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US20020092583A1 - Medical devices, particularly stents, and methods for their manufacture - Google Patents

Medical devices, particularly stents, and methods for their manufacture
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Publication number
US20020092583A1
US20020092583A1US09/760,595US76059501AUS2002092583A1US 20020092583 A1US20020092583 A1US 20020092583A1US 76059501 AUS76059501 AUS 76059501AUS 2002092583 A1US2002092583 A1US 2002092583A1
Authority
US
United States
Prior art keywords
alloy
treatment
component
stent
surface region
Prior art date
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.)
Abandoned
Application number
US09/760,595
Inventor
Alan Pelton
Christine Trepanier
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nitinol Development Corp
Original Assignee
Nitinol Development Corp
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Nitinol Development CorpfiledCriticalNitinol Development Corp
Priority to US09/760,595priorityCriticalpatent/US20020092583A1/en
Assigned to NITINOL DEVELOPMENT CORPORATIONreassignmentNITINOL DEVELOPMENT CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: PELTON, ALAN R., TREPANIER, CHRISTINE
Priority to CA002367790Aprioritypatent/CA2367790A1/en
Priority to AU10200/02Aprioritypatent/AU1020002A/en
Priority to EP02250311Aprioritypatent/EP1222901A3/en
Publication of US20020092583A1publicationCriticalpatent/US20020092583A1/en
Priority to US10/683,377prioritypatent/US20040117001A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A medical device which includes a component formed from an alloy which contains at least about 40% Ni by weight. The alloy in a 10 nm deep surface region of the component contains not more than about 10% Ni by weight. The Ni content in that surface region can be reduced by polishing and oxidizing treatment such as (a) exposure to superheated steam, or (b) immersion in a chemical solution, or (c) an electrochemical treatment, using the device as the anode in a solution bath with a current running therethrough.

Description

Claims (19)

What is claimed is:
1. A medical device which includes a component formed from an alloy which contains at least about 40% Ni by weight, the device having a 10 nm deep surface region of containing not more than about 5% Ni by weight.
2. A device as claimed inclaim 1, in which the alloy in the said surface region contains not more than about 3% Ni.
3. A device as claimed inclaim 1, in which the alloy has been subjected to polishing and oxidizing treatment on said surface region.
4. A device as claimed inclaim 3, in which the said polishing treatment comprises an electrochemical or mechanical treatment.
5. A device as claimed inclaim 3, in which the said oxidizing treatment comprises at the steps of exposure to superheated steam, a chemical treatment and an electrochemical treatment.
6. A device as claimed inclaim 1, in which the alloy is a Ni—Ti based alloy.
7. The device ofclaim 5, in which the said electrochemical oxidizing treatment comprises anodizing in a acidic, neutral or basic solution.
8. A device as claimed inclaim 1, in which the device has been treated so that it exhibits superelastic properties.
9. A device as claimed inclaim 1, in which the alloy contains at least about 48% Ni by weight.
10. A device as claimed inclaim 9, in which the alloy contains at least about 50% Ni by weight.
11. A device as claimed inclaim 1, in the form of a stent.
12. A method of making a medical device comprising a component formed from an alloy which contains nickel, which includes the step of exposing the component in a surface region thereof to a treatment which causes the Ni content of the alloy in that region to be reduced compared with that in the remainder of the component.
13. The method ofclaim 12 wherein said device is a stent.
14. A method as claimed inclaim 12, in which the component is exposed to superheated steam.
15. A method as claimed inclaim 14, in which the component is exposed to steam for at least about 3 hours.
16. A method as claimed inclaim 14, in which the steam is heated to at least about 120° C.
17. A method as claimed inclaim 13, in which the said treatment comprises a chemical treatment, in which the device is immersed in an acidic, neutral or basic chemical solution bath.
18. A method as claimed inclaim 17, in which the said treatment comprises a chemical treatment, in which the device is immersed for at least about 0.5 hour.
19. A method as claimed inclaim 12, in which the said treatment comprises an electrochemical treatment, in which the device is included in an electrochemical system as an anode in a solution bath with current running therethrough.
US09/760,5952001-01-162001-01-16Medical devices, particularly stents, and methods for their manufactureAbandonedUS20020092583A1 (en)

Priority Applications (5)

Application NumberPriority DateFiling DateTitle
US09/760,595US20020092583A1 (en)2001-01-162001-01-16Medical devices, particularly stents, and methods for their manufacture
CA002367790ACA2367790A1 (en)2001-01-162002-01-15Medical devices, particularly stents and methods for their manufacture
AU10200/02AAU1020002A (en)2001-01-162002-01-16Medical devices, particularly stents, and methods for their manufacture
EP02250311AEP1222901A3 (en)2001-01-162002-01-16Medical devices and methods for their manufacture
US10/683,377US20040117001A1 (en)2001-01-162003-10-10Medical devices, particularly stents, and methods for their manufacture

