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US3699956A - Percutaneous lead device - Google Patents

Percutaneous lead device
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Publication number
US3699956A
US3699956AUS77290AUS3699956DAUS3699956AUS 3699956 AUS3699956 AUS 3699956AUS 77290 AUS77290 AUS 77290AUS 3699956D AUS3699956D AUS 3699956DAUS 3699956 AUS3699956 AUS 3699956A
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United States
Prior art keywords
lead
tissue
reservoir
skin
percutaneous
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
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US77290A
Inventor
Sotiris Kitrilakis
Thomas C Robinson
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Tecna Corp
Wells Fargo Bank NA
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Tecna Corp
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Publication of US3699956ApublicationCriticalpatent/US3699956A/en
Assigned to CROCKER NATIONAL BANKreassignmentCROCKER NATIONAL BANKASSIGNMENT OF ASSIGNORS INTEREST.Assignors: THORATEC LABORATORIES CORPORATION A CA CORP.
Assigned to CROCKER NATIONAL BANKreassignmentCROCKER NATIONAL BANKSECURITY INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: THORATEC LABORATORIES CORPORATION A CA CORP
Assigned to WELLS FARGO BANK N.A.reassignmentWELLS FARGO BANK N.A.SECURITY INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: BIOTEX INDUSTRIES INCORPORATED MERCOR INCORPORATED, THORATEC LABORATORIES INCORPORATED, THORATEC MEDICAL INCORPORATED
Assigned to BRADLEY RESOURCES COMPANY, A NEW YORK GENERAL PARTNERSHIP, GLENN, PAUL F., BELL, CHRISTY W.reassignmentBRADLEY RESOURCES COMPANY, A NEW YORK GENERAL PARTNERSHIPSECURITY INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: THORATEC LABORATORIES CORPORATION, A CORP. OF CA.
Assigned to BRADLEY RESOURCES COMPANY ("BRADLEY"), A NEW YORK GENERAL PARTNERSHIP, BELL, CHRISTY W., ( BELL ), GLENN, PAUL F., ( GLENN )reassignmentBRADLEY RESOURCES COMPANY ("BRADLEY"), A NEW YORK GENERAL PARTNERSHIPSECURITY INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: THORATEC LABORATORIES CORPORATION, A CA CORP.
Anticipated expirationlegal-statusCritical
Assigned to BRADLEY RESOURCES COMPANY, HILL, J. DONALD, GLENN, PAUL F., BELL, CHRISTY W.reassignmentBRADLEY RESOURCES COMPANYSECURITY INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: WELLS FARGO BANK N.A., A NATIONAL BANKING ASSOCIATION
Expired - Lifetimelegal-statusCriticalCurrent

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Abstract

A percutaneous lead device including an element for preventing bacterial infection caused by implanting the lead through the skin. This element extends below and along the skin surface and includes an antibacterial fluid reservoir coated with a diffusion-controlling layer which maintains the desired fluid release rate. A surface configuration on the reservoir and lead which is highly adherent to and completely permeated by ingrowing tissue provides a particularly effective bacterial seal.

