Modelling of Soft Connective Tissues to Investigate Female Pelvic Floor Dysfunctions

被引:21
作者
Bhattarai, Aroj [1 ]
Staat, Manfred [1 ]
机构
[1] Aachen Univ Appl Sci, Inst Bioengn, Biomech Lab, D-52428 Julich, Germany
关键词
BLADDER NECK MOBILITY; STRESS URINARY-INCONTINENCE; FINITE-ELEMENT MODEL; MECHANICAL-PROPERTIES; UTEROSACRAL LIGAMENT; COLLAGEN; WOMEN; SUPPORT; WALL; SIMULATION;
D O I
10.1155/2018/9518076
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
After menopause, decreased levels of estrogen and progesterone remodel the collagen of the soft tissues thereby reducing their stiffness. Stress urinary incontinence is associated with involuntary urine leakage due to pathological movement of the pelvic organs resulting from lax suspension system, fasciae, and ligaments. This study compares the changes in the orientation and position of the female pelvic organs due to weakened fasciae, ligaments, and their combined laxity. A mixture theory weighted by respective volume fraction of elastin-collagen fibre compound (5%), adipose tissue (85%), and smoothmuscle (5%) is adopted to characterize the mechanical behaviour of the fascia. The load carrying response (other than the functional response to the pelvic organs) of each fascia component, pelvic organs, muscles, and ligaments are assumed to be isotropic, hyperelastic, and incompressible. Finite element simulations are conducted during Valsalva manoeuvre with weakened tissues modelled by reduced tissue stiffness. A significant dislocation of the urethrovesical junction is observed due toweakness of the fascia (13.89 mm) compared to the ligaments (5.47 mm). The dynamics of the pelvic floor observed in this study during Valsalva manoeuvre is associated with urethral-bladder hypermobility, greater levator plate angulation, and positive Q-tip test which are observed in incontinent females.
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页数:16
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