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Transbronchial needle aspiration with a new electromagnetically-tracked TBNA needle

机译:用新的电磁跟踪的TBNA针头横刻针吸附

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Transbronchial needle aspiration (TBNA) is a common method used to collect tissue for diagnosis of different chest diseases and for staging lung cancer, but the procedure has technical limitations. These limitations are mostly related to the difficulty of accurately placing the biopsy needles into the target mass. Currently, pulmonologists plan TBNA by examining a number of Computed Tomography (CT) scan slices before the operation. Then, they manipulate the bronchoscope down the respiratory track and blindly direct the biopsy. Thus, the biopsy success rate is low. The diagnostic yield of TBNA is approximately 70 percent.To enhance the accuