-05-24Joseph AccordinoBone graft harvest device
US20070162061A1 (en)*2005-11-042007-07-12X-Sten, Corp.Tissue excision devices and methods
US20070213670A1 (en)*2006-03-092007-09-13Gabel Jonathan BEndoscopic applicator
US7303551B2 (en)2002-03-292007-12-04Bioform, Inc.Medical delivery/extraction system
US7341576B2 (en)2002-03-292008-03-11Bioform Medical, Inc.Medical delivery/extraction system
US20080077147A1 (en)*2006-09-262008-03-27Marino James FSystem and Method for Accessing Bone for Coring
US20080269684A1 (en)*2007-03-122008-10-30Anderson Neil LFormable stylet
US20080281364A1 (en)*2007-05-082008-11-13Spineworks Medical, Inc.Systems, devices and methods for stabilizing bone
US20090012564A1 (en)*2007-03-072009-01-08Spineworks Medical, Inc.Transdiscal interbody fusion device and method
US20090054898A1 (en)*2007-03-262009-02-26Joe GleasonArticulating Shaper
US20090149774A1 (en)*2007-12-062009-06-11Ebi, L.P. bone marrow aspiration needle
US20090275994A1 (en)*2008-04-302009-11-05Phan Christopher UApparatus and methods for inserting facet screws
USD606654S1 (en)2006-07-312009-12-22Vertos Medical, Inc.Tissue excision device
USD610259S1 (en)2008-10-232010-02-16Vertos Medical, Inc.Tissue modification device
USD611146S1 (en)2008-10-232010-03-02Vertos Medical, Inc.Tissue modification device
USD619252S1 (en)2008-10-232010-07-06Vertos Medical, Inc.Tissue modification device
USD619253S1 (en)2008-10-232010-07-06Vertos Medical, Inc.Tissue modification device
USD620593S1 (en)2006-07-312010-07-27Vertos Medical, Inc.Tissue excision device
USD621939S1 (en)2008-10-232010-08-17Vertos Medical, Inc.Tissue modification device
WO2010076663A3 (en)*2008-08-142010-11-25Moran Antonio JrBone tissue extracting device and method
US7896879B2 (en)2004-07-292011-03-01Vertos Medical, Inc.Spinal ligament modification
USD635671S1 (en)2008-10-232011-04-05Vertos Medical, Inc.Tissue modification device
US7931689B2 (en)2000-02-282011-04-26Spineology Inc.Method and apparatus for treating a vertebral body
US7942830B2 (en)2006-05-092011-05-17Vertos Medical, Inc.Ipsilateral approach to minimally invasive ligament decompression procedure
US20110130759A1 (en)*2006-04-272011-06-02Simonton T AndrewMethod for use of dilating stylet and cannula
US20110137253A1 (en)*2006-04-272011-06-09Simonton T AndrewDilating stylet and cannula
US7987001B2 (en)2007-01-252011-07-26Warsaw Orthopedic, Inc.Surgical navigational and neuromonitoring instrument
US20110238069A1 (en)*2010-02-112011-09-29Arthrex, Inc.Threaded hole forming device
US20110245800A1 (en)*2007-04-272011-10-06Cvdevices, LlcDevices, systems, and methods for transeptal atrial puncture using an engagement catheter platform
US8167947B2 (en)2002-12-032012-05-01Trans1 Inc.Methods for push distraction and for provision of therapy to adjacent motion segments
US20120271320A1 (en)*2011-04-202012-10-25Kci Licensing, Inc.Skin graft devices and methods
US8374673B2 (en)2007-01-252013-02-12Warsaw Orthopedic, Inc.Integrated surgical navigational and neuromonitoring system having automated surgical assistance and control
EP2698116A1 (en)2012-08-162014-02-19AprioMed ABBiopsy assembly for obtaining a tissue sample
US8696671B2 (en)2005-07-292014-04-15Vertos Medical Inc.Percutaneous tissue excision devices
US20140277038A1 (en)*2013-03-152014-09-18Kyphon SarlRetractable device to dissect and evacuate ligamentum flavum in lumber spinal stenosis