Description

United States Patent Kitrilakis et al.
[451 Oct. 24, 1972 [54] PERCUTANEOUS LEAD DEVICE [72] Inventors: Sotiris Kitrilakis, Berkeley; Thomas C. Robinson, El Cerrito, both of Calif.
[73] Assignee: Tecna Corporation, Berkeley, Calif.
[22] Filed: Oct. 1, 1970 [21] Appl. No.: 77,290
[52] US. Cl. ..128/348, 128/260, 3/1 [51] Int. Cl. ..-.....A6lm 25/00 [58] Field of Search ...l28/348, 349 R,'350 R, 214.4,
[56] References Cited UNITED STATES PATENTS- 3,447,161 6/1969 Weikel .Q ..3/1 3,279,996 10/ 1966 Long et al ..424/l9 3,461,869
8/1969 Hargest ..128/348 X OTHER PUBLICATIONS Ersek et al Trans. Amer. Soc. Artif. Int. Orgs. 1969,
Vol. XV, 1969 (June) pp. 267- 271. McDonald et al. Trans. Amer. Soc. Artif. Int. Orgs. V01. XIV 1968 pp. 176- 180.
Primary Examiner-Dalton L. Truluck Attorney -Flehr, Hohbach, Test, Albritton & Herbert 7] ABSTRACT A percutaneous lead device including an element for preventing bacterial infection caused by implanting the lead through the skin. This element extends below and along the skin surface and includes an antibacterial fluid reservoir coated with a diffusion-controlling layer which maintains the desired fluid release rate. A surface configuration on the reservoir and lead which is highly adherent to and completely permeated by ingrowing tissue provides a particularly effective bacterial seal.
9 Claims, 2 Drawing Figures PERCUTANEOUS LEAD DEVICE BACKGROUND OF THE INVENTION This invention relates generally to method and means for preventing bacterial infection caused by implanting a percutaneous lead device in the skin and for achieving good fixation to minimize bacterial penetration and to avoid accidental removal of the lead.
Percutaneous lead devices such as tubes, shunts, cannulae, insulated wire, and various rods or tubular devices have been implanted through the skin for a wide variety of reasons. For example, such devices are used temporarily or over long periods of time to provide access to the circulated blood for blood pressure monitoring, blood sampling, the infusion of various substances, and the like. These lead devices are also used to connect external equipment to implanted devices, such as blood-flow probes, blood pumps, and pace makers. Two particularly widespread uses are as blood vessel connections in hemodialysis and as abdominal cavity access tubes for peritoneal dialysis. Both dialysis techniques are important tools in the treatment of kidney failure.
Although there is a substantial need for chronic, or long-term, use of percutaneous lead devices of the aforementioned type, the presently-available lead devices tend to cause infection by bacteria being transmitted across the skin and along the boundary between such devices and the surrounding skin tissue. Use of topical antibiotics at the skin puncture or the use of systemic antibiotics have been only marginally successful in the control of such infections since surface or systemic bacterial control does not prevent the eventual infection of the internal tissue. The only effective treatment of infections along present leads has been the removal of the lead and infected tissue, necessitating the implantation of a lead in a new site. Such untreated local infections will eventually result in systemic infections.
SUMMARY OFTHE INVENTION AND OBJECTS In accordance with the present invention, method and means are provided at a peripheral portion of a percutaneous lead device for releasing antibacterial fluid into the surrounding tissue at a controlled rate upon implanting the lead device into the skin. The release means includes a fluid reservoir, such as an absorptive material to which the antibacterial fluid is applied carried by a peripheral lead portion. In on embodiment, the coating material contains a plurality of microcavities which are compatible with blood and living tissue and form a tenacious base for anchoring tissue ingrowth which minimizes bacterial penetration along the lead surface.
It is a general object of the present invention to provide a method and means for preventing infection in a percutaneous lead device when implanted in the skin caused by bacteria being transmitted along the surface.
It is another object of the invention to provide a method and means for the controlled release of antibacterial fluid from the surface of a percutaneous lead device.
It is another object of the invention to provide a method and means for obtaining tissue fixation which avoids movement of the lead relative to adjacent tissue or accidental detachment or removal.
The foregoing and other objects will become apparent from the following description when taken in conjunction with the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWING FIG. 1 is an enlarged view of a portion of skin and subcutaneous tissue together with a percutaneous lead device according to the invention; and
FIG. 2 is an enlarged view of the portion of FIG. 1 showing the release device of the invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Referring to the drawing,percutaneous lead line 10 in the form of a hollow tube is illustrated in an implanted positionafter penetration through skin 11 and subcutaneous tissue 12.Line 10 may also be a solid rod such as an insulated wire for monitoring purposes. Various uses for either type of percutaneous lead line are described hereinbefore. In one embodiment,line 10 includes an outer wall containing a plurality of microcavities 13, such as formed in accordance with the method set forth in the copending application Ser. No. 77,289, filed Oct. 1, 1970. These microcavities allow the skin and subcutaneous tissue to grow around the outside walls and become permanently fixed or anchored to the wall by tissue ingrowth.
As further disclosed in the aforementioned application, the lead wall material may be rigid or flexible, depending upon the particular use of the lead line. A flexible lead line has the desirable property of reducing surface shear forces as caused by body movement or external forces applied to the line.
An additional technique to increase surface area and reduce shear stresses as illustrated in FIG. 1 is the disposition of a subcutaneous portion of the lead line generally parallel to the skin surface. This additional length provides increased fixation as well as other advantages discussed below.
Tissue growth in the microcavities forms a generally sealing interface which effectively blocks the ingress of infection causingbacteria across the skin for prolonged periods of time. However, this tissue seal is not completed until growth of the surrounding tissue into all interstices of the microcavity surface structure takes place. Even though this seal is formed in a relatively short period of time (e. g., several days), it is necessary to prevent bacterial penetration into the tissue along the lead surface during seal formation. This protection is provided by the means described herein.
According to the invention, microcavity-containing lead lines achieve long-term use by antiseptically preventing early bacterial infections below the skin. For this purpose, (e.g.,antibacterial fluid reservoir 14 is mounted onto peripheral lead portion 10a. To provide a slow release of the fluid so that it is available for a prolonged period of time, a diffusion-controlling layer in the form ofcoating 16 is mounted or applied to lead portion over essentially the entire area ofreservoir 14 so that the reservoir is sealed. at its proximal and distal ends. In one embodiment,reservoir 14 is an antibacterial fluid containing a wick-like absorbant material such as porous cloth (e.g., knitted or woven Dacron) or a fibrous mat e.g., Teflon felt). The antibacterial agent is applied to the material and released at a controlled rate through the diffusion-controllinglayer 16 into the skin.
In one embodiment of a diffusion-controllinglayer 16 shown in the drawings, a plurality of elongated passages 17 are provided throughout the layer to promote the desired diffusion rate. Passages 17 may be formed in a similar manner to microcavities 13 or by physically puncturing or perforating the layer. Passages 17 may be supplemented bymicrocavities 18 of the same type as microcavities 13 throughout the coating in such a manner that they are linked with passages 17 to form paths through the coating of sufficient size and density to accomplish the desired diffusion properties.Microcavities 18 also serve to permit tissue ingrowth and adhesion to prevent bacterial penetration along the surface of the layer. In an example of one such coating, an average of about 100 penetrations per cm of 0.1 mm length and 0.05 mm width are positioned throughout the layer. A typical thickness for such a layer is 0.001 to 0.020 inch.
- In another embodiment of a diffusion-controlling element (not shown), microcavity surface material may inherently possess the desired diffusion rate without the need for passages 17, as exemplified by Dacron cloth or a silicone rubber membrane layer.
The antibacterial fluid inreservoir 14 is of a type which is capable of allowing tissue growth on the outer surface of the percutaneous lead device while preventing bacterial infection. Suitable fluids include the following: maphenide acetate, silver nitrate, and silver sulfadiazine, and the like.
Antibiotic treatment is primarily beneficial from the time of implantation until tissue ingrowth occurs creating an effective bacterial seal at the tissue-microcavity surface. Thus, the antibiotic is supplied in amounts to be consumed at approximately that time.
The antibiotic treatment is maintained until complete tissue ingrowth and fixation occur, and may be discontinued at this time because an effective bacterial seal is created at the tissue-microcavity surface. If antibiotic treatment is discontinued, then means for preventing bacterial invasion ofreservoir 14 are provided. These means include an impervious coating external to the skin (coating 18) which is either applied prior to implantation or at the time antibacterial treatment is stopped. If the reservoir is wholly beneath the surface of the skin, then no surface coating need be applied. In either case, the reservoir can be filled with an inert substance (curable silicon rubber, silicone grease) to prevent bacterial growth within the reservoir.
In general, it is noted thatreservoir 14 may extend to any desired degree above the surface of the skin or therebelow. The reservoir may extend above the skin or may terminate just below the skin in the subcutaneous tissue as shown in FIG. 1.
After depletion of antibiotic, a pathway may be formed for bacteria through theporous coating 16 andempty reservoir 14 into the skin. To prevent this, it is preferred to terminate the reservoir and coating just below the skin in the subcutaneous tissue so thatpermeable layer 16 is not exposed. If it is desired to extend the reservoir above the skin, then the externally projecting portion oflayer 16 should be rendered impermeable as by application of an impermeable coating prior to implantation or after termination of treatment.
Depletion of antibiotic fluid may also provide a site for bacteria growth in body fluids which difiuse throughlayer 16. This may be avoided by filling the depleted reservoir with an inert substance (e.g., curable silicone rubber or silicone grease) after antibiotic fluid depletion.
To form the antiseptic means for preventing infection according to the invention, the bacterial fluid is first supplied toreservoir 14 either before mountinglayer 16 or thereafter as through a hypodermic needle penetrating the coating.
We claim:
1. A percutaneous device comprising an elongated lead adapted to penetrate the skin, said lead including a portion having an external surface compatible with skin, subcutaneous tissue and other tissue, said surface including pockets extending into said surface for receiving ingrowth of living cells to permanently anchor the lead, antiseptic means including an antibacterial fluid reservoir for providing a controlled release of said fluid adjacent said portion of the lead, said reservoir including a walled chamber attached to said lead, said chamber walls provided with diffusion controlling passage means so that upon penetration of the skin by the device the fluid is released directly from said reservoir into the area around said reservoir portion over a prolonged period of time to prevent bacterial penetration into the tissue along the lead during ingrowth of said cells.
2. A lead device as in claim 1 in which said reservoir comprises an antibacterial fluid-containing absorptive material carried within said chamber of the lead.
3. A percutaneous lead as in claim 2 in which said release means includes a permeable barrier covering said absorptive material.
4. A percutaneous lead device as in claim 3 in which said barrier is a layer extending over essentially the entire surface of the absorptive material.
5. A percutaneous lead device as in claim 4 in which said layer is covered by a material which is compatible with living tissue having a plurality of microcavities of predetermined size and shape.
6. A percutaneous lead device as in claim 4 in which said layer has a thickness of from 0.001 to 0.020 inch.
7. A percutaneous lead as in claim 4 in which said layer is capable of anchoring tissue ingrowth on its outer surface.
8. A percutaneous lead device as in claim 5 including elongated passages through said layer of a size sufficient for permeability.
9. A percutaneous device comprising an elongated hollow lead adapted to penetrate the skin, said lead including a portion having a flexible external surface compatible with skin, subcutaneous tissue and other tissue, said surface portion including a plurality of adjacent substantially discrete pockets having openings which face toward the tissue, the walls of said pocket being of such shape and size as to provide means to accommodate a number of living cells sufficient to provide anchoring but not so large as to prevent essentially normal transfer of nutrients to said living cells in said pockets from said adjacent area of tissue, antiseptic means including an antibacterial fluid reservoir for providing a controlled release of said fluid adjacent said portion of the lead, said reservoir including a walled chamber attached to said lead, said chamber walls provided with diffusion controlling passage means so that upon penetration of the skin by the device the fluid is released directly from said reservoir into the area around said reservoir portion over a prolonged 5 period of time to prevent bacterial penetration into the tissue along the lead during ingrowth of said cells.

