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使用振动声学造影和肌肉运动系统对组织模拟体模的弹性特性进行研究。

An examination of the elastic properties of tissue-mimicking phantoms using vibro-acoustography and a muscle motor system.

作者信息

Maccabi A, Taylor Z, Bajwa N, Mallen-St Clair J, St John M, Sung S, Grundfest W, Saddik G

机构信息

Department of Electrical Engineering, University of California, Los Angeles, California 90095, USA.

Center for Advanced Surgical and Interventional Technology, CASIT, Los Angeles, California 90095, USA.

出版信息

Rev Sci Instrum. 2016 Feb;87(2):024903. doi: 10.1063/1.4942049.

Abstract

Tissue hardness, often quantified in terms of elasticity, is an important differentiating criterion for pathological identity and is extensively used by surgeons for tumor localization. Delineation of malignant regions from benign regions is typically performed by visual inspection and palpation. Although practical, this method is highly subjective and does not provide quantitative metrics. We have previously reported on Vibro-Acoustography (VA) for tumor delineation. VA is unique in that it uses the specific, non-linear properties of tumor tissue in response to an amplitude modulated ultrasound beam to generate spatially resolved, high contrast maps of tissue. Although the lateral and axial resolutions (sub-millimeter and sub-centimeter, respectively) of VA have been extensively characterized, the relationship between static stiffness assessment (palpation) and dynamic stiffness characterization (VA) has not been explicitly established. Here we perform a correlative exploration of the static and dynamic properties of tissue-mimicking phantoms, specifically elasticity, using VA and a muscle motor system. Muscle motor systems, commonly used to probe the mechanical properties of materials, provide absolute, quantitative point measurements of the elastic modulus, analogous to Young's modulus, of a target. For phantoms of varying percent-by-weight concentrations, parallel VA and muscle motor studies conducted on 18 phantoms reveal a negative correlation (p < - 0.85) between mean signal amplitude levels observed with VA and calculated elastic modulus values from force vs. indentation depth curves. Comparison of these elasticity measurements may provide additional information to improve tissue modeling, system characterization, as well as offer valuable insights for in vivo applications, specifically surgical extirpation of tumors.

摘要

组织硬度通常根据弹性进行量化,是病理识别的重要区分标准,外科医生广泛用于肿瘤定位。从良性区域勾勒出恶性区域通常通过视觉检查和触诊来进行。虽然这种方法实用,但高度主观且不提供定量指标。我们之前报道过用于肿瘤勾勒的振动声成像(VA)。VA的独特之处在于它利用肿瘤组织响应调幅超声束的特定非线性特性来生成组织的空间分辨高对比度图。虽然VA的横向和轴向分辨率(分别为亚毫米和亚厘米)已得到广泛表征,但静态硬度评估(触诊)与动态硬度表征(VA)之间的关系尚未明确建立。在这里,我们使用VA和肌肉运动系统对组织模拟体模的静态和动态特性,特别是弹性,进行了相关探索。肌肉运动系统通常用于探测材料的力学性能,可提供目标弹性模量(类似于杨氏模量)的绝对定量点测量。对于不同重量百分比浓度的体模,对18个体模进行的平行VA和肌肉运动研究表明,VA观察到的平均信号幅度水平与力-压痕深度曲线计算的弹性模量值之间存在负相关(p < - 0.85)。这些弹性测量的比较可能会提供额外信息,以改进组织建模、系统表征,并为体内应用,特别是肿瘤手术切除提供有价值的见解。

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