Kirby Anna C, Tan-Kim Jasmine, Nager Charles W
Department of Obstetrics and Gynecology, Division of Urogynecology, University of Washington Medical Center, 1959 NE Pacific St, Box 356460, Seattle, WA, 98195, USA,
Int Urogynecol J. 2015 Feb;26(2):299-300. doi: 10.1007/s00192-014-2540-5. Epub 2014 Nov 4.
This video introduces a 3D high-resolution manometry (HRM) system to the field of urogynecology. We demonstrate how to obtain and interpret dynamic urethral pressures with this measurement system and use it to evaluate pre- and postoperative women.
The 3D HRM catheter is ∼12 F; 11 cm of its length has pressure sensors with eight circumferentially distributed pressure-sensitive segments that collect and transmit individual pressure measurements to construct a 3D pressure map. In this video, we demonstrate the output display of the 3D HRM measurement system.
Pressure output maps are shown for one woman with stress urinary incontinence (SUI) and one with a history of SUI who underwent successful midurethral sling insertion. We also show a summary of 3D pressure-measurement patterns of 44 women who underwent pressure measurements to evaluate qualitatively the 3D pressure profile of the urethra in an effort to better understand pelvic floor and urethral sphincter physiology.
Advanced HRM technology to measure urethral pressures under cough and strain conditions without withdrawal techniques provides new insights into the continence mechanism in continent and incontinent women and after continence surgeries.
本视频将三维高分辨率测压(HRM)系统引入尿妇科领域。我们展示了如何使用该测量系统获取和解读动态尿道压力,并将其用于评估术前和术后的女性患者。
三维HRM导管约为12F;其11厘米长的部分带有压力传感器,这些传感器有八个沿圆周分布的压敏段,可收集并传输各个压力测量值以构建三维压力图。在本视频中,我们展示了三维HRM测量系统的输出显示。
展示了一名压力性尿失禁(SUI)女性患者以及一名有SUI病史且成功接受尿道中段吊带植入术的女性患者的压力输出图。我们还展示了44名接受压力测量的女性患者的三维压力测量模式总结,旨在定性评估尿道的三维压力分布,以便更好地理解盆底和尿道括约肌的生理机能。
先进的HRM技术可在不采用回撤技术的情况下测量咳嗽和用力时的尿道压力,为了解控尿女性和尿失禁女性以及尿失禁手术后的控尿机制提供了新的见解。