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Development of a 3D Ultrasound-Guided Prostate Biopsy System

机译:3D超声引导的前列腺活检系统的开发

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Biopsy of the prostate using ultrasound guidance is the clinical gold standard for diagnosis of prostate adenocari-noma. However, because early stage tumors are rarely visible under US, the procedure carries high false-negative rates and often patients require multiple biopsies before cancer is detected. To improve cancer detection, it is imperative that throughout the biopsy procedure, physicians know where they are within the prostate and where they have sampled during prior biopsies. The current biopsy procedure is limited to using only 2D ultrasound images to find and record target biopsy core sample sites. This information leaves ambiguity as the physician tries to interpret the 2D information and apply it to their 3D workspace. We have developed a 3D ultrasound-guided prostate biopsy system that provides 3D intra-biopsy information to physicians for needle guidance and biopsy location recording. The system is designed to conform to the workflow of the current prostate biopsy procedure, making it easier for clinical integration. In this paper, we describe the system design and validate its accuracy by performing an in vitro biopsy procedure on US/CT multi-modal patient-specific prostate phantoms. A clinical sextant biopsy was performed by a urologist on the phantoms and the 3D models of the prostates were generated with volume errors less than 4% and mean boundary errors of less than 1 mm. Using the 3D biopsy system, needles were guided to within 1.36 ± 0.83 mm of 3D targets and the position of the biopsy sites were accurately localized to 1.06 ± 0.89 mm for the two prostates.
机译:使用超声引导的前列腺活检是诊断前列腺腺癌的临床金标准。但是,由于在US下很少见到早期肿瘤,该手术假阴性率很高,并且在检测到癌症之前,患者通常需要进行多次活检。为了改善癌症的检测,在整个活检过程中,医生必须知道它们在前列腺内的位置以及在先前的活检过程中已取样的位置。当前的活检程序仅限于仅使用2D超声图像来查找和记录目标活检核心样本位置。当医生尝试解释2D信息并将其应用到他们的3D工作区时,此信息会产生歧义。我们已经开发了3D超声引导的前列腺活检系统,该系统可为医生提供3D活检信息以进行针引导和活检位置记录。该系统设计为符合当前前列腺活检程序的工作流程,因此更易于临床整合。在本文中,我们描述了系统设计并通过对US / CT多模式患者特定前列腺体模执行活检程序来验证其准确性。泌尿科医师对体模进行了临床六分法活检,并生成了体积误差小于4%,平均边界误差小于1 mm的前列腺3D模型。使用3D活检系统,将针引导到3D目标的1.36±0.83毫米范围内,并且将两个前列腺的活检部位的位置精确定位在1.06±0.89毫米。

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