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US20010044649A1 - Stents for angioplasty - Google Patents

Stents for angioplasty
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Publication number
US20010044649A1
US20010044649A1US09/410,303US41030399AUS2001044649A1US 20010044649 A1US20010044649 A1US 20010044649A1US 41030399 AUS41030399 AUS 41030399AUS 2001044649 A1US2001044649 A1US 2001044649A1
Authority
US
United States
Prior art keywords
segment
stent
annular
segments
bridge elements
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.)
Granted
Application number
US09/410,303
Other versions
US6451049B2 (en
Inventor
Franco Vallana
Giovanni Rolando
Maria Curcio
Paolo Gaschino
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.)
CID SpA
Original Assignee
Sorin Biomedica Cardio SpA
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
Priority claimed from US09/069,425external-prioritypatent/US6325821B1/en
Application filed by Sorin Biomedica Cardio SpAfiledCriticalSorin Biomedica Cardio SpA
Priority to US09/410,303priorityCriticalpatent/US6451049B2/en
Assigned to SORIN BIOMEDICA CARDIO S.P.A.reassignmentSORIN BIOMEDICA CARDIO S.P.A.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: CURCIO, MARIA, Gashino, Paolo, ROLANDO, GIOVANNI, VALLANA, FRANCO
Priority to AT00120834Tprioritypatent/ATE343355T1/en
Priority to EP00120834Aprioritypatent/EP1088528B1/en
Priority to DK00120834Tprioritypatent/DK1088528T3/en
Priority to ES00120834Tprioritypatent/ES2274758T3/en
Priority to DE60031490Tprioritypatent/DE60031490T2/en
Publication of US20010044649A1publicationCriticalpatent/US20010044649A1/en
Priority to US10/159,969prioritypatent/US7273494B2/en
Publication of US6451049B2publicationCriticalpatent/US6451049B2/en
Application grantedgrantedCritical
Priority to US11/860,805prioritypatent/US20080288048A1/en
Assigned to SORIN BIOMEDICA CARDIO S.R.L.reassignmentSORIN BIOMEDICA CARDIO S.R.L.CHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: SORIN BIOMEDICA CARDIO S.P.A.
Assigned to INTERVASCULAR C.V.reassignmentINTERVASCULAR C.V.EXCERPTED ASSET PURCHASE AGREEMENTAssignors: SORIN BIOMEDICA CARDIO S.R.L.
Assigned to INTERVASCULAR C.V.reassignmentINTERVASCULAR C.V.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: SORIN BIOMEDICA CARDIO S.R.L.
Priority to US12/793,341prioritypatent/US20100241216A1/en
Assigned to CID S.P.A.reassignmentCID S.P.A.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: INTERVASCULAR C.V.
Anticipated expirationlegal-statusCritical
Expired - Lifetimelegal-statusCriticalCurrent

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Abstract

This invention is a stent having a substantially tubular body defining a longitudinal axis comprising first and second adjacent annular segments, each segment defining a substantially sinusoidal shape having a plurality of peaks and valleys, the peaks of the first segment extending toward the second segment and being aligned longitudinally with the valleys of the second segment. The stent has a plurality of bridge elements having a U-shaped portion between first and second connector arms, the first connector arm of one bridge element being connected between a first peak and a first valley of the first segment and the second connector arm being connected between a first peak and a first valley of the second segment in a manner such that the U-shaped portion extends in the direction of the first peak of the first segment and the first valley of the second segment. The bridge elements may be connected to the segments at points spaced 360° apart along the sinusoidal shape of the segments. The segments and bridge elements are configured such that when compression, flexure, and torsion forces are applied to the stent they generate first maximum stress regions, second maximum stress regions and third maximum stress regions which do not overlap.

Description

Claims (12)