Claims (8)

  1. 9. A percutaneous device comprising an elongated hollow lead adapted to penetrate the skin, said lead including a portion having a flexible external surface compatible with skin, subcutaneous tissue and other tissue, said surface portion including a plurality of adjacent substantially discrete pockets having openings which face toward the tissue, the walls of said pocket being of such shape and size as to provide means to accommodate a number of living cells sufficient to provide anchoring but not so large as to prevent essentially normal transfer of nutrients to said living cells in said pockets from said adjacent area of tissue, antiseptic means including an antibacterial fluid reservoir for providing a controlled release of said fluid adjacent said portion of the lead, said reservoir including a walled chamber attached to said lead, said chamber walls provided with diffusion controlling passage means so that upon penetration of the skin by the device the fluid is released directly from said reservoir into the area around said reservoir portion over a prolonged period of time to prevent bacterial penetration into the tissue along the lead during ingrowth of said cells.
US77290A1970-10-011970-10-01Percutaneous lead deviceExpired - LifetimeUS3699956A (en)

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US7729070A1970-10-011970-10-01

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DE (1)DE2149041A1 (en)
FR (1)FR2109932A5 (en)
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NL (1)NL7113433A (en)

Cited By (101)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3752162A (en)*1972-04-101973-08-14Dow CorningArtificial cutaneous stoma
US3797485A (en)*1971-03-261974-03-19Alza CorpNovel drug delivery device for administering drug into blood circulation in blood vessel
US3804088A (en)*1972-07-311974-04-16Lilly Co EliRemovable implantate for administering physiological active agents to animals
US3843974A (en)*1972-01-051974-10-29Us Health Education & WelfareIntimal lining and pump with vertically drafted webs
US3877461A (en)*1971-06-211975-04-15Investors In Ventures IncDevice for controlling body fluids
US4054139A (en)*1975-11-201977-10-18Crossley Kent BOligodynamic catheter
EP0022370A1 (en)*1979-07-051981-01-14American Hospital Supply CorporationPeritoneal catheter
US4321914A (en)*1980-04-221982-03-30W. L. Gore & Associates, Inc.Percutaneous conduit having PTFE skirt
US4343788A (en)*1979-06-291982-08-10The Procter & Gamble CompanyAntimicrobial polymer compositions
FR2519256A1 (en)*1981-12-311983-07-08Bard Inc C R MEDICAL TUBE HAVING AN EXTERIOR HYDROPHILIC COATING CAPABLE OF ABSORBING A MICROBICIDAL AGENT AND METHOD OF USE
US4392848A (en)*1979-06-251983-07-12The Procter & Gamble CompanyCatheterization
US4434797A (en)1979-01-121984-03-06Ab TesiCatheter
WO1984001102A1 (en)*1982-09-131984-03-29Hydromer IncAnti-bacterial medical material and device
US4479795A (en)*1979-06-291984-10-30The Procter & Gamble CompanyAntimicrobial polymer compositions
US4483688A (en)*1980-09-221984-11-20Hiroshi AkiyamaCatheter
US4564361A (en)*1975-11-181986-01-14Hiroshi AkiyamaCatheter
US4588404A (en)*1979-01-221986-05-13Didier LapeyreTotal cardiac prosthesis
US4623329A (en)*1983-12-151986-11-18The Procter & Gamble CompanyDrainage and infusion catheters having a capillary sleeve forming a reservoir for a fluid antimicrobial agent
US4624669A (en)*1984-09-261986-11-25Surgidev CorporationCorneal inlay with holes
US4676782A (en)*1984-09-211987-06-30Vitaphore CorporationPositionable tissue interfacing device for the management of percutaneous conduits
US4810241A (en)*1980-06-091989-03-07Rogers Phillip PAmbulatory dialysis system and connector
US4863426A (en)*1987-08-181989-09-05Ferragamo Michael CPercutaneous venous catheter
US4886501A (en)*1987-08-251989-12-12Shiley Infusaid Inc.Implantable device
US4886502A (en)*1986-12-091989-12-12Thermedics, Inc.Peritoneal access catheter
WO1990015636A1 (en)*1989-06-021990-12-27Baxter International Inc.Porous percutaneous access device
US5007897A (en)*1989-05-301991-04-16Kalb Irvin MDrug delivery catheter
DE3937849A1 (en)*1989-11-141991-05-16Frimberger Eckart Dr Med DEVICE FOR THE EXTERNAL SUPPLY OF PERCUTANEOUS PROBES
US5019096A (en)*1988-02-111991-05-28Trustees Of Columbia University In The City Of New YorkInfection-resistant compositions, medical devices and surfaces and methods for preparing and using same
DE3943412A1 (en)*1989-12-301991-07-11Braun Melsungen Ag TRANSCUTANE IMPLANT CATHETER
WO1991010466A1 (en)*1990-01-101991-07-25Rochester Medical CorporationMicrocidal agent releasing catheter
WO1991010467A1 (en)*1990-01-101991-07-25Rochester Medical CorporationCatheter having lubricated outer sleeve and method for making same
US5053013A (en)*1990-03-011991-10-01The Regents Of The University Of MichiganImplantable infusion device
US5057084A (en)*1990-03-011991-10-15The Regents Of The University Of MichiganImplantable infusion device
US5059186A (en)*1988-03-071991-10-22Vitaphore CorporationPercutaneous access device
US5100392A (en)*1989-12-081992-03-31Biosynthesis, Inc.Implantable device for administration of drugs or other liquid solutions
US5100383A (en)*1986-05-081992-03-31Meir LichtensteinCatheters permitting controlled diffusion
US5180365A (en)*1990-03-011993-01-19Ensminger William DImplantable infusion device
US5226879A (en)*1990-03-011993-07-13William D. EnsmingerImplantable access device
US5236422A (en)*1991-06-241993-08-17Eplett Jr James DAntiseptic urinary catheter cuff
US5261896A (en)*1990-01-101993-11-16Rochester Medical CorporationSustained release bactericidal cannula
US5263930A (en)*1990-03-011993-11-23William D. EnsmingerImplantable access devices
US5269770A (en)*1990-01-101993-12-14Rochester Medical CorporationMicrocidal agent releasing catheter with balloon
US5281199A (en)*1990-03-011994-01-25Michigan Transtech CorporationImplantable access devices
US5308338A (en)*1993-04-221994-05-03Helfrich G BairdCatheter or the like with medication injector to prevent infection
US5350360A (en)*1990-03-011994-09-27Michigan Transtech CorporationImplantable access devices
US5352204A (en)*1990-03-011994-10-04Ensminger William DImplantable access devices
