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Vibro-acoustography with 1.75D ultrasound array transducer for detection and localization of permanent prostate brachytherapy seeds: ex vivo study

机译:Vibro-Acoustraphy,具有1.75D超声阵列换能器,用于常规前列腺近辐射治疗种子的检测和定位:离体研究

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Effective brachytherapy procedures require precise placement of radioactive seeds in the prostate. Currently, transrectal ultrasound (TRUS) imaging is one of the main intraoperative imaging modalities to assist physicians in placement of brachytherapy seeds. However, the seed detection rate with TRUS is poor mainly because ultrasound imaging is highly sensitive to variations in seed orientation. The purpose of this study is to investigate the abilities of a new acoustic radiation force imaging modality, vibro-acoustography (VA), equipped with a 1.75D array transducer and implemented on a customized clinical ultrasound scanner, to image and localize brachytherapy seeds in prostatic tissue. To perform experiments, excised cadaver prostate specimens were implanted with dummy brachytherapy seeds, and embedded in tissue mimicking gel to simulate the properties of the surrounding soft tissues. The samples were scanned using the VA system and the resulting VA signals were used to reconstruct VA images at several depths inside the tissue. To further evaluate the performance of VA in detecting seeds, X-ray computed tomography (CT) images of the same tissue sample, were obtained and used as a gold-standard to compare the number of seeds detected by the two methods. Our results indicate that VA is capable of imaging of brachytherapy seeds with accuracy and high contrast, and can detect a large percentage of the seeds implanted within the tissue samples.
机译:有效的近距离放射治疗程序需要精确放置前列腺放射性种子。目前,经委托超声(TRUS)成像是主要的术中成像方式之一,以帮助医生在放置近距离放射治疗种子。然而,具有Trus的种子检测率差主要是因为超声成像对种子取向的变化非常敏感。本研究的目的是研究新的声辐射力成像模型,vibro-声学(Va)的能力,配备有1.75d阵列换能器,并在定制的临床超声扫描仪上实现,以在前列腺中的图像和本地化近距离放射治疗种子组织。为了进行实验,将切除的尸体前列腺标本植入伪近距离放射治疗种子,并嵌入组织模拟凝胶中以模拟周围软组织的性质。使用VA系统扫描样品,并使用得到的VA信号在组织内部的几个深度重建VA图像。为了进一步评估VA在检测种子中的性能,获得相同组织样品的X射线计算断层扫描(CT)图像,并用作金标准,以比较两种方法检测到的种子的数量。我们的结果表明,VA能够以准确性和高对比度成像近距离放射治疗种子,并且可以检测植入组织样品内的大百分比种子。

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