CN211156500U - Blood vessel support capable of positioning - Google Patents

Blood vessel support capable of positioning Download PDF

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Publication number
CN211156500U
CN211156500U CN201921795817.7U CN201921795817U CN211156500U CN 211156500 U CN211156500 U CN 211156500U CN 201921795817 U CN201921795817 U CN 201921795817U CN 211156500 U CN211156500 U CN 211156500U
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China
Prior art keywords
section
positionable
stent
support
supporting
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CN201921795817.7U
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Chinese (zh)
Inventor
陆信武
叶开创
吴常生
幸白云
葛泉波
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Leo Medical Co ltd
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Shanghai Weiyu Medical Technology Co ltd
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Abstract

The utility model provides a pair of can fix a position vascular support is woven by the silk material and is formed, divide into two sections along can fixing a position vascular support axial, one section is for fixing a position the district section, and another section is for supporting the district section, it has the external diameter to be greater than to fix a position the district section support the part of district section, just fix a position the district section be by the silk material is forming it is a plurality of winds to continue to weave after supporting the district section the petal of the axis hoop equipartition that can fix a position vascular support constitutes. The utility model discloses a location section be provided with do benefit to the accurate location of fixing a position vascular support when releasing, still can avoid the silk material to form most advanced and damage the blood vessel at the tip that can fix a position vascular support.