US9226732B2 (en)2011-11-232016-01-05Harvest Technologies CorporationBone marrow aspiration device and needle
US20180256201A1 (en)*2014-02-212018-09-13Surgentec, LlcHandles for needle assemblies
WO2019023274A1 (en)2017-07-262019-01-31Neuraptive Therapeutics, Inc.Device and method of creating a fluid containment field for administering therapeutics to a nerve
US10292688B2 (en)2013-12-042019-05-21Trinity Orthopedics, LlcRemovable bone penetrating device and methods
US10959776B2 (en)*2016-11-302021-03-30Traceless Biopsy, LlcBiopsy tract ablation system for tumor seeding prevention and cauterization
US12102348B2 (en)2016-09-072024-10-01Vertos Medical, Inc.Percutaneous lateral recess resection methods and instruments
US12150627B2 (en)2019-12-112024-11-26Merit Medical Systems, Inc.Bone biopsy device and related methods
US12295556B2 (en)2019-09-272025-05-13Merit Medical Systems, Inc.Rotation biopsy system and handle
US12324572B2 (en)2022-06-162025-06-10Vertos Medical, Inc.Integrated instrument assembly

Citations (10)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
SU153540A1 (en)*
US640108A (en)*1899-06-171899-12-26Henry M DalzellTubular crown-saw.
US651921A (en)*1900-03-081900-06-19Allen De VilbissTrephine.
US2416391A (en)*1945-08-181947-02-25Wyeth CorpFluid transfer apparatus
US2426535A (en)*1944-10-211947-08-26Turkel HenryInfusion and biopsy needle
US2850007A (en)*1956-05-311958-09-02American Cyanamid CoBiopsy device
US2919692A (en)*1956-02-231960-01-05Ackermann WolfgangVertebral trephine biopsy instruments
US3020912A (en)*1958-10-061962-02-13Martin H ChesterMotor driven surgical knife
US3175554A (en)*1963-03-261965-03-30Becton Dickinson CoSplit biopsy needle
US3540447A (en)*1967-09-291970-11-17Becton Dickinson CoSpinal needle

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
SU153540A1 (en)*
US640108A (en)*1899-06-171899-12-26Henry M DalzellTubular crown-saw.
US651921A (en)*1900-03-081900-06-19Allen De VilbissTrephine.
US2426535A (en)*1944-10-211947-08-26Turkel HenryInfusion and biopsy needle
US2416391A (en)*1945-08-181947-02-25Wyeth CorpFluid transfer apparatus
US2919692A (en)*1956-02-231960-01-05Ackermann WolfgangVertebral trephine biopsy instruments
US2850007A (en)*1956-05-311958-09-02American Cyanamid CoBiopsy device
US3020912A (en)*1958-10-061962-02-13Martin H ChesterMotor driven surgical knife
US3175554A (en)*1963-03-261965-03-30Becton Dickinson CoSplit biopsy needle
US3540447A (en)*1967-09-291970-11-17Becton Dickinson CoSpinal needle

Cited By (172)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3860006A (en)*1973-06-251975-01-14Kendall & CoSuprapubic catheter system using an internal stylet
US3850158A (en)*1973-07-091974-11-26E EliasBone biopsy instrument and method
US3893445A (en)*1974-01-091975-07-08Becton Dickinson CoBone marrow biopsy instrument
US3882849A (en)*1974-03-251975-05-13Khosrow JamshidiSoft Tissue Biopsy Device
US4013080A (en)*1974-10-031977-03-22Froning Edward CCannula connector and direction indicator means for injection system
US4345606A (en)*1977-12-131982-08-24Littleford Philip OSplit sleeve introducers for pacemaker electrodes and the like
US4243050A (en)*1977-12-131981-01-06Littleford Philip OMethod for inserting pacemaker electrodes and the like
US4163446A (en)*1978-01-311979-08-07Khosrow JamshidiBiopsy needle and removable pad therefor
US4314565A (en)*1978-03-031982-02-09Lee Peter FBiopsy and aspiration needle unit
