Urethral pressure response patterns induced by squeeze in continent and incontinent women
Author:
Publisher
Springer Science and Business Media LLC
Subject
Urology,Obstetrics and Gynaecology
Link
http://link.springer.com/content/pdf/10.1007/s00192-006-0284-6.pdf
Reference19 articles.
1. Thor KB, Donatucci C (2004) Central nervous system control of the lower urinary tract: new pharmacological approaches to stress urinary incontinence in women. J Urol 172(1):27–33
2. Schaer GN, Koechli OR, Schuessler B, Haller U (1997) Can simultaneously perineal sonography and urethrocystometry help explain urethral pressure variations? Neurourol Urodyn 16:31–38
3. Creed KE, Van der Werf B (2001) The innervation and properties of the urethral striated muscle. Scand J Urol Nephrol Suppl 207:8–11
4. Mayer R, Wells TJ, Brink CA, Clark P (1994) Correlations between dynamic urethral profilometry and perivaginal muscle activity. Neurourol Urodyn 13:227–235
5. Petros P, Ulmsten U (1995) Urethral pressure increase on effort originates from within the urethra, and continence from musculovaginal closure. Neurourol Urodyn 14:337–350
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1. Variables affecting maximum urethral closure pressure (MUCP) and abdominal leak point pressure (ALPP) measurements;International Urogynecology Journal;2017-04-20
2. Biomechanical Environment of the Pelvic Floor;Biomechanics of the Female Pelvic Floor;2016
3. Nonsurgical Treatment of Urinary Incontinence in Elderly Women;Clinics in Geriatric Medicine;2015-11
4. Influence of voluntary pelvic floor muscle contraction and pelvic floor muscle training on urethral closure pressures: a systematic literature review;International Urogynecology Journal;2015-09-25
5. The role of pelvic and perineal striated muscles in urethral function during micturition in female rabbits;Neurourology and Urodynamics;2013-05-01
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