US5356381A (en)*1990-03-011994-10-18Ensminger William DImplantable access devices
US5360402A (en)*1990-01-101994-11-01Rochester Medical CorporationHand-actuated retention catheter
US5395651A (en)*1989-05-041995-03-07Ad Tech Holdings LimitedDeposition of silver layer on nonconducting substrate
USH1465H (en)*1993-09-081995-07-04Medtronic, Inc.Implantable lead infection barrier
WO1995023598A1 (en)*1994-03-041995-09-08Trustees Of The Stevens Institute Of TechnologyControlled release microporous membranes
US5451424A (en)*1989-01-181995-09-19Becton Dickinson And CompanyAnti-infective and antithrombogenic medical articles and method for their preparation
US5468562A (en)*1991-03-011995-11-21Spire CorporationMetallized polymeric implant with ion embedded coating
US5474797A (en)*1991-10-181995-12-12Spire CorporationBactericidal coatings for implants
US5492763A (en)*1992-06-081996-02-20Spire CorporationInfection resistant medical devices and process
US5501669A (en)*1990-01-101996-03-26Rochester Medical CorporationUrinary catheter with reservoir shroud
US5520664A (en)*1991-03-011996-05-28Spire CorporationCatheter having a long-lasting antimicrobial surface treatment
US5520643A (en)*1990-03-011996-05-28Michigan Transtech CorporationImplantable access devices
US5534288A (en)*1993-03-231996-07-09United States Surgical CorporationInfection-resistant surgical devices and methods of making them
US5545223A (en)*1990-10-311996-08-13Baxter International, Inc.Ported tissue implant systems and methods of using same
US5569462A (en)*1993-09-241996-10-29Baxter International Inc.Methods for enhancing vascularization of implant devices
US5588962A (en)*1994-03-291996-12-31Boston Scientific CorporationDrug treatment of diseased sites deep within the body
US5599298A (en)*1993-12-301997-02-04Boston Scientific CorporationBodily sample collection balloon catheter method
US5674192A (en)*1990-12-281997-10-07Boston Scientific CorporationDrug delivery
US5713859A (en)*1994-01-181998-02-03Vasca, Inc.Implantable vascular device
US5756145A (en)*1995-11-081998-05-26Baylor College Of MedicineDurable, Resilient and effective antimicrobial coating for medical devices and method of coating therefor
US5807356A (en)*1994-01-181998-09-15Vasca, Inc.Catheter with valve
US5843089A (en)*1990-12-281998-12-01Boston Scientific CorporationStent lining
US5868719A (en)*1997-01-151999-02-09Boston Scientific CorporationDrug delivery balloon catheter device
US5964804A (en)*1990-10-311999-10-12Baxter International Inc.Close vascularization implant material
US5971954A (en)*1990-01-101999-10-26Rochester Medical CorporationMethod of making catheter
US6053901A (en)*1994-01-182000-04-25Vasca, Inc.Subcutaneously implanted cannula and method for arterial access
EP0703799A4 (en)*1994-04-012000-10-04Minimed IncIndwelling catheter with stable enzyme coating
US6156305A (en)*1994-07-082000-12-05Baxter International Inc.Implanted tumor cells for the prevention and treatment of cancer
US6162487A (en)*1995-11-082000-12-19Baylor College Of MedicineMethod of coating medical devices with a combination of antiseptics and antiseptic coating therefor
US6193746B1 (en)1992-07-082001-02-27Ernst Peter StreckerEndoprosthesis that can be percutaneously implanted in the patient's body
US6261271B1 (en)1989-01-182001-07-17Becton Dickinson And CompanyAnti-infective and antithrombogenic medical articles and method for their preparation
US6304786B1 (en)1999-03-292001-10-16Cardiac Pacemakers, Inc.Implantable lead with dissolvable coating for improved fixation and extraction
US6383434B2 (en)1990-01-102002-05-07Rochester Medical CorporationMethod of shaping structures with an overcoat layer including female urinary catheter
US6494861B1 (en)1997-01-152002-12-17Boston Scientific CorporationDrug delivery system
US20040186528A1 (en)*2003-03-202004-09-23Medtronic, Inc.Subcutaneous implantable medical devices with anti-microbial agents for chronic release
US20050163825A1 (en)*2004-01-272005-07-28Naidu A. S.Lactoferrin-treated filament materials
US20060126751A1 (en)*2004-12-102006-06-15Anthony BessiosTechnique for disparity bounding coding in a multi-level signaling system
US20080075761A1 (en)*2000-12-222008-03-27Modak Shanta MAntimicrobial Medical Devices Containing Chlorhexidine Free Base And Salt
US20080172011A1 (en)*2006-09-292008-07-17Tyco Healthcare Group LpCatheters including antimicrobial sleeve and methods of making catheters
US20100049309A1 (en)*2000-10-312010-02-25Bates Brian LCoated medical device
US7820284B2 (en)2001-12-032010-10-26C.R. Bard Inc.Microbe-resistant medical device, microbe-resistant polymeric coating and methods for producing same
US8034454B2 (en)1999-12-152011-10-11C.R. Bard, Inc.Antimicrobial compositions containing colloids of oligodynamic metals
US8864730B2 (en)2005-04-122014-10-21Rochester Medical CorporationSilicone rubber male external catheter with absorbent and adhesive
US20140358075A1 (en)*2013-05-282014-12-04Smh Device Corp.Tunneled Catheter with Hemostasis Mechanism
US9308351B2 (en)2013-05-282016-04-12Smh Device Corp.Tunneled catheter with hemostasis mechanism
US9393106B2 (en)2008-08-132016-07-19Allergan, Inc.Soft filled prosthesis shell with discrete fixation surfaces
US9409009B2 (en)2012-11-072016-08-09The Florida International UniversityMulti-lead multi-electrode management system
US9707375B2 (en)2011-03-142017-07-18Rochester Medical Corporation, a subsidiary of C. R. Bard, Inc.Catheter grip and method
US9872969B2 (en)2012-11-202018-01-23Rochester Medical Corporation, a subsidiary of C.R. Bard, Inc.Catheter in bag without additional packaging
US9981069B2 (en)2007-06-202018-05-29The Trustees Of Columbia University In The City Of New YorkBio-film resistant surfaces
US20180168558A1 (en)*2015-01-222018-06-21Debn Sp.Zo.O.Prostate Biopsy Needle
US10092728B2 (en)2012-11-202018-10-09Rochester Medical Corporation, a subsidiary of C.R. Bard, Inc.Sheath for securing urinary catheter
EP2505228B1 (en)*2004-02-042018-11-21Tc1 LlcAn improved percutaneous lead
US10857324B2 (en)2014-08-262020-12-08C. R. Bard, Inc.Urinary catheter
US11547599B2 (en)2017-09-192023-01-10C. R. Bard, Inc.Urinary catheter bridging device, systems and methods thereof