US4513754A (en)*1978-03-031985-04-30Southland Instruments, Inc.Biopsy and aspiration unit with a replaceable cannula
US4258722A (en)*1978-12-151981-03-31Ferris Manufacturing Corp.Disposable biopsy needle, particularly for bone marrow samplings
US4341206A (en)*1978-12-191982-07-27Synthes AgDevice for producing a hole in a bone
US4269174A (en)*1979-08-061981-05-26Medical Dynamics, Inc.Transcutaneous vasectomy apparatus and method
US4262676A (en)*1979-08-241981-04-21Khosrow JamshidiBiopsy needle having integral stylet locking device
US4256119A (en)*1979-09-171981-03-17Gauthier Industries, Inc.Biopsy needle
US4266555A (en)*1979-11-091981-05-12Khosrow JamshidiBiopsy needle with stylet and cannula orientation
US4649918A (en)*1980-09-031987-03-17Custom Medical Devices, Inc.Bone core removing tool
US4922602A (en)*1981-03-161990-05-08Creative Research And Manufacturing, Inc.Method of manufacturing a biopsy needle
US4487209A (en)*1981-03-161984-12-11Creative Research And Manufacturing Inc.Biopsy needle
US5279306A (en)*1981-03-161994-01-18Creative Research And ManufacturingBiopsy needle
WO1982003167A1 (en)*1981-03-161982-09-30Donald N MehlBiopsy needle
US4543966A (en)*1981-06-101985-10-01Downs Surgical PlcBiopsy needle
US4469109A (en)*1981-12-241984-09-04Creative Research And Manufacturing Inc.Bone marrow aspiration needle
US4640296A (en)*1983-11-121987-02-03Schnepp Pesch WolframBiopsy cannula
US4655226A (en)*1983-12-161987-04-07Southland Instruments, Inc.Disposable biopsy needle unit
US4913143A (en)*1986-05-281990-04-03The United States Of America As Represented By The Secretary Of The Air ForceTrephine assembly
USD300243S (en)1986-07-211989-03-14Southland Instruments, Inc.Disposable biopsy needle unit
US4799494A (en)*1986-10-221989-01-24Wang Ko PPercutaneous aspiration lung biopsy needle assembly
US4785826A (en)*1987-03-021988-11-22Ward John LBiopsy instrument
US4798213A (en)*1987-09-091989-01-17Doppelt Samuel HBone biopsy apparatus
US6695849B2 (en)1989-04-242004-02-24Gary Karlin MichelsonSurgical rongeur
US5653713A (en)*1989-04-241997-08-05Michelson; Gary KarlinSurgical rongeur
US6200320B1 (en)*1989-04-242001-03-13Gary Karlin MichelsonSurgical rongeur
US6575977B1 (en)1989-04-242003-06-10Gary Karlin MichelsonSurgical rongeur
US7922723B2 (en)1989-04-242011-04-12Gary Karlin MichelsonMethod for using a surgical rongeur
US20030216740A1 (en)*1989-04-242003-11-20Gary Karlin MichelsonMethod for using a surgical rongeur
US5018530A (en)*1989-06-151991-05-28Research Corporation Technologies, Inc.Helical-tipped lesion localization needle device and method of using the same
US7011663B2 (en)1989-08-282006-03-14Gary Karlin MichelsonSurgical rongeur having a removable storage member
US20040186499A1 (en)*1989-08-282004-09-23Gary Karlin MichelsonSurgical rongeur
US20060149271A1 (en)*1989-08-282006-07-06Michelson Gary KMethod for cutting bone or cartilage with a rongeur
US7297147B2 (en)1989-08-282007-11-20Gary Karlin MichelsonMethod for cutting bone or cartilage with a rongeur
US5111828A (en)*1990-09-181992-05-12Peb Biopsy CorporationDevice for percutaneous excisional breast biopsy
US5353804A (en)*1990-09-181994-10-11Peb Biopsy CorporationMethod and device for percutaneous exisional breast biopsy
US5423824A (en)*1992-03-231995-06-13Radi Medical Systems AbMethod of accessing hard tissue
US5810826A (en)*1992-03-231998-09-22Radi Medical Systems AbPuncture instrument