Description

Blood vessel support capable of positioning
Technical Field
The utility model relates to an interventional therapy apparatus, in particular to a blood vessel support capable of being positioned.
Background
The blood vessel stent is characterized in that on the basis of the expansion and the forming of a lumen saccule, a stent is placed in a lesion section to achieve the purposes of supporting a blood vessel at a stenotic occlusion section, reducing the elastic retraction and the reshaping of the blood vessel and keeping the blood flow of a lumen smooth. Since the first coronary stent operation was successfully carried out by Sigwart et al in the united states by implanting a self-expanding metal bare stent into a patient in 1987, the minimally invasive intracavity treatment technology has made a great progress, and the positionable vascular stent has been widely applied to the treatment of systemic vascular diseases at present.
Diseased vessels at different parts have special pathological structure characteristics, but most of the current stent designs follow the design of arterial stents, and the application has certain limitations. For example, while stent implantation is currently widely used for the treatment of symptomatic venous reflux disorder, the stents used are mostly large-caliber arterial stents. The pathological difference exists between the venous lesion and the arterial lesion, the design of the arterial stent can not meet the requirement of a vein lesion blood vessel, and adverse events such as stent displacement, fracture, secondary thrombus in the stent and the like occur frequently. It is necessary to design a stent which is adaptive to the pathological structure characteristics of a diseased blood vessel.
SUMMERY OF THE UTILITY MODEL
In view of the above shortcomings of the prior art, an object of the present invention is to provide a locatable vascular stent for solving the problem that the prior locatable vascular stent is difficult to be applied to the intervention of venous lesion in the prior art.
In order to achieve the above and other related objects, the present invention provides a positionable vascular stent, the positionable vascular stent is formed by weaving a wire, and is divided into two sections along the axial direction of the positionable vascular stent, one section is a positioning section, the other section is a supporting section, the positioning section has an outer diameter greater than the portion of the supporting section, and the positioning section is formed by the wire continuously weaving a plurality of windings after the supporting section the petals of the circumferential uniform distribution of the axis of the positionable vascular stent are formed.
Preferably, the positioning section is formed by continuously weaving the wire material along the axial forward direction of the supporting section, an included angle is formed between the peripheral surface formed by the petals and the axial forward direction of the positionable vascular stent, and the included angle is 10-90 degrees.
Preferably, the positioning section is formed by continuously weaving the wire materials in the axial direction of the supporting section in the reverse direction, and the included angle between the peripheral surface formed by all the petals and the axial direction of the positionable vascular stent is 90-170 degrees.
Preferably, the length range of the petals along the axial direction of the positionable vessel stent is as follows: one third of the outer diameter of the support section to three times the outer diameter of the support section.
Preferably, along the axial direction of the positionable vessel stent, the supporting section is divided into at least two sections according to the size of the radial supporting force.
Preferably, the support sections are arranged such that sections having a large radial support force alternate with sections having a small radial support force.
Preferably, in the axial direction of the positionable vessel stent, the outer diameter of the support section gradually decreases or increases close to the positioning section.
Preferably, the support section is cylindrical.
Preferably, the wire forms a plurality of consecutive arcs at the end of the support section, all constituting the end boundary of the support section.
As mentioned above, the utility model discloses a can fix a position vascular support has following beneficial effect: the positioning section which is woven into the petal shape is arranged to be beneficial to releasing so that the positionable vascular stent can be accurately positioned, and the end boundary of the petal-shaped positioning section is continuous, so that the wire material is prevented from forming a tip at the end of the positionable vascular stent to damage the blood vessel.
Drawings
Fig. 1 is a schematic view of an embodiment of the positionable vessel stent of the present invention.
Fig. 2 is a schematic view of a positionable vascular stent according to an embodiment of the present invention.
Fig. 3 is a schematic view of an embodiment of the support section of the present invention.
Fig. 4 is a schematic view of another embodiment of the support section of the present invention.
Description of the element reference numerals
1 location section
11 flower petal
2 support section
21 weak supporting section
22 strong supporting section
23 continuous arc
Detailed Description
The following description is provided for illustrative purposes, and other advantages and features of the present invention will become apparent to those skilled in the art from the following detailed description.
Please refer to fig. 1 to 4. It should be understood that the structures, ratios, sizes, etc. shown in the drawings of the present specification are only used for matching with the contents disclosed in the specification, so as to be known and read by those skilled in the art, and are not used for limiting the limit conditions that the present invention can be implemented, so that the present invention has no technical essential meaning, and any modification of the structures, changes of the ratio relationship, or adjustment of the sizes should still fall within the scope covered by the technical contents disclosed in the present invention without affecting the efficacy and the achievable purpose of the present invention. Meanwhile, the terms such as "upper", "lower", "left", "right", "middle" and "one" used in the present specification are for convenience of description, and are not intended to limit the scope of the present invention, and changes or adjustments of the relative relationship thereof may be made without substantial technical changes, and the present invention is also regarded as the scope of the present invention.
For the convenience of description, the support section towards the positioning section is designated in this specification as the forward axial direction of the positionable vessel stent, i.e. the direction of the arrow in fig. 1 and 2 is the forward direction.
As shown in fig. 1 to 4, the utility model provides a can fix a position vascular support is woven in succession by one or more silk materials and is formed, divide into two sections along can fixing a position vascular support axial, one section is location section 1, and another section is support section 2, location section 1 has the external diameter to be greater than support section 2's part, just location section 1 is by the silk material is forming support section 2 is afterwards continued to be woven into a plurality of windings can fix a position the petal 11 constitution of vascular support's axis hoop equipartition. The utility model discloses a can fix a position vascular support is equipped with location district section 1, and its part that has great external diameter, location when being convenient for release, location district section 1 includes a plurality of petal forms in this embodiment, and the petal form is continuous arc form, does not have naked silk material tip promptly, avoids damaging the blood vessel.
Positioning section