Families Citing this family (17)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CA1124952A (en)*1977-03-031982-06-08Robert P. PopovichMethod and apparatus for continuous, ambulatory peritoneal dialysis
FR2390967A1 (en)*1977-05-161978-12-15Akiyama HiroshiCatheter for long term insertion - with flexible sections giving off bactericidal metal ions
CA1174284A (en)*1980-09-021984-09-11Medtronic, Inc.Body implantable lead
DE3269893D1 (en)*1981-11-271986-04-17Fresenius AgIntraperitoneal catheter
DE3147722C2 (en)*1981-11-271985-02-28Dr. Eduard Fresenius, Chemisch-pharmazeutische Industrie KG, 6380 Bad Homburg Peritoneal catheter
US4612337A (en)*1985-05-301986-09-16The Trustees Of Columbia University In The City Of New YorkMethod for preparing infection-resistant materials
DE3729253A1 (en)*1987-09-021989-03-23Ulrich Dr MuellerDevice for preventing infections in external fixators in bone surgery
DE4316920A1 (en)*1993-05-201994-11-24Michael Dr Med Hartmann Endotracheal tube
WO1998017331A1 (en)*1995-06-071998-04-30Cook IncorporatedSilver implantable medical device
US5609629A (en)*1995-06-071997-03-11Med Institute, Inc.Coated implantable medical device
CA2178541C (en)*1995-06-072009-11-24Neal E. FearnotImplantable medical device
US7611533B2 (en)1995-06-072009-11-03Cook IncorporatedCoated implantable medical device
US7846202B2 (en)1995-06-072010-12-07Cook IncorporatedCoated implantable medical device
US7867275B2 (en)1995-06-072011-01-11Cook IncorporatedCoated implantable medical device method
US6774278B1 (en)1995-06-072004-08-10Cook IncorporatedCoated implantable medical device
EP1105169A1 (en)1998-08-202001-06-13Cook IncorporatedCoated implantable medical device
US6716895B1 (en)1999-12-152004-04-06C.R. Bard, Inc.Polymer compositions containing colloids of silver salts