US5571091A (en)*1992-08-131996-11-05Medtronic, Inc.Surgical needle assembly
US5336191A (en)*1992-08-131994-08-09Dlp, IncorporatedSurgical needle assembly
US5466225A (en)*1992-08-131995-11-14Medtronic, Inc.Surgical needle assembly
US5279570A (en)*1992-09-221994-01-18Wayne State UniversityNeedle assembly with a movable stylet controlled by a spacer mechanism
US5401244A (en)*1992-11-191995-03-28Minnesota Mining And Manufacturing CompanyMethod of, and stylet apparatus for, installing a retrograde coronary cannula
US5360406A (en)*1992-11-191994-11-01Minnesota Mining And Manufacturing CompanyStylet for retrograde coronary sinus cannula
US5429138A (en)*1993-06-031995-07-04Kormed, Inc.Biopsy needle with sample retaining means
US5526821A (en)*1993-06-031996-06-18Medical Biopsy, Inc.Biopsy needle with sample retaining means
USD359801S (en)1993-07-071995-06-27Minnesota Mining And Manufacturing CompanyStylet for retrograde coronary sinus cannula
WO1995005123A1 (en)*1993-08-181995-02-23Karlin Technology, IncImproved surgical rongeur
US8241290B2 (en)1993-08-182012-08-14Michelson Gary KSurgical rongeur
US20110190773A1 (en)*1993-08-182011-08-04Gary Karlin MichelsonSurgical rongeur
US5868684A (en)*1993-12-221999-02-09Radi Medical Systems AbDevice for hard tissue biopsy sampling
US6213957B1 (en)1995-09-082001-04-10United States Surgical CorporationApparatus and method for removing tissue
US6036657A (en)*1995-09-082000-03-14United States Surgical CorporationApparatus for removing tissue
US5857982A (en)*1995-09-081999-01-12United States Surgical CorporationApparatus and method for removing tissue
US5817034A (en)*1995-09-081998-10-06United States Surgical CorporationApparatus and method for removing tissue
US5782775A (en)*1995-10-201998-07-21United States Surgical CorporationApparatus and method for localizing and removing tissue
US5709697A (en)*1995-11-221998-01-20United States Surgical CorporationApparatus and method for removing tissue
US5807277A (en)*1995-12-151998-09-15Swaim; William R.Biopsy hand tool for capturing tissue sample
US6165137A (en)*1996-06-142000-12-26United States Surgical CorporationApparatus and method for localizing and removing tissue
US6077231A (en)*1996-06-142000-06-20United States Surgical CorporationApparatus and method for localizing and removing tissue
US6267732B1 (en)1997-09-122001-07-31Imagyn Medical Technologies, Inc.Incisional breast biopsy device
US6383145B1 (en)1997-09-122002-05-07Imagyn Medical Technologies California, Inc.Incisional breast biopsy device
US6551253B2 (en)1997-09-122003-04-22Imagyn Medical TechnologiesIncisional breast biopsy device
US7063703B2 (en)1998-01-272006-06-20Kyphon Inc.Slip-fit handle for hand-held instruments that access interior body regions
US20060241627A1 (en)*1998-01-272006-10-26Kyphon Inc.Slip-fit handle for hand-held instruments that access interior body regions
US6468279B1 (en)1998-01-272002-10-22Kyphon Inc.Slip-fit handle for hand-held instruments that access interior body regions
US6436054B1 (en)1998-11-252002-08-20United States Surgical CorporationBiopsy system
US6575919B1 (en)1999-10-192003-06-10Kyphon Inc.Hand-held instruments that access interior body regions
US20070197935A1 (en)*1999-10-192007-08-23Kyphon Inc.Hand-held instruments that access interior body regions
US7081122B1 (en)*1999-10-192006-07-25Kyphon Inc.Hand-held instruments that access interior body regions
