Biolab, Department of Electronics and Telecommunications, Politecnico di Torino, Turin, Italy.
Unit of Endocrinology, Department of Medical Specialties, Azienda Ospedaliero-Universitaria of Modena, Ospedale Civile of Baggiovara, Modena, Italy.
Andrology. 2022 Mar;10(3):505-517. doi: 10.1111/andr.13131. Epub 2021 Dec 9.
The connection between testicular ultrasound (US) parameters and testicular function, including both spermato- and steroidogenesis has been largely suggested, but their predictive properties are not routinely applied. Radiomics, a new engineering approach to radiological imaging, could overcome the visual limit of the sonographer.
This study is aimed at extracting objective testicular US features, correlating with testicular function, including both spermato- and steroidogenesis, using an engineering approach, in order to overcome the operator-dependent subjectivity.
Prospective observational pilot study from December 2019 to December 2020 on normozoospermic subjects and patients with semen variables alterations, excluding azoospermia. All patients underwent conventional semen analysis, pituitary-gonadal hormones assessment, and testicular US, performed by the same operator. US images were analyzed by Biolab (Turin) throughout image segmentation, image pre-processing, and texture features extraction.
One hundred seventy US testicular images were collected from 85 patients (age 38.6 ± 9.1 years). A total of 44 first-order and advanced features were extracted. US inhomogeneity defined by radiomics significantly correlates with the andrologist definition, showing for the first time a mathematical quantification of a subjective US evaluation. Thirteen US texture features correlated with semen parameters, predicting sperm concentration, total sperm number, progressive motility, total motility and morphology, and with gonadotropins serum levels, but not with total testosterone serum levels. Classification analyses confirmed that US textural features predicted patients' classification according to semen parameters alterations.
Radiomics texture features qualitatively describe the testicular parenchyma with objective and reliable quantitative parameters, reflecting both the testicular spermatogenic capability and the action of pituitary gonadotropins. This is an innovative model in which US texture features represent a mirror of the pituitary-gonadal homeostasis in terms of reproductive function.
睾丸超声(US)参数与精子发生和类固醇生成功能之间的关系已被广泛提出,但它们的预测性能尚未常规应用。放射组学是一种新的放射成像工程方法,可以克服超声医师的视觉限制。
本研究旨在采用工程方法提取与精子发生和类固醇生成功能相关的客观睾丸 US 特征,以克服操作人员依赖性的主观性。
这是一项 2019 年 12 月至 2020 年 12 月期间进行的前瞻性观察性试点研究,纳入了正常精子的受试者和精液变量改变的患者(排除无精子症)。所有患者均由同一位操作人员进行常规精液分析、垂体-性腺激素评估和睾丸 US。Biolab(都灵)公司通过图像分割、图像预处理和纹理特征提取对 US 图像进行分析。
从 85 名患者中收集了 170 个睾丸 US 图像(年龄 38.6±9.1 岁)。共提取了 44 个一阶和高级特征。放射组学定义的 US 不均匀性与泌尿科医师的定义显著相关,首次对主观 US 评估进行了数学量化。13 个 US 纹理特征与精液参数相关,可预测精子浓度、总精子数、前向运动精子比例、总活力和形态以及促性腺激素血清水平,但与总睾酮血清水平无关。分类分析证实,US 纹理特征可预测患者根据精液参数改变的分类。
放射组学纹理特征以客观、可靠的定量参数定性描述睾丸实质,反映睾丸生精能力和垂体促性腺激素的作用。这是一种创新模型,其中 US 纹理特征代表了生殖功能方面垂体-性腺内稳态的反映。