Cited By (163)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3797485A (en)*1971-03-261974-03-19Alza CorpNovel drug delivery device for administering drug into blood circulation in blood vessel
US3877461A (en)*1971-06-211975-04-15Investors In Ventures IncDevice for controlling body fluids
US3843974A (en)*1972-01-051974-10-29Us Health Education & WelfareIntimal lining and pump with vertically drafted webs
US3752162A (en)*1972-04-101973-08-14Dow CorningArtificial cutaneous stoma
US3804088A (en)*1972-07-311974-04-16Lilly Co EliRemovable implantate for administering physiological active agents to animals
US4564361A (en)*1975-11-181986-01-14Hiroshi AkiyamaCatheter
US4054139A (en)*1975-11-201977-10-18Crossley Kent BOligodynamic catheter
US4434797A (en)1979-01-121984-03-06Ab TesiCatheter
US4588404A (en)*1979-01-221986-05-13Didier LapeyreTotal cardiac prosthesis
US4392848A (en)*1979-06-251983-07-12The Procter & Gamble CompanyCatheterization
US4343788A (en)*1979-06-291982-08-10The Procter & Gamble CompanyAntimicrobial polymer compositions
US4479795A (en)*1979-06-291984-10-30The Procter & Gamble CompanyAntimicrobial polymer compositions
EP0022370A1 (en)*1979-07-051981-01-14American Hospital Supply CorporationPeritoneal catheter
US4321914A (en)*1980-04-221982-03-30W. L. Gore & Associates, Inc.Percutaneous conduit having PTFE skirt
US4810241A (en)*1980-06-091989-03-07Rogers Phillip PAmbulatory dialysis system and connector
US4483688A (en)*1980-09-221984-11-20Hiroshi AkiyamaCatheter
FR2519256A1 (en)*1981-12-311983-07-08Bard Inc C R MEDICAL TUBE HAVING AN EXTERIOR HYDROPHILIC COATING CAPABLE OF ABSORBING A MICROBICIDAL AGENT AND METHOD OF USE
US4515593A (en)*1981-12-311985-05-07C. R. Bard, Inc.Medical tubing having exterior hydrophilic coating for microbiocide absorption therein and method for using same
WO1984001102A1 (en)*1982-09-131984-03-29Hydromer IncAnti-bacterial medical material and device
US4623329A (en)*1983-12-151986-11-18The Procter & Gamble CompanyDrainage and infusion catheters having a capillary sleeve forming a reservoir for a fluid antimicrobial agent
US4676782A (en)*1984-09-211987-06-30Vitaphore CorporationPositionable tissue interfacing device for the management of percutaneous conduits
US4624669A (en)*1984-09-261986-11-25Surgidev CorporationCorneal inlay with holes
US5100383A (en)*1986-05-081992-03-31Meir LichtensteinCatheters permitting controlled diffusion
US4886502A (en)*1986-12-091989-12-12Thermedics, Inc.Peritoneal access catheter
US4863426A (en)*1987-08-181989-09-05Ferragamo Michael CPercutaneous venous catheter
US4886501A (en)*1987-08-251989-12-12Shiley Infusaid Inc.Implantable device
US5019096A (en)*1988-02-111991-05-28Trustees Of Columbia University In The City Of New YorkInfection-resistant compositions, medical devices and surfaces and methods for preparing and using same
US5059186A (en)*1988-03-071991-10-22Vitaphore CorporationPercutaneous access device
US5451424A (en)*1989-01-181995-09-19Becton Dickinson And CompanyAnti-infective and antithrombogenic medical articles and method for their preparation
US5707366A (en)*1989-01-181998-01-13Becton Dickinson And CompanyAnti-infective and antithrombogenic medical articles and method for their preparation
US6261271B1 (en)1989-01-182001-07-17Becton Dickinson And CompanyAnti-infective and antithrombogenic medical articles and method for their preparation
US5395651A (en)*1989-05-041995-03-07Ad Tech Holdings LimitedDeposition of silver layer on nonconducting substrate
US5747178A (en)*1989-05-041998-05-05Adtech HoldingDeposition of silver layer on nonconducting substrate
US5965204A (en)*1989-05-041999-10-12Ad Tech Holdings LimitedDeposition of silver layer on nonconducting substrate
US6224983B1 (en)1989-05-042001-05-01Ad Tech Holdings LimitedDeposition of silver layer on nonconducting substrate
US5007897A (en)*1989-05-301991-04-16Kalb Irvin MDrug delivery catheter
WO1990015636A1 (en)*1989-06-021990-12-27Baxter International Inc.Porous percutaneous access device
DE3937849A1 (en)*1989-11-141991-05-16Frimberger Eckart Dr Med DEVICE FOR THE EXTERNAL SUPPLY OF PERCUTANEOUS PROBES
US5100392A (en)*1989-12-081992-03-31Biosynthesis, Inc.Implantable device for administration of drugs or other liquid solutions
US6890339B2 (en)1989-12-152005-05-10Scimed Life Systems, Inc.Stent lining
US6409716B1 (en)1989-12-152002-06-25Scimed Life Systems, Inc.Drug delivery
DE3943412A1 (en)*1989-12-301991-07-11Braun Melsungen Ag TRANSCUTANE IMPLANT CATHETER
WO1991010467A1 (en)*1990-01-101991-07-25Rochester Medical CorporationCatheter having lubricated outer sleeve and method for making same
US5360402A (en)*1990-01-101994-11-01Rochester Medical CorporationHand-actuated retention catheter
US5098379A (en)*1990-01-101992-03-24Rochester Medical CorporationCatheter having lubricated outer sleeve and methods for making and using same
JP3494377B2 (en)1990-01-102004-02-09ロチェスター・メディカル・コーポレーション Catheter with smoothed outer sleeve and method of making same
US5971954A (en)*1990-01-101999-10-26Rochester Medical CorporationMethod of making catheter
US6383434B2 (en)1990-01-102002-05-07Rochester Medical CorporationMethod of shaping structures with an overcoat layer including female urinary catheter
US6626888B1 (en)1990-01-102003-09-30Rochester Medical CorporationMethod of shaping structures with an overcoat layer including female urinary catheter
US5269770A (en)*1990-01-101993-12-14Rochester Medical CorporationMicrocidal agent releasing catheter with balloon
US5370899A (en)*1990-01-101994-12-06Conway; Anthony J.Catheter having lubricated outer sleeve and method for making same
WO1991010466A1 (en)*1990-01-101991-07-25Rochester Medical CorporationMicrocidal agent releasing catheter
US5261896A (en)*1990-01-101993-11-16Rochester Medical CorporationSustained release bactericidal cannula
US5670111A (en)*1990-01-101997-09-23Rochester Medical CorporationMethod of shaping structures with an overcoat layer including female urinary catheter