As shown in FIG. 1, as a first embodiment of the positioning section 1, the positioning section 1 in this embodiment is formed by continuously weaving a plurality of petals of the wire material in the axial direction of the support section 2. The petals 11 are conveniently positioned when released. In the direction from the supporting section 2 to the positioning section 1, the outer peripheral surface formed by all the petals 12 forms an included angle with the axial direction of the positionable vessel stent, namely an included angle a in the figure, and the included angle a is 10-90 degrees. The number of petals can be 3-30.
As shown in fig. 2, as a second embodiment of the positioning section 1, in this embodiment, the positioning section 1 is formed by continuously weaving the wire material in the axial direction of the supporting section 2, and the outer peripheral surface formed by all the petals 11 forms an included angle b with the axial direction of the positionable vessel stent, and the included angle b is generally 90 ° to 170 °, and preferably an obtuse angle of 110 ° to 170 °. When weaving in this embodiment, make the petal press close to the support section setting, the positioning section 1 of petal form forms barb portion promptly, hangs at the branching mouth of blood vessel through barb portion, the location of being convenient for further. The number of petals can be 3-30.
In the above embodiments, the length of the positioning section 1 in the axial direction of the positionable vessel stent is in the range of: one third of the outer diameter of the support section to three times the outer diameter of the support section, typically 5-50 mm; namely, the length of the petals 12 along the axial direction of the positionable vascular stent is 5-50 mm.
The number of petals in the positioning section 1 and the shape of the petals are not limited to the above, and the petals can be positioned only by forming a part with an outer diameter larger than that of the supporting section.
Support section
In the embodiment, as shown in fig. 2, along the axial direction of the positionable vessel stent, the supporting section 2 is divided into at least two sections according to the magnitude of the radial supporting force, such as a tightly woven strong supporting section 22 and a loosely woven weak supporting section 21.
For example, for non-thrombotic iliac vein compression syndrome, the locatable vascular stent comprises a location section 1, a strong support section 22 and a weak support section 21 in sequence along the axial direction, wherein the length of the strong support section 22 is 10-50 mm so as to resist clamping compression of iliac arteries and lumbar vertebrae to iliac veins, and the length of the weak support section 21 is 30-90 mm.
As shown in fig. 3, in the supporting sections of the present embodiment, the sections with large radial supporting force and the sections with small radial supporting force are alternately arranged, that is, there are multiple sections of strong supporting sections 22 and weak supporting sections 21, and the strong supporting sections 22 and the weak supporting sections 21 are alternately distributed. It can also be distributed in various ways, and the radial supporting force of different strong/weak supporting sections is different.
For PTS, for example, the locatable vessel stent is axially sequentially a locating section, a first strong support section, a weak support section, and a second strong support section. The radial support strength of the strong support section is greater than that of the weak support section, and the strength of the first strong support area is greater than that of the second strong support area.
Typically, the support section is cylindrical with a constant outer diameter, but it may also be of a variable outer diameter, such as conical. As shown in fig. 4, as an embodiment of the supporting section, in the axial direction of the positionable vessel stent, the outer diameter of the supporting section 2 gradually decreases or increases near the positioning section 1, that is, the supporting section 2 of this embodiment is tapered.
Preferably, as shown in fig. 3 and 4, the wire forms a plurality of continuous arcs 23 at the end of the support section 2, all the continuous arcs 23 constituting the end boundaries of the support section 2. When the weaving is carried out through the wire materials, the continuous arc 23 is formed by weaving at the beginning of weaving, so that the end boundary of the support section 2 is in a closed shape instead of the tip of the wire materials, and the smooth end type of the blood vessel stent capable of being positioned is enhanced by the arrangement of the continuous arc 23, and further the damage to the blood vessel is avoided.
The positioning section 1 and the supporting section 2 can be organically combined according to needs to form the positionable vessel stent with different shapes and configurations. The embodiment can better adapt to the physiological structure characteristics of the diseased blood vessel by adjusting the strength of radial force of different axial sections, positioning the structural design of the sections and positioning the overall cylindrical or conical design of the vascular stent. Is especially suitable for the iliac vein lesion.
The iliac vein support that is in the present market a few, its design and artery support are indifferent, all are radial force axial evenly distributed support, but to iliac vein oppression syndrome, its oppression punishment department need have high strength holding power to resist the oppression, thereby maintain the unblocked nature of blood vessel, and the normal blood vessel behind the excessive pressure punishment point, because need not overcome the pulsation unlike the artery support, the holding power of its needs only need be enough to prevent that the support from taking place to shift can, if support intensity too high can lead to breathing cycle in-process, can fix a position the blood vessel support and produce the discomfort to the vascular effort too big and make the patient.
For the sequela of deep venous thrombosis (PTS) of lower limbs, lesions are usually long, a locatable vascular stent needs to cross hip joints, the lesion parts need high radial strength, and the locatable vascular stent at the hip joints needs to have high flexibility. The positionable vascular stent with axially and uniformly distributed radial force is difficult to simultaneously meet different requirements of different vascular parts on strength and flexibility. The support section 2 of the present embodiment has different radial support forces along the axial direction, which can be realized by the density of the weave or by the selection of the material, so as to adapt to the pathological characteristics well.
The material used for the wire in this embodiment may be a metal alloy, such as common nitinol, cobalt-chromium alloy, 316L stainless steel, magnesium alloy, etc., or may be various high molecular polymers, not limited to the above listed materials.
Meanwhile, in order to adapt to the anatomical morphology of the iliac vein opening, the proximal end of the locatable vascular stent of the embodiment is designed with a horn mouth or a corolla-shaped locating structure, namely, the locating section 1 is more beneficial to locating the locatable vascular stent.
All lesion features are similar to those of the blood vessel of the iliac vein lesion, and the design can be applied to the lesion blood vessel with high adaptation, so that the lesion blood vessel has high stability.
The above embodiments are merely illustrative of the principles and effects of the present invention, and are not to be construed as limiting the invention. Modifications and variations can be made to the above-described embodiments by those skilled in the art without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which may be made by those skilled in the art without departing from the spirit and technical spirit of the present invention be covered by the claims of the present invention.

