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Ultrasound Viscoelastic Imaging of Breast Lesions: A Practical Hybrid Freehand Technique for Data Acquisition

机译:乳房病变的超声粘弹性成像:一种用于数据采集的实用混合手足技术

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Ultrasound imaging of the breast is a standard method in breast cancer screening, along with mammography. The viscoelastic properties of soft tissue can provide supplementary information for radiologist to consider in their assessment of pathology and tissue characterization. Measuring these properties generally entails acquiring a time sequence of ultrasound images and calculating parametric data from it. As images are necessarily accumulated over time, acquisition is limited by the frame rate and memory capacity of the ultrasound machine, and practical considerations such as movement from the clinicians hands and patient breathing. This paper describes a technique for hybrid-freehand imaging of viscoelasticity (HYFIVE). It involves acquiring a time sequence of images making use of a simple purpose built canister enclosure for the ultrasound probe which allows for a stable and accurate manipulation of applied forces, without the need of motors, sensors or other sophisticated and costly parts. A sequence of ultrasound strain images was computed and a first order Kelvin-Voigt tissue model fit to the resulting strain vs. time curves to obtain parametric data related to tissue stiffness and viscosity. Experiments were conducted on both gelatin phantoms and clinical patient data.
机译:乳房的超声成像是乳腺癌筛选中的标准方法,以及乳腺X线摄影。软组织的粘弹性能够为放射科医生提供补充信息,以考虑对病理学和组织特征的评估。测量这些属性通常需要从中获取超声图像的时间序列并从中计算参数数据。随着时间的推移必须累积图像,获取受超声波机器的帧速率和存储容量的限制,以及诸如从临床医生手和患者呼吸的运动的实际考虑因素。本文介绍了一种用于粘弹性(杂志)的混合手动成像技术。它涉及获取使用用于超声探头的简单目的的图像的时间序列,其允许稳定和准确地操纵应用的力,而无需电动机,传感器或其他复杂和昂贵的部件。计算了一系列超声菌株图像,并且第一阶Kelvin-Voigt组织模型适合得到的菌株与时间曲线,以获得与组织刚度和粘度相关的参数数据。在明胶幽灵和临床患者数据上进行实验。

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