Publications by authors named "L Cattani"

Introduction And Hypothesis: Pregnancy and childbirth predispose to pelvic floor dysfunction (PFD), coinciding with functional and anatomical changes in the pelvic floor. To some extent, these can be assessed by transperineal ultrasound (TPUS), yet the correlation between ultrasound findings and symptoms has not been well elucidated. We hypothesised that pregnant women with PFD would show different findings at TPUS.

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Objectives: To assess the feasibility of acquiring adequate transperineal ultrasound (TPUS) volumes of the anal sphincter (AS) immediately after vaginal birth, the reproducibility of its measurements, and detecting defects therein.

Methods: Secondary analysis of TPUS volumes of the AS, acquired immediately after vaginal birth with a transversely oriented convex probe. Two independent experts ranked off-line image quality as "inadequate," "adequate," or "ideal" using the Point-of-Care Ultrasound Image Quality scale.

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Objective: To determine the prevalence of pelvic floor dysfunction (PFD) among pregnant women, their clustering and their association with body image disturbance (BID) up to 1 year postpartum.

Design: Monocentric prospective cohort study.

Setting: University Hospitals Leuven.

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Introduction And Hypothesis: In the case of recurrent apical prolapse following laparoscopic sacrocolpopexy (LSCP), one may consider a "redo" procedure. We hypothesized that redo LSCP may carry an increased complication risk and less favorable outcomes when compared with primary procedures.

Methods: This is a single-center, matched case-control (1:4) study, comparing all 39 women who had a redo LSCP and 156 women who had a primary LSCP for symptomatic apical prolapse between 2002 and 2020 with a minimum follow-up of 12 months.

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The aim of this study was to quantify the force exerted by tandem archwires in a specific system of passive self-ligating bracket. Forty-eight thermo-activated nickel-titanium orthodontic archwires were separated into four groups (n = 12): G1 - two .014" + .

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