Claims (9)

1. A positionable vascular stent, characterized in that the positionable vascular stent is formed by weaving wires and is divided into two sections along the axial direction of the positionable vascular stent, one section is a positioning section, the other section is a supporting section, the positioning section is provided with a part with an outer diameter larger than that of the supporting section, and the positioning section is formed by continuously weaving the wires into a plurality of petals which are circumferentially and uniformly distributed around the axis of the positionable vascular stent after the supporting section is formed.
2. The positionable vessel stent of claim 1, wherein: the positioning section is formed by continuously weaving the wire materials along the axial forward direction of the supporting section, and the peripheral surface formed by all the petals and the axial forward direction of the positionable vascular stent form an included angle which is 10-90 degrees.
3. The positionable vessel stent of claim 1, wherein: the positioning section is formed by continuously weaving the wire materials in the axial direction of the supporting section in the reverse direction, and the peripheral surface formed by all the petals and the axial direction of the positionable vascular stent form an included angle of 90-170 degrees.
4. The positionable vessel stent of claim 1, wherein: the length range of the petals along the axial direction of the positionable vascular stent is as follows: one third of the outer diameter of the support section to three times the outer diameter of the support section.
5. The positionable vessel stent of claim 1, wherein: along the axial direction of the positionable vessel stent, the supporting section is divided into at least two sections according to the different sizes of radial supporting force.
6. The positionable vessel stent of claim 5, wherein: among the support sections, sections with large radial support force and sections with small radial support force are alternately arranged.
7. The positionable vessel stent of claim 5, wherein: along the axial direction of the positionable vessel stent, the outer diameter of the supporting section gradually decreases or increases close to the positioning section.
8. The positionable vessel stent of claim 5, wherein: the support section is cylindrical.
9. The positionable vessel stent of claim 1, wherein: the wire forms a plurality of consecutive arcs at the end of the support section, all of the consecutive arcs constituting an end boundary of the support section.
CN201921795817.7U 2019-10-24 2019-10-24 Blood vessel support capable of positioning Active CN211156500U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921795817.7U CN211156500U (en) 2019-10-24 2019-10-24 Blood vessel support capable of positioning

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921795817.7U CN211156500U (en) 2019-10-24 2019-10-24 Blood vessel support capable of positioning

Publications (1)

Publication Number Publication Date
CN211156500U true CN211156500U (en) 2020-08-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921795817.7U Active CN211156500U (en) 2019-10-24 2019-10-24 Blood vessel support capable of positioning

Country Status (1)

Country Link
CN (1) CN211156500U (en)

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Effective date of registration: 20240318

Address after: Building 10, No. 23 Huashan Middle Road, Xinbei District, Changzhou City, Jiangsu Province, 213002

Patentee after: LEO MEDICAL CO.,LTD.

Country or region after: China

Address before: Room 108, Building 2, No. 103 Cailun Road, China (Shanghai) Pilot Free Trade Zone, Pudong New Area, Shanghai

Patentee before: SHANGHAI WEIYU MEDICAL TECHNOLOGY CO.,LTD.

Country or region before: China

TR01 Transfer of patent right