US7399306B2 (en)1999-10-192008-07-15Kyphon Inc.Hand-held instruments that access interior body regions
US20030191414A1 (en)*1999-10-192003-10-09Kyphon Inc.Hand-held instruments that access interior body regions
US7931689B2 (en)2000-02-282011-04-26Spineology Inc.Method and apparatus for treating a vertebral body
US7883512B2 (en)2000-05-252011-02-08Pajunk Ohg BesitzverwaltungApparatus for the application of bone cement
US20050124997A1 (en)*2000-05-252005-06-09Pajunk Ohg BesitzverwaltungApparatus for the application of bone cement and a cannula for such an apparatus
US6749595B1 (en)*2000-06-152004-06-15Kieran P. J. MurphyCement delivery needle
WO2002019930A3 (en)*2000-09-012002-06-13Synthes AgTools and methods for creating cavities in bone
EP1925261A1 (en)*2000-10-242008-05-28Kyphon Inc.Hand-held instruments that access interior body regions
US7947062B2 (en)2001-12-262011-05-24Maquet Cardiovascular LlcTemporary anastomotic seal and method
US11123052B2 (en)2001-12-262021-09-21Maquet Cardiovascular LlcTemporary anastomotic seal and method
US6814743B2 (en)2001-12-262004-11-09Origin Medsystems, Inc.Temporary seal and method for facilitating anastomosis
US9345461B2 (en)2001-12-262016-05-24Maquet Cardiovascular LlcTemporary anastomotic seal and method
US7544203B2 (en)2001-12-262009-06-09Maquet Cardiovascular LlcTemporary seal and method for facilitating anastomosis
US7303551B2 (en)2002-03-292007-12-04Bioform, Inc.Medical delivery/extraction system
US7527610B2 (en)2002-03-292009-05-05Bioform Medical, Inc.Connection indicator for a medical delivery/extraction system
US20030187409A1 (en)*2002-03-292003-10-02Bioform, Inc.Connection indicator for a medical delivery/extraction system
US7341576B2 (en)2002-03-292008-03-11Bioform Medical, Inc.Medical delivery/extraction system
US8328847B2 (en)2002-12-032012-12-11Trans1 Inc.Assemblies for provision of therapy to motion segments
US8523918B2 (en)2002-12-032013-09-03Baxano Surgical, Inc.Therapy to adjacent motion segments
US8167947B2 (en)2002-12-032012-05-01Trans1 Inc.Methods for push distraction and for provision of therapy to adjacent motion segments
USD532513S1 (en)2004-03-192006-11-21Galt Medical CorporationHandle for an introducer sheath
US7896879B2 (en)2004-07-292011-03-01Vertos Medical, Inc.Spinal ligament modification
US20060173476A1 (en)*2005-02-022006-08-03Gino BradicaCoring device for preserving living tissue
US8672941B2 (en)2005-02-022014-03-18Kensey Nash Bvf Technology LlcCoring device for preserving living tissue
US9782196B2 (en)2005-02-022017-10-10Dsm Ip Assets B.V.Coring device for preserving living tissue
US20060178677A1 (en)*2005-02-102006-08-10Technical Innovations, L.L.C.Hair punch
US8894653B2 (en)2005-07-292014-11-25Vertos Medical, Inc.Percutaneous tissue excision devices and methods
US8882772B2 (en)2005-07-292014-11-11Vertos Medical, Inc.Percutaneous tissue excision devices and methods
US8696671B2 (en)2005-07-292014-04-15Vertos Medical Inc.Percutaneous tissue excision devices
US20070162061A1 (en)*2005-11-042007-07-12X-Sten, Corp.Tissue excision devices and methods
US8043291B2 (en)*2005-11-232011-10-25Joseph AccordinoBone graft harvest device
US20070118050A1 (en)*2005-11-232007-05-24Joseph AccordinoBone graft harvest device
US20070213670A1 (en)*2006-03-092007-09-13Gabel Jonathan BEndoscopic applicator
US20110137253A1 (en)*2006-04-272011-06-09Simonton T AndrewDilating stylet and cannula