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US09/760,595US20020092583A1 (en)2001-01-162001-01-16Medical devices, particularly stents, and methods for their manufacture

Related Child Applications (1)

Application NumberTitlePriority DateFiling Date
US10/683,377Continuation-In-PartUS20040117001A1 (en)2001-01-162003-10-10Medical devices, particularly stents, and methods for their manufacture

Publications (1)

Publication NumberPublication Date
US20020092583A1true US20020092583A1 (en)2002-07-18

Family

ID=25059578

Family Applications (1)

Application NumberTitlePriority DateFiling Date
US09/760,595AbandonedUS20020092583A1 (en)2001-01-162001-01-16Medical devices, particularly stents, and methods for their manufacture

Country Status (4)

CountryLink
US (1)US20020092583A1 (en)
EP (1)EP1222901A3 (en)
AU (1)AU1020002A (en)
CA (1)CA2367790A1 (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20050098444A1 (en)*2003-11-122005-05-12Schaeffer Darin G.Electropolishing apparatus and method for medical implants
US20080082154A1 (en)*2006-09-282008-04-03Cook IncorporatedStent Graft Delivery System for Accurate Deployment
US10106908B1 (en)*2017-04-102018-10-23Ryszard RokickiNitinol fatigue resistance using electropolishing, magnetoelectropolishing, anodizing and magnetoanodizing or combinations thereof under oxygen evolution regime

Families Citing this family (27)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US7402173B2 (en)2000-09-182008-07-22Boston Scientific Scimed, Inc.Metal stent with surface layer of noble metal oxide and method of fabrication
US7101391B2 (en)2000-09-182006-09-05Inflow Dynamics Inc.Primarily niobium stent
US20040117001A1 (en)*2001-01-162004-06-17Pelton Alan R.Medical devices, particularly stents, and methods for their manufacture
WO2003002243A2 (en)2001-06-272003-01-09Remon Medical Technologies Ltd.Method and device for electrochemical formation of therapeutic species in vivo
US7488343B2 (en)2003-09-162009-02-10Boston Scientific Scimed, Inc.Medical devices
US8137397B2 (en)2004-02-262012-03-20Boston Scientific Scimed, Inc.Medical devices
ES2251312B1 (en)*2004-10-042007-07-01Universitat Politecnica De Catalunya NEW TREATMENT OF OXIDATION IN ALLOYS OF NITI FOR THE DECREASE OF THE RELEASE OF IONS NI AND THE IMPROVEMENT OF BIOCOMPATIBILITY.
US8840660B2 (en)2006-01-052014-09-23Boston Scientific Scimed, Inc.Bioerodible endoprostheses and methods of making the same
US8089029B2 (en)2006-02-012012-01-03Boston Scientific Scimed, Inc.Bioabsorbable metal medical device and method of manufacture
US8048150B2 (en)2006-04-122011-11-01Boston Scientific Scimed, Inc.Endoprosthesis having a fiber meshwork disposed thereon
EP2054537A2 (en)2006-08-022009-05-06Boston Scientific Scimed, Inc.Endoprosthesis with three-dimensional disintegration control
WO2008034047A2 (en)2006-09-152008-03-20Boston Scientific LimitedEndoprosthesis with adjustable surface features
WO2008034066A1 (en)2006-09-152008-03-20Boston Scientific LimitedBioerodible endoprostheses and methods of making the same
JP2010503489A (en)2006-09-152010-02-04ボストン サイエンティフィック リミテッド Biodegradable endoprosthesis and method for producing the same
EP2959925B1 (en)2006-09-152018-08-29Boston Scientific LimitedMedical devices and methods of making the same
ES2357661T3 (en)2006-09-152011-04-28Boston Scientific Scimed, Inc. BIOEROSIONABLE ENDOPROOTHESIS WITH BIOESTABLE INORGANIC LAYERS.
WO2008036548A2 (en)2006-09-182008-03-27Boston Scientific LimitedEndoprostheses
ES2506144T3 (en)2006-12-282014-10-13Boston Scientific Limited Bioerodible endoprosthesis and their manufacturing procedure
US8052745B2 (en)2007-09-132011-11-08Boston Scientific Scimed, Inc.Endoprosthesis
US7998192B2 (en)2008-05-092011-08-16Boston Scientific Scimed, Inc.Endoprostheses
US8236046B2 (en)2008-06-102012-08-07Boston Scientific Scimed, Inc.Bioerodible endoprosthesis
US7985252B2 (en)2008-07-302011-07-26Boston Scientific Scimed, Inc.Bioerodible endoprosthesis
US8382824B2 (en)2008-10-032013-02-26Boston Scientific Scimed, Inc.Medical implant having NANO-crystal grains with barrier layers of metal nitrides or fluorides
EP2403546A2 (en)2009-03-022012-01-11Boston Scientific Scimed, Inc.Self-buffering medical implants
US8668732B2 (en)2010-03-232014-03-11Boston Scientific Scimed, Inc.Surface treated bioerodible metal endoprostheses
CN104884681B (en)*2012-12-032018-05-25加利福尼亚大学董事会 Devices, systems and methods for coating surfaces
CN113042975B (en)*2021-03-082023-07-28沛县盛玛特新材料研究院有限公司Treatment method for improving surface quality of medical metal stent and medical metal stent

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US3617360A (en)*1968-11-291971-11-02Gen ElectricHigh temperature metallic diffusion coating and method
US4148699A (en)*1976-07-201979-04-10Heritage Silversmiths LimitedElectropolishing of stainless steel
US4612061A (en)*1984-03-151986-09-16Kabushiki Kaisha ToshibaMethod of manufacturing picture tube shadow mask
US4774150A (en)*1986-03-071988-09-27Kabushiki Kaisha ToshibaThermal barrier coating
US4799127A (en)*1986-07-291989-01-17Tdk CorporationSemiconductive ceramic composition and semiconductor ceramic capacitor
US5277788A (en)*1990-10-011994-01-11Aluminum Company Of AmericaTwice-anodized aluminum article having an organo-phosphorus monolayer and process for making the article
US5630887A (en)*1995-02-131997-05-20Novacor Chemicals Ltd.Treatment of furnace tubes

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CN1076763C (en)*1998-09-092001-12-26北京航空航天大学In-situ preparing of insulating film on surface of marmem

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* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3617360A (en)*1968-11-291971-11-02Gen ElectricHigh temperature metallic diffusion coating and method
US4148699A (en)*1976-07-201979-04-10Heritage Silversmiths LimitedElectropolishing of stainless steel
US4612061A (en)*1984-03-151986-09-16Kabushiki Kaisha ToshibaMethod of manufacturing picture tube shadow mask
US4774150A (en)*1986-03-071988-09-27Kabushiki Kaisha ToshibaThermal barrier coating
US4799127A (en)*1986-07-291989-01-17Tdk CorporationSemiconductive ceramic composition and semiconductor ceramic capacitor
US4854936A (en)*1986-07-291989-08-08Tdk CorporationSemiconductive ceramic composition and semiconductive ceramic capacitor
US5277788A (en)*1990-10-011994-01-11Aluminum Company Of AmericaTwice-anodized aluminum article having an organo-phosphorus monolayer and process for making the article
US5630887A (en)*1995-02-131997-05-20Novacor Chemicals Ltd.Treatment of furnace tubes

Cited By (10)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20050098444A1 (en)*2003-11-122005-05-12Schaeffer Darin G.Electropolishing apparatus and method for medical implants
US7252746B2 (en)2003-11-122007-08-07Cook IncorporatedElectropolishing apparatus and method for medical implants
US20070209929A1 (en)*2003-11-122007-09-13Cook IncorporatedElectropolishing apparatus and method for medical implants
US20100181206A1 (en)*2003-11-122010-07-22Cook IncorporatedMethod of electropolishing medical implants
US7799201B2 (en)2003-11-122010-09-21Cook IncorporatedMethod of electropolishing medical implants
US7799183B2 (en)2003-11-122010-09-21Cook IncorporatedElectropolishing apparatus and method for medical implants
US20080082154A1 (en)*2006-09-282008-04-03Cook IncorporatedStent Graft Delivery System for Accurate Deployment
US20080082159A1 (en)*2006-09-282008-04-03Cook IncorporatedStent for Endovascular Procedures
US20080082158A1 (en)*2006-09-282008-04-03Cook IncorporatedMethod for Deployment of a Stent Graft
US10106908B1 (en)*2017-04-102018-10-23Ryszard RokickiNitinol fatigue resistance using electropolishing, magnetoelectropolishing, anodizing and magnetoanodizing or combinations thereof under oxygen evolution regime

Also Published As

Publication numberPublication date
AU1020002A (en)2002-07-18
EP1222901A2 (en)2002-07-17
EP1222901A3 (en)2002-07-24
CA2367790A1 (en)2002-07-16

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Legal Events

DateCodeTitleDescription
ASAssignment

Owner name:NITINOL DEVELOPMENT CORPORATION, CALIFORNIA

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:PELTON, ALAN R.;TREPANIER, CHRISTINE;REEL/FRAME:011826/0486

Effective date:20010511

STCBInformation on status: application discontinuation

Free format text:ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION


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