What is claimed is:
1. A stent having a substantially tubular body defining a longitudinal axis comprising:
first and second adjacent annular segments, each segment defining a substantially sinusoidal shape having a plurality of peaks and valleys, the peaks of the first segment extending toward the second segment and being aligned longitudinally with the valleys of the second segment;
a plurality of bridge elements having a U-shaped portion between first and second connector arms, the first connector arm of one bridge element being connected between a first peak and a first valley of the first segment and the second connector arm being connected between a first peak and a first valley of the second segment in a manner such that the U-shaped portion extends in the direction of the first peak of the first segment and the first valley of the second segment.
2. The stent of
claim 1
wherein the U-shaped portions of the plurality of bridge elements are oriented in the same direction.
3. The stent of
claim 1
further comprising a third annular segment connected to the second annular segment by a plurality of bridge elements, wherein the U-shaped portion of the plurality of bridge elements is oriented in one direction between the first and second annular segments and in the opposite direction between the second and third annular segments.
4. The stent of
claim 1
wherein the connector arm of the bridge element joins the annular segment at a zero point of the sinusoidal shape.
5. The stent of
claim 4
wherein each connector arm joins each annular segment at a zero point of the sinusoidal shape.
6. The stent of
claim 1
further comprising a third annular segment connected by bridge elements to the second annual segment, wherein the bridge elements join zero points separated by 360° between the first and second adjacent segments, and further wherein the bridge elements join zero points separated by 720° between the second and third adjacent segments.
7. A method of preventing restenosis in a vessel comprising:
providing a stent having a substantially tubular body defining a longitudinal axis, the stent comprising first and second adjacent annular segments, each segment defining a substantially sinusoidal shape having a plurality of peaks and valleys, the peaks of the first segment extending toward the second segment and being aligned longitudinally with the valleys of the second segment, a plurality of bridge elements having a U-shaped portion between first and second connector arms, the first connector arm of one bridge element being connected between a first peak and a first valley of the first segment and the second connector arm being connected between a first peak and a first valley of the second segment in a manner such that the U-shaped portion extends in the direction of the first peak of the first segment and the first valley of the second segment;
advancing the tubular body in the contracted condition through the lumen of the vessel to an area of stenosis; and
deploying the tubular body within the lumen of the vessel by expanding the tubular body from the contracted to the expanded condition.
8. A method of making a stent comprising:
providing a tubular blank defining a longitudinal axis; and
forming the blank into first and second adjacent annular segments connected by a plurality of bridge elements, each segment defining a substantially sinusoidal shape having a plurality of peaks and valleys, the peaks of the first segment extending toward the second segment and being aligned longitudinally with the valleys of the second segment, the plurality of bridge elements having a U-shaped portion between first and second connector arms, the first connector arm of one bridge element being connected between a first peak and a first valley of the first segment and the second connector arm being connected between a first peak and a first valley of the second segment in a manner such that the U-shaped portion extends in the direction of the first peak of the first segment and the first valley of the second segment.
9. The method of
claim 8
wherein the forming step is by a method selected from one of laser incision, photo-incision, and electroerosion.
10. A stent having a substantially tubular body defining a longitudinal axis comprising:
first and second adjacent annular segments, each segment having a substantially sinusoidal wave shape;
first and second bridge elements, the first bridge element having a first end connected to the first annular segment at a zero point of the sinusoidal wave shape and having a second end connected to the second annular segment at a zero point of the sinusoidal wave shape, the second bridge element having a first end connected to the first annular segment at a zero point of the sinusoidal wave shape spaced 360° from the connection of the first bridge element to the first annular segment and a second end connected to the second annular segment at a zero point of the sinusoidal wave shape spaced 360° from the connection of the first bridge element to the second segment, the first and second bridge elements and the portion of the first and second annular segments between the connection points of the bridge elements together defining a cell.
11. A stent having a substantially tubular body defining a longitudinal axis comprising:
a plurality of annular segments, each segment having a substatially sinusoidal wave shape;
a plurality of bridge elements, each bridge element having a first end connected to one annular segment at a zero point of the sinusoidal wave shape and a second end connected to an annular segment adjacent to the one annular segment at a zero point of the sinusoidal wave shape of the adjacent annular segment, the annular segments and bridge elements being configured such that when compression, flexure and torsion forces are applied to the stent they generate first maximum stress regions, second maximum stress regions, and third maximum stress regions, where the first, second, and third maximum stress regions do not overlap.
12. The stent of
claim 11
wherein each bridge element includes a U-shaped portion between first and second connector arms and wherein the first maximum stress regions are located about the peaks and valleys of the annular segments, the second maximum stress regions are located about the apex of the U-shaped portion of the bridge element and the third maximum stress regions are located about the points of connection of the bridge elements and annular segments.
US09/410,3031997-04-291999-10-01Stents for angioplastyExpired - LifetimeUS6451049B2 (en)

Priority Applications (9)

Application NumberPriority DateFiling DateTitle
US09/410,303US6451049B2 (en)1998-04-291999-10-01Stents for angioplasty
AT00120834TATE343355T1 (en)1999-10-012000-09-25 STENTS FOR ANGIOPLASTY
EP00120834AEP1088528B1 (en)1999-10-012000-09-25Stents for angioplasty
DK00120834TDK1088528T3 (en)1999-10-012000-09-25 Stents for angioplasty
ES00120834TES2274758T3 (en)1999-10-012000-09-25 STENTS FOR ANGIOPLASTIA.
DE60031490TDE60031490T2 (en)1999-10-012000-09-25 Stents for angioplasty
US10/159,969US7273494B2 (en)1997-04-292002-05-31Stents for angioplasty
US11/860,805US20080288048A1 (en)1997-04-292007-09-25Stents for angioplasty
US12/793,341US20100241216A1 (en)1997-04-292010-06-03Stents for angioplasty

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US09/069,425US6325821B1 (en)1997-04-291998-04-29Stent for angioplasty
US09/410,303US6451049B2 (en)1998-04-291999-10-01Stents for angioplasty

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
US09/069,425Continuation-In-PartUS6325821B1 (en)1997-04-291998-04-29Stent for angioplasty

Related Child Applications (1)

Application NumberTitlePriority DateFiling Date
US10/159,969ContinuationUS7273494B2 (en)1997-04-292002-05-31Stents for angioplasty

Publications (2)

Publication NumberPublication Date
US20010044649A1true US20010044649A1 (en)2001-11-22
US6451049B2 US6451049B2 (en)2002-09-17

Family

ID=23624143

Family Applications (2)

Application NumberTitlePriority DateFiling Date
US09/410,303Expired - LifetimeUS6451049B2 (en)1997-04-291999-10-01Stents for angioplasty
US10/159,969Expired - LifetimeUS7273494B2 (en)1997-04-292002-05-31Stents for angioplasty

Family Applications After (1)

Application NumberTitlePriority DateFiling Date
US10/159,969Expired - LifetimeUS7273494B2 (en)1997-04-292002-05-31Stents for angioplasty

Country Status (6)

CountryLink
US (2)US6451049B2 (en)
EP (1)EP1088528B1 (en)
AT (1)ATE343355T1 (en)
DE (1)DE60031490T2 (en)
DK (1)DK1088528T3 (en)
ES (1)ES2274758T3 (en)

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ATE343355T1 (en)2006-11-15

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