US8372076B2 (en)*2006-04-272013-02-12Warsaw Orthopedic, Inc.Method for use of dilating stylet and cannula
US20110130759A1 (en)*2006-04-272011-06-02Simonton T AndrewMethod for use of dilating stylet and cannula
US9066753B2 (en)*2006-04-272015-06-30Warsaw Orthopedic, Inc.Dilating stylet and cannula
US8608762B2 (en)2006-05-092013-12-17Vertos Medical, Inc.Translaminar approach to minimally invasive ligament decompression procedure
US8734477B2 (en)2006-05-092014-05-27Vertos Medical, Inc.Translaminar approach to minimally invasive ligament decompression procedure
US7942830B2 (en)2006-05-092011-05-17Vertos Medical, Inc.Ipsilateral approach to minimally invasive ligament decompression procedure
USD620593S1 (en)2006-07-312010-07-27Vertos Medical, Inc.Tissue excision device
USD606654S1 (en)2006-07-312009-12-22Vertos Medical, Inc.Tissue excision device
US20080077147A1 (en)*2006-09-262008-03-27Marino James FSystem and Method for Accessing Bone for Coring
US9192396B2 (en)*2006-09-262015-11-24Trinity Orthopedics, LlcSystem and method for accessing bone for coring
US7987001B2 (en)2007-01-252011-07-26Warsaw Orthopedic, Inc.Surgical navigational and neuromonitoring instrument
US8374673B2 (en)2007-01-252013-02-12Warsaw Orthopedic, Inc.Integrated surgical navigational and neuromonitoring system having automated surgical assistance and control
US20090012564A1 (en)*2007-03-072009-01-08Spineworks Medical, Inc.Transdiscal interbody fusion device and method
US20080269684A1 (en)*2007-03-122008-10-30Anderson Neil LFormable stylet
US20090054898A1 (en)*2007-03-262009-02-26Joe GleasonArticulating Shaper
US8540674B2 (en)*2007-04-272013-09-24Cvdevices, LlcDevices, systems, and methods for transeptal atrial puncture using an engagement catheter platform
US9955999B2 (en)*2007-04-272018-05-01Cvdevices, LlcSystems, devices, and methods for transeptal atrial puncture using an engagement catheter platform
US20110245800A1 (en)*2007-04-272011-10-06Cvdevices, LlcDevices, systems, and methods for transeptal atrial puncture using an engagement catheter platform
US20140025038A1 (en)*2007-04-272014-01-23Ghassan S. KassabSystems, devices, and methods for transeptal atrial puncture using an engagement catheter platform
US20080281364A1 (en)*2007-05-082008-11-13Spineworks Medical, Inc.Systems, devices and methods for stabilizing bone
US20090149774A1 (en)*2007-12-062009-06-11Ebi, L.P. bone marrow aspiration needle
US20090275994A1 (en)*2008-04-302009-11-05Phan Christopher UApparatus and methods for inserting facet screws
US20090275954A1 (en)*2008-04-302009-11-05Phan Christopher UApparatus and methods for inserting facet screws
US20090275992A1 (en)*2008-04-302009-11-05Phan Christopher UApparatus and methods for inserting facet screws
WO2010076663A3 (en)*2008-08-142010-11-25Moran Antonio JrBone tissue extracting device and method
USD610259S1 (en)2008-10-232010-02-16Vertos Medical, Inc.Tissue modification device
USD619253S1 (en)2008-10-232010-07-06Vertos Medical, Inc.Tissue modification device
USD635671S1 (en)2008-10-232011-04-05Vertos Medical, Inc.Tissue modification device
USD621939S1 (en)2008-10-232010-08-17Vertos Medical, Inc.Tissue modification device
USD676964S1 (en)2008-10-232013-02-26Vertos Medical, Inc.Tissue modification device
USD611146S1 (en)2008-10-232010-03-02Vertos Medical, Inc.Tissue modification device
