Suppr超能文献

良性前列腺增生症尿道流场特性的数值研究。

Numerical investigation of urethra flow characteristics in benign prostatic hyperplasia.

机构信息

PKG Design Team, Test& System Package (TSP), Samsung Electronics, Gyeonggi-do 18448, Republic of Korea.

Department of Urology, Chung-Ang University, Seoul 06974, Republic of Korea; Biomedical Research Institute, Chung-Ang University Hospital, Seoul 06973, Republic of Korea.

出版信息

Comput Methods Programs Biomed. 2022 Sep;224:106978. doi: 10.1016/j.cmpb.2022.106978. Epub 2022 Jun 27.

Abstract

BACKGROUND AND OBJECTIVE

Conventional practice includes a limited depiction of urethral pressure and flows based on fragmented gross clinical observations. However, with technological advancements in simulations, computational fluid dynamics (CFD) can provide an alternative approach to predict the bladder pressure with a concordant quantitative flow field in the urethra. Thus, this study aims to comprehensively analyze the urine flow characteristics in various urethra models using simulations.

METHODS

Three-dimensional urethra models were constructed for seven specific subjects based on clinical radiographs. Simulations with Reynolds averaged Navier-Stokes model were performed to quantitatively investigate the urine flow under various volume flow rate of voided urine.

RESULTS

Under benign prostatic hyperplasia, the spindle shape of the prostatic urethra (PRU) generates wake flow. The wake flow was also observed in several regions downstream of the PRU, depending on the urethra shape. This wake flow resulted in total pressure loss and urinary tract dysfunction. When comparing pre- and post-operative urethra models, the bladder pressure decreased by 14.98% in P04 and 4.67% in P06. Thus, we identified variability between surgical results of patients. The bladder pressure according to the volume flow rate of voided urine was investigated using simulations and the theoretical consideration based on hydrodynamics. In theoretical consideration, the bladder pressure was expressed as a second-order polynomial for volume flow rate. These results concur with the simulation results.

CONCLUSION

Numerical simulation can describe the urine flow field in the urethra, providing the possibility to predict the bladder pressure without requiring painful, invasive interventions, such as cystoscopy. Furthermore, effective treatments to improve urination function can be formulated to be patient-specific, by detecting causes and problem regions based on quantitative analysis and predicting post-surgical outcomes.

摘要

背景与目的

传统的实践包括基于零散的大体临床观察对尿道压力和流动进行有限的描述。然而,随着模拟技术的进步,计算流体动力学(CFD)可以提供一种替代方法,通过在尿道中产生一致的定量流场来预测膀胱压力。因此,本研究旨在通过模拟全面分析各种尿道模型中的尿液流动特性。

方法

根据临床射线照片为七个特定对象构建三维尿道模型。使用雷诺平均纳维-斯托克斯模型进行模拟,以定量研究在不同排空尿液体积流量下的尿液流动。

结果

在良性前列腺增生下,前列腺尿道(PRU)的纺锤形产生尾流。尾流也在 PRU 下游的几个区域观察到,这取决于尿道的形状。这种尾流导致总压损失和尿路功能障碍。在比较术前和术后尿道模型时,P04 中的膀胱压力降低了 14.98%,P06 中的膀胱压力降低了 4.67%。因此,我们确定了患者手术结果之间的可变性。通过模拟和基于流体动力学的理论考虑研究了根据排空尿液体积流量的膀胱压力。在理论考虑中,膀胱压力被表示为体积流量的二次多项式。这些结果与模拟结果一致。

结论

数值模拟可以描述尿道中的尿液流动场,有可能在不需要痛苦、侵入性干预(如膀胱镜检查)的情况下预测膀胱压力。此外,通过基于定量分析检测病因和问题区域,并预测术后结果,可以为患者制定特定的有效治疗方案,以改善排尿功能。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验