US5599321A (en)*1990-01-101997-02-04Rochester Medical CorporationSustained release bactericidal cannula
US5482740A (en)*1990-01-101996-01-09Rochester Medical CorporationSustained release bactericidal cannula
US5593718A (en)*1990-01-101997-01-14Rochester Medical CorporationMethod of making catheter
US5501669A (en)*1990-01-101996-03-26Rochester Medical CorporationUrinary catheter with reservoir shroud
US5226879A (en)*1990-03-011993-07-13William D. EnsmingerImplantable access device
US5542923A (en)*1990-03-011996-08-06Michigan Transtech CorporationImplantable access devices
US5281199A (en)*1990-03-011994-01-25Michigan Transtech CorporationImplantable access devices
US5503630A (en)*1990-03-011996-04-02Michigan Transtech CorporationInplantable access devices
US5350360A (en)*1990-03-011994-09-27Michigan Transtech CorporationImplantable access devices
US5356381A (en)*1990-03-011994-10-18Ensminger William DImplantable access devices
US5520643A (en)*1990-03-011996-05-28Michigan Transtech CorporationImplantable access devices
US5527278A (en)*1990-03-011996-06-18Michigan Transtech CorporationImplantable access devices
US5527277A (en)*1990-03-011996-06-18Michigan Transtech CorporationImplantable access devices
US5531684A (en)*1990-03-011996-07-02Michigan Transtech CorporationImplantable access devices
US5352204A (en)*1990-03-011994-10-04Ensminger William DImplantable access devices
US5417656A (en)*1990-03-011995-05-23Michigan Transtech CorporationImplantable access devices
US5607393A (en)*1990-03-011997-03-04Michigan Transtech CorporationImplantable access devices
US5554117A (en)*1990-03-011996-09-10Michigan Transtech CorporationImplantable access devices
US5556381A (en)*1990-03-011996-09-17The Michigan Transtech CorporationImplantable access devices
US5053013A (en)*1990-03-011991-10-01The Regents Of The University Of MichiganImplantable infusion device
US5180365A (en)*1990-03-011993-01-19Ensminger William DImplantable infusion device
US5263930A (en)*1990-03-011993-11-23William D. EnsmingerImplantable access devices
US5792123A (en)*1990-03-011998-08-11Michigan Transtech CorporationImplantable access devices
US5057084A (en)*1990-03-011991-10-15The Regents Of The University Of MichiganImplantable infusion device
US5545223A (en)*1990-10-311996-08-13Baxter International, Inc.Ported tissue implant systems and methods of using same
US5964804A (en)*1990-10-311999-10-12Baxter International Inc.Close vascularization implant material
US5733336A (en)*1990-10-311998-03-31Baxter International, Inc.Ported tissue implant systems and methods of using same
US5843089A (en)*1990-12-281998-12-01Boston Scientific CorporationStent lining
US5954706A (en)*1990-12-281999-09-21Boston Scientific CorporationDrug delivery
US5674192A (en)*1990-12-281997-10-07Boston Scientific CorporationDrug delivery
US6364893B1 (en)1990-12-282002-04-02Scimed Life Systems, Inc.Stent lining
US5468562A (en)*1991-03-011995-11-21Spire CorporationMetallized polymeric implant with ion embedded coating
US5520664A (en)*1991-03-011996-05-28Spire CorporationCatheter having a long-lasting antimicrobial surface treatment
US5236422A (en)*1991-06-241993-08-17Eplett Jr James DAntiseptic urinary catheter cuff
US5505695A (en)*1991-06-241996-04-09Eplett, Jr.; James D.Method of preventing bacterial migration during a urethral catheterization procedure
US5474797A (en)*1991-10-181995-12-12Spire CorporationBactericidal coatings for implants
US5492763A (en)*1992-06-081996-02-20Spire CorporationInfection resistant medical devices and process
US6645241B1 (en)1992-07-082003-11-11Ernst Peter StreckerEndoprosthesis that can be percutaneously implanted in the patient's body
US6193746B1 (en)1992-07-082001-02-27Ernst Peter StreckerEndoprosthesis that can be percutaneously implanted in the patient's body
US20040049259A1 (en)*1992-07-082004-03-11Strecker Ernst PeterEndoprosthesis that can be percutaneously implanted in the patient's body
US5534288A (en)*1993-03-231996-07-09United States Surgical CorporationInfection-resistant surgical devices and methods of making them
US5308338A (en)*1993-04-221994-05-03Helfrich G BairdCatheter or the like with medication injector to prevent infection
USH1465H (en)*1993-09-081995-07-04Medtronic, Inc.Implantable lead infection barrier
US5569462A (en)*1993-09-241996-10-29Baxter International Inc.Methods for enhancing vascularization of implant devices
US5919145A (en)*1993-12-301999-07-06Boston Scientific CorporationBodily sample collection balloon catheter
US5599298A (en)*1993-12-301997-02-04Boston Scientific CorporationBodily sample collection balloon catheter method
US5755780A (en)*1994-01-181998-05-26Vasca, Inc.Implantable vascular device
US5713859A (en)*1994-01-181998-02-03Vasca, Inc.Implantable vascular device
US6398764B1 (en)1994-01-182002-06-04Vasca. Inc.Subcutaneously implanted cannula and method for arterial access
US5807356A (en)*1994-01-181998-09-15Vasca, Inc.Catheter with valve
US6053901A (en)*1994-01-182000-04-25Vasca, Inc.Subcutaneously implanted cannula and method for arterial access
US6056717A (en)*1994-01-182000-05-02Vasca, Inc.Implantable vascular device
US6110481A (en)*1994-03-042000-08-29Trustees Of The Stevens Institute Of TechnologyControlled release device based on aqueous-organic partitioning in porous membranes
WO1995023598A1 (en)*1994-03-041995-09-08Trustees Of The Stevens Institute Of TechnologyControlled release microporous membranes
US5588962A (en)*1994-03-291996-12-31Boston Scientific CorporationDrug treatment of diseased sites deep within the body
EP0703799A4 (en)*1994-04-012000-10-04Minimed IncIndwelling catheter with stable enzyme coating
US6156305A (en)*1994-07-082000-12-05Baxter International Inc.Implanted tumor cells for the prevention and treatment of cancer
US5756145A (en)*1995-11-081998-05-26Baylor College Of MedicineDurable, Resilient and effective antimicrobial coating for medical devices and method of coating therefor
US6162487A (en)*1995-11-082000-12-19Baylor College Of MedicineMethod of coating medical devices with a combination of antiseptics and antiseptic coating therefor
