Conformal wall-attached endovascular stent

An internal stent and wall-adhering technology, applied in the field of vascular interventional medical equipment, can solve problems such as bad

Active Publication Date: 2019-10-11
BEIJING UNIV OF TECH
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

In this patent, aiming at the problem of poor apposition of traditional structural stents in stenotic vessels, it is innovatively proposed based on the patient's personalized stenotic vessel lumen model, to construct an initial closed-loop tube network stent with variable cross-section, and to increase

Method used

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  • Conformal wall-attached endovascular stent
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  • Conformal wall-attached endovascular stent

Examples

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Embodiment 1

[0022] Such as figure 2, based on the CT tomographic image of the patient's carotid artery lesion, perform three-dimensional reconstruction of the stenotic vessel, and obtain the patient's carotid artery stenotic vessel model. The process of determining the central axis of the vascular model is to obtain three lumen sections along the length direction of the stenotic vessel model at the upstream and downstream of the stenosis, find the centroid of each irregular section by finding the centroid of the irregular section, and set These centroids are connected in sequence and spline curve fitting is performed to obtain the central axis of the stenotic vessel lumen.

[0023] A traditional tubular network stent with both ends longer than the stenotic segment of the vessel and a closed-loop stent unit was selected as the initial structure of the conformal stent structure design. The cross-section is circular, and adopts the design of variable cross-section. The diameter of each cro...

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Abstract

The invention relates to a conformal wall-attached endovascular stent and involves the field of vascular interventional medical equipment. A CT image is used for reconstructing an individualized vascular stenosis model for a user, and a closed-loop tubular mesh stent is mapped to a vascular wall through a three-dimensional mapping method to obtain a conformal wall-attached stent structure. The diameters of mesh wires of the stent are increased at the narrowest part so as to increase supporting force, and a fluorescent marking point is set on the surface of the stent to ensure positioning and posture correction of the stent. If a processing method combining adhesive jet with selective laser sintering/melting is adopted, model data is directly guided out to a 3D printer for molding; if a processing method of melt extrusion is adopted, a vascular lumen mold with a stent groove structure is constructed prior to 3D printing; if a knitting technology is adopted for stent processing, knittingis carried out along the groove structure of the mold, and then a heat treatment method is used for shaping. The conformal wall-attached endovascular stent adapt to the shapes of individualized vascular stenoses of patients, and can be attached to the inner walls of blood vessels seamlessly and closely to ensure the uniform coverage of the vascular endothelium.

Description

technical field [0001] The invention relates to the field of vascular interventional medical equipment. Specifically, it relates to a structural design of a conformal adhering stent that can be seamlessly attached to the inner wall of a blood vessel that adapts to a patient's personalized stenotic blood vessel model and a processing technology using 3D printing technology. Background technique [0002] At present, stent implantation, as the main way to treat vascular stenosis, is accepted by more and more doctors and patients. Vascular stent, as a tiny tube network structure, is implanted in the stenotic segment of the blood vessel to expand and support the diseased part to ensure the repair and reconstruction of the diseased blood vessel. [0003] Stenotic vascular plaques are mostly thick in the middle and thin at both ends. Therefore, after the stent expands and rebounds in the stenotic blood vessel, there will inevitably be a dog-bone effect with severe rebound in the m...

Claims

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Application Information

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IPC IPC(8): A61F2/915
CPCA61F2/915
Inventor 乔爱科柳思聪彭坤
Owner BEIJING UNIV OF TECH
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