IP Library › Granted Patent US 11,504,220
Granted Patent B2
US 11,504,220 · App. 17/284,731 · Granted Nov 22, 2022

Ligature delivery system for axial fixation of pelvic floor structures in pelvic organ prolapse and stress urinary incontinence repair

Inventors: Dmitrii Dmitrievich Shkarupa (Saint-Petersburg, RU); Valeriy Anatolievich Zhukovskiy (Saint-Petersburg, RU); Tatiana Sergeevna Filipenko (Saint-Petersburg, RU); Aleksandra Nikitichna Zhukovskaya (Saint-Petersburg, RU); Andrei Sergeevich Shulgin (Saint-Petersburg, RU); Nikita Dmitrievich Kubin (Saint-Petersburg, RU); Gleb Valerevich Kovalev (Saint-Petersburg, RU)
Assignee: LIMITED LIABILITY COMPANY “LINTEX”
A61F2/0063A61F2002/0068A61F2210/0004
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Quick Facts
Patent No.
US 11,504,220
App. No.
17/284,731
Granted
Nov 22, 2022
Kind
B2
Abstract

The invention relates to medicine, in particular, to gynecology and urology, namely, to for ligature delivery system for axial fixation of pelvic floor structures in pelvic organ prolapse and stress urinary incontinence. Ligature delivery system for axial fixation of pelvic floor structures in pelvic organ prolapse and stress urinary incontinence consisting of the mesh material that is woven from a non-biodegradable and biodegradable monofilament threads, according to the invention so that non-biodegradable threads are arranged along to the implant axis and are not linked with each other. The technical effect is providing the axial support that is physiological for apical structures of pelvic floor and minimizing risks of mesh-associated postsurgical complications.

Claims (6)

1. An implantable mesh for axial fixation of pelvic floor structures in pelvic organ prolapse and stress urinary incontinence, comprising:

a plurality of non-biodegradable monofilament threads; and

a plurality of biodegradable monofilament threads interknitted with the plurality of non-biodegradable monofilament threads;

wherein each of the plurality of biodegradable monofilament threads is arranged in both an axial direction and a cross-axial direction of the implantable mesh, and each of the plurality of non-biodegradable monofilament threads is arranged in the axial direction of the implantable mesh;

wherein the plurality of non-biodegradable monofilament threads comprises non-biodegradable monofilament threads that are not linked with each other; and

wherein each of the plurality of non-biodegradable threads is made of polypropylene and has a diameter of 0.06-0.12 mm, and each of the plurality of biodegradable threads is made of polydioxanone and has a diameter of 0.125-0.135 mm.

Priority Claims (1)
RU RU2020118060 · Jun 2, 2020 · national
Continuity (1)
Related Publication 20220183813A1 · Jun 16, 2022