US6558686B1 (en)*1995-11-082003-05-06Baylor College Of MedicineMethod of coating medical devices with a combination of antiseptics and antiseptic coating therefor
US6494861B1 (en)1997-01-152002-12-17Boston Scientific CorporationDrug delivery system
US5868719A (en)*1997-01-151999-02-09Boston Scientific CorporationDrug delivery balloon catheter device
US6304786B1 (en)1999-03-292001-10-16Cardiac Pacemakers, Inc.Implantable lead with dissolvable coating for improved fixation and extraction
US6584363B2 (en)1999-03-292003-06-24Cardiac Pacemakers, Inc.Implantable lead with dissolvable coating for improved fixation and extraction
US20040215306A1 (en)*1999-03-292004-10-28Cardiac Pacemakers, Inc.Implantable lead with dissolvable coating for improved fixation and extraction
US7218971B2 (en)1999-03-292007-05-15Cardiac Pacemakers, Inc.Implantable lead with dissolvable coating for improved fixation and extraction
US8034454B2 (en)1999-12-152011-10-11C.R. Bard, Inc.Antimicrobial compositions containing colloids of oligodynamic metals
US9814865B2 (en)2000-10-312017-11-14Cook Medical Technologies LlcCoated medical device
US9694162B2 (en)2000-10-312017-07-04Cook Medical Technologies LlcCoated medical device
US8673387B2 (en)2000-10-312014-03-18Cook Medical Technologies LlcCoated medical device
US8974522B2 (en)2000-10-312015-03-10Cook Medical Technologies LlcCoated medical device
US20100049309A1 (en)*2000-10-312010-02-25Bates Brian LCoated medical device
US8172793B2 (en)2000-10-312012-05-08Cook Medical Technologies LlcCoated medical device
US20080075761A1 (en)*2000-12-222008-03-27Modak Shanta MAntimicrobial Medical Devices Containing Chlorhexidine Free Base And Salt
US8906401B2 (en)2000-12-222014-12-09The Trustees Of Columbia University In The City Of New YorkAntimicrobial medical devices containing chlorhexidine free base and salt
US8383143B2 (en)2000-12-222013-02-26The Trustees Of Columbia University In The City Of New YorkAntimicrobial medical devices containing chlorhexidine free base and salt
US7820284B2 (en)2001-12-032010-10-26C.R. Bard Inc.Microbe-resistant medical device, microbe-resistant polymeric coating and methods for producing same
US10532190B2 (en)2002-07-122020-01-14Cook Medical Technologies LlcCoated medical device
US7731685B2 (en)2002-07-122010-06-08Cook IncorporatedCoated medical device
US20040186528A1 (en)*2003-03-202004-09-23Medtronic, Inc.Subcutaneous implantable medical devices with anti-microbial agents for chronic release
US20050163825A1 (en)*2004-01-272005-07-28Naidu A. S.Lactoferrin-treated filament materials
EP2505228B1 (en)*2004-02-042018-11-21Tc1 LlcAn improved percutaneous lead
US20060126751A1 (en)*2004-12-102006-06-15Anthony BessiosTechnique for disparity bounding coding in a multi-level signaling system
US9248058B2 (en)2005-04-122016-02-02Rochester Medical Corporation, a subsidiary of C.R. Bard, Inc.Male external catheter with absorbent and adhesive
US8864730B2 (en)2005-04-122014-10-21Rochester Medical CorporationSilicone rubber male external catheter with absorbent and adhesive
US10188826B2 (en)2006-09-292019-01-29Covidien LpCatheters including antimicrobial sleeve and methods of making catheters
US20080172011A1 (en)*2006-09-292008-07-17Tyco Healthcare Group LpCatheters including antimicrobial sleeve and methods of making catheters
US9981069B2 (en)2007-06-202018-05-29The Trustees Of Columbia University In The City Of New YorkBio-film resistant surfaces
US9393106B2 (en)2008-08-132016-07-19Allergan, Inc.Soft filled prosthesis shell with discrete fixation surfaces
US11607524B2 (en)2011-03-142023-03-21Rochester Medical CorporationCatheter grip and method
US9707375B2 (en)2011-03-142017-07-18Rochester Medical Corporation, a subsidiary of C. R. Bard, Inc.Catheter grip and method
US10569051B2 (en)2011-03-142020-02-25Rochester Medical Corporation, a subsidiary of C. R. Bard, Inc.Catheter grip and method
US9409009B2 (en)2012-11-072016-08-09The Florida International UniversityMulti-lead multi-electrode management system
US10384057B2 (en)2012-11-072019-08-20The Florida International University Board Of TrusteesMulti-lead multi-electrode management system
US9872969B2 (en)2012-11-202018-01-23Rochester Medical Corporation, a subsidiary of C.R. Bard, Inc.Catheter in bag without additional packaging
US10092728B2 (en)2012-11-202018-10-09Rochester Medical Corporation, a subsidiary of C.R. Bard, Inc.Sheath for securing urinary catheter
US12311120B2 (en)2012-11-202025-05-27Rochester Medical CorporationCatheter in bag without additional packaging
US10780244B2 (en)2012-11-202020-09-22Rochester Medical Corporation, a subsidiary of C. R. Bard, Inc.Catheter in a bag without additional packaging
US11730919B2 (en)2012-11-202023-08-22Rochester Medical CorporationCatheter in bag without additional packaging
US9308351B2 (en)2013-05-282016-04-12Smh Device Corp.Tunneled catheter with hemostasis mechanism
US9067043B2 (en)*2013-05-282015-06-30Smh Device Corp.Tunneled catheter with hemostasis mechanism
US20140358075A1 (en)*2013-05-282014-12-04Smh Device Corp.Tunneled Catheter with Hemostasis Mechanism
US10857324B2 (en)2014-08-262020-12-08C. R. Bard, Inc.Urinary catheter
US10874825B2 (en)2014-08-262020-12-29C. R. Bard, Inc.Urinary catheter
US11850370B2 (en)2014-08-262023-12-26C. R. Bard, Inc.Urinary catheter
US20180168558A1 (en)*2015-01-222018-06-21Debn Sp.Zo.O.Prostate Biopsy Needle
AU2016209742B2 (en)*2015-01-222021-02-04Debn Sp. Z O.O.Prostate biopsy needle
US10660622B2 (en)*2015-01-222020-05-26Debn Sp. Z O.O.Prostate biopsy needle
US11547599B2 (en)2017-09-192023-01-10C. R. Bard, Inc.Urinary catheter bridging device, systems and methods thereof

Also Published As

Publication numberPublication date
NL7113433A (en)1972-04-05
FR2109932A5 (en)1972-05-26
JPS5149157B1 (en)1976-12-24
IT945979B (en)1973-05-10
GB1307055A (en)1973-02-14
DE2149041A1 (en)1972-07-06

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