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Clinical Trial Summary

Using partially absorbed meshes in pelvic reconstructive surgery will involve fewer postoperative complications especially less pain caused by the mesh mass.


Clinical Trial Description

Weakness of pelvic floor support is the cause defects and damage to pelvic organs functioning and urinary control and it has a pretty common occurrence. It was suggested recently that the event is considered a hernia that requires mesh use, which reduces return rates following pelvic floor repair. Mesh use is known to cause complications and unwanted side effects, such as chronic pain, vaginal network exposure and infection. The degree of complications is related directly to the mass of the mesh, and that's why the absorbable meshes were developed.Two months after the surgery with absorbable mesh, the mass left in the patient's body is half of the initial mesh mass and according to our assumption this effect will minimize the extent and intensity of mesh complications compared with conventional ones.

During the study we will examine medical records of women who have had surgery with pelvic floor reconstructive meshes. The cases will be divided according to the mesh type being used.

A polypropylene mesh (single strand and tunneling wide) trade name "Prolift", and similar mesh that contains approximately half of the network mass after being dissolves in two months, a trade name "Prolift +" M.

The number of participants in each group is 120 women. The post-operative follow-up examination will include three points in time. After a month, six months and a year later. In addition to questionnaires in order to quantify the degree of urinary disturbance, pain after surgery and sexual function. ;


Study Design

Observational Model: Case Control, Time Perspective: Cross-Sectional


Related Conditions & MeSH terms


NCT number NCT01645020
Study type Observational
Source Western Galilee Hospital-Nahariya
Contact M Neuman, MD
Phone 972 3 956 3105
Email mneuman@netvision.net.il
Status Recruiting
Phase N/A
Start date August 2008
Completion date June 2013

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