USD619252S1 (en)2008-10-232010-07-06Vertos Medical, Inc.Tissue modification device
US20110238069A1 (en)*2010-02-112011-09-29Arthrex, Inc.Threaded hole forming device
US10154855B2 (en)*2011-04-202018-12-18Kci Licensing, Inc.Skin graft devices and methods
US9468459B2 (en)*2011-04-202016-10-18Kci Licensing, Inc.Skin graft devices and methods
US20170042561A1 (en)*2011-04-202017-02-16Kci Licensing, Inc.Skin graft devices and methods
US20120271320A1 (en)*2011-04-202012-10-25Kci Licensing, Inc.Skin graft devices and methods
US9226732B2 (en)2011-11-232016-01-05Harvest Technologies CorporationBone marrow aspiration device and needle
EP2698116A1 (en)2012-08-162014-02-19AprioMed ABBiopsy assembly for obtaining a tissue sample
WO2014026875A1 (en)2012-08-162014-02-20Apriomed AbBiopsy assembly for obtaining a tissue sample
US9402648B2 (en)*2013-03-152016-08-02Kyphon SÀRLRetractable device to dissect and evacuate ligamentum flavum in lumbar spinal stenosis
US20140277038A1 (en)*2013-03-152014-09-18Kyphon SarlRetractable device to dissect and evacuate ligamentum flavum in lumber spinal stenosis
US10117665B2 (en)2013-03-152018-11-06Medtronic Holding Company SàrlRetractable device to dissect and evacuate ligamentum flavum in lumbar spinal stenosis
US10292688B2 (en)2013-12-042019-05-21Trinity Orthopedics, LlcRemovable bone penetrating device and methods
US20200352593A1 (en)*2014-02-212020-11-12Surgentec, LlcHandles for needle assemblies
US20240216011A1 (en)*2014-02-212024-07-04Surgentec, LlcHandles for needle assemblies
US10660668B2 (en)*2014-02-212020-05-26Surgentec, LlcHandles for needle assemblies
US11771459B2 (en)*2014-02-212023-10-03Surgentec, LlcHandles for needle assemblies
US20180256201A1 (en)*2014-02-212018-09-13Surgentec, LlcHandles for needle assemblies
US12102348B2 (en)2016-09-072024-10-01Vertos Medical, Inc.Percutaneous lateral recess resection methods and instruments
US20210205015A1 (en)*2016-11-302021-07-08Traceless Biopsy, LlcBiopsy tract ablation system for tumor seeding prevention and cauterization
US10959776B2 (en)*2016-11-302021-03-30Traceless Biopsy, LlcBiopsy tract ablation system for tumor seeding prevention and cauterization
US12137972B2 (en)*2016-11-302024-11-12Traceless Biopsy, LlcBiopsy tract ablation system for tumor seeding prevention and cauterization
US11633188B2 (en)2017-07-262023-04-25Neuraptive Therapeutics, Inc.Device and method of creating a fluid containment field for administering therapeutics to a nerve
EP4378413A2 (en)2017-07-262024-06-05Neuraptive Therapeutics, Inc.Device and method of creating an isolated fluid containment field for administration of therapeutic agents to a nerve
WO2019023274A1 (en)2017-07-262019-01-31Neuraptive Therapeutics, Inc.Device and method of creating a fluid containment field for administering therapeutics to a nerve
US12383273B2 (en)2017-07-262025-08-12Neuraptive Therapeutics, Inc.Device and method of creating a fluid containment field for administering therapeutics to a nerve
US12295556B2 (en)2019-09-272025-05-13Merit Medical Systems, Inc.Rotation biopsy system and handle
US12150627B2 (en)2019-12-112024-11-26Merit Medical Systems, Inc.Bone biopsy device and related methods
US12324572B2 (en)2022-06-162025-06-10Vertos Medical, Inc.Integrated instrument assembly
US12342999B2 (en)2022-06-162025-07-01Vertos Medical, Inc.Integrated instrument assembly

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