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首页> 外文期刊>Biomedical Engineering: Applications, Basis and Communications >CREATION OF CLINICALLY-DIFFERENTIAL TUMOR MIMIC MODEL USING VASELINE-BASED MATERIALS WITH BARIUM SULFATE FOR THE VALIDATION OF REAL-TIME ULTRASOUND IMAGE-GUIDED LIVER BIOPSY SYSTEM
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CREATION OF CLINICALLY-DIFFERENTIAL TUMOR MIMIC MODEL USING VASELINE-BASED MATERIALS WITH BARIUM SULFATE FOR THE VALIDATION OF REAL-TIME ULTRASOUND IMAGE-GUIDED LIVER BIOPSY SYSTEM

机译:基于凡士林的材料与硫酸钡创建临床差异性肿瘤模拟模型以验证实时超声引导的肝活检系统

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摘要

Testing objects are important for the validation of developing biopsy systems. Unfortunately, they are very hard to obtain. Motivated by this issue, the purpose of this study is to develop a technique for the easy creation of a model to simulate tumors of different sizes inside porcine livers, which could be used for ultrasound image-guided liver biopsy amongst other applications, and evaluate its performance by comparing to the more widely-used approaches in-vivo and ex-vivo. In this study, a Vaseline-based tumor model, and a more widely-used agar-based tumor model to provide comparison with the proposed method were created and injected into porcine livers as biopsy targets. The clinician located simulated tumors using real-time 2D imaging under the guidance of a robotic arm to delivery the biopsy in ex-vivo and in-vivo experiments. The results show that the optimum tumor model was created from a mixture of Vaseline, glycerol, and barium sulfate which can be easily produced and injected. All Vaseline-based simulated tumors were of solid, palpable mass on gross examination, and ultrasound imaging revealed clearly visible lesions. The clinician successfully performed ultrasound image guided liver biopsy in all the trials (10/10) in the ex-vivo experiment, and 2 out of 3 trials (2/3) in the in-vivo experiment on this optimum tumor model. We described a novel technique of creating solid liver tumor models that can be used for ultrasound image-guided liver biopsy.
机译:测试对象对于开发活检系统的验证很重要。不幸的是,它们很难获得。受此问题的影响,本研究的目的是开发一种易于创建模型的技术,该模型可模拟猪肝脏内部不同大小的肿瘤,该模型可用于超声图像引导的肝活检以及其他应用。与更广泛使用的体内和体外方法进行比较在这项研究中,创建了一个基于凡士林的肿瘤模型,以及一个与该方法进行比较的更广泛使用的基于琼脂的肿瘤模型,并将其作为活检目标注入猪肝。临床医生在机械臂的指导下使用实时2D成像来定位模拟肿瘤,以便在离体和体内实验中进行活检。结果表明,最佳的肿瘤模型是由凡士林,甘油和硫酸钡的混合物制成的,可以容易地产生和注射。所有以凡士林为基础的模拟肿瘤在大体检查时均为实心可触及的肿块,并且超声成像显示清晰可见的病变。在此最佳肿瘤模型上,临床医生在所有实验(10/10)的体内试验中成功进行了超声图像引导的肝活检,在体内实验的3个试验(2/3)中成功进行了2次。我们描述了一种创建实体肝肿瘤模型的新技术,该模型可用于超声图像引导的肝活检。

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