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利用多参数超声成像进行尿道组织特征分析。

Urethral tissue characterization using multiparametric ultrasound imaging.

机构信息

Department of Radiology, University of Michigan, Ann Arbor, MI, USA.

Department of Urology, University of Michigan, Ann Arbor, MI, USA.

出版信息

Ultrasonics. 2025 Jan;145:107481. doi: 10.1016/j.ultras.2024.107481. Epub 2024 Sep 26.

Abstract

A decrease in urethral closure pressure is one of the primary causes of stress urinary incontinence in women. Atrophy of the urethral muscles is a primary factor in the 15 % age-related decline in urethral closure pressure per decade. Incontinence not only affects the well-being of women but is also a leading cause of nursing home admission. The objective of this research was to develop a noninvasive test to assess urethral tissue microenvironmental changes using multiparametric ultrasound (mpUS) imaging technique. Transperineal B-scan ultrasound (US) data were captured using clinical scanners equipped with curvilinear or linear transducers. Imaging was performed on volunteers from our institution medical center (n = 15, 22 to 76 y.o.) during Valsalva maneuvers. After expert delineation of the region of interest in each frame, the central axis of the urethra was automatically defined to determine the angle between the urethra and the US beam for further analysis. By integrating angle-dependent backscatter with radiomic texture feature analysis, a mpUS technique was developed to identify biomarkers that reflect subtle microstructural changes expected within the urethral tissue. The process was repeated when the urethra and US beam were at a fixed angle. Texture selection was conducted for both angle-dependent and angle-independent results to remove redundancies. Ultimately, a distinct biomarker was derived using a random forest regression model to compute the urethra score based on features selected from both processes. Angle-dependent backscatter analysis shows that the calculated slope of US mean image intensity decreased by 0.89 (±0.31) % annually, consistent with the expected atrophic disorganization of urethral tissue structure and the associated reduction in urethral closure pressure with age. Additionally, textural analysis performed at a specific angle (i.e., 40 degrees) revealed changes in gray level nonuniformity, skewness, and correlation by 0.08 (±0.04) %, -2.16 (±1.14) %, and -0.32 (±0.35) % per year, respectively. The urethra score was ultimately determined by combining data selected from both angle-dependent and angle-independent analysis strategies using a random forest regression model with age, yielding an R value of 0.96 and a p-value less than 0.001. The proposed mpUS tissue characterization technique not only holds promise for guiding future urethral tissue characterization studies without the need for tissue biopsies or invasive functional testing but also aims to minimize observer-induced variability. By leveraging mpUS imaging strategies that account for angle dependence, it provides more accurate assessments. Notably, the urethra score, calculated from US images that reflect tissue microstructural changes, serves as a potential biomarker providing clinicians with deeper insight into urethral tissue function and may aid in diagnosing and managing related conditions while helping to determine the causes of incontinence.

摘要

尿道闭合压降低是女性压力性尿失禁的主要原因之一。尿道肌肉萎缩是尿道闭合压每 10 年随年龄下降 15%的主要因素。尿失禁不仅影响妇女的健康,也是导致入住养老院的主要原因之一。本研究的目的是开发一种非侵入性测试,使用多参数超声(mpUS)成像技术评估尿道组织微环境变化。使用配备曲线或线性换能器的临床扫描仪采集经会阴 B 型超声(US)数据。在我们机构医疗中心的志愿者(n=15,22 至 76 岁)进行瓦尔萨尔瓦动作期间进行成像。在每个帧中对感兴趣区域进行专家描绘后,自动定义尿道的中心轴以确定尿道与 US 束之间的角度,以便进一步分析。通过将角度依赖性反向散射与放射组学纹理特征分析相结合,开发了一种 mpUS 技术来识别反映尿道组织内预期的细微结构变化的生物标志物。当尿道和 US 束处于固定角度时,重复该过程。对角度依赖性和角度独立性结果进行纹理选择,以消除冗余。最终,使用随机森林回归模型从两个过程中选择的特征计算出基于特征的尿道评分,从而得出一个独特的生物标志物。角度依赖性反向散射分析表明,US 平均图像强度的计算斜率每年降低 0.89(±0.31)%,这与尿道组织结构的预期萎缩失组织和与年龄相关的尿道闭合压降低一致。此外,在特定角度(即 40 度)进行的纹理分析显示,灰度不均匀性、偏度和相关性分别每年变化 0.08(±0.04)%、-2.16(±1.14)%和-0.32(±0.35)%。最终,通过使用随机森林回归模型结合年龄,从角度依赖性和角度独立性分析策略中选择数据来确定尿道评分,得到 R 值为 0.96,p 值小于 0.001。提出的 mpUS 组织特征化技术不仅有望在无需组织活检或侵入性功能测试的情况下指导未来的尿道组织特征化研究,而且还旨在最大程度地减少观察者引起的变异性。通过利用考虑角度依赖性的 mpUS 成像策略,可以提供更准确的评估。值得注意的是,尿道评分是根据反映组织微观结构变化的 US 图像计算得出的,可作为潜在的生物标志物,为临床医生提供对尿道组织功能的更深入了解,并可能有助于诊断和管理相关疾病,同时有助于确定尿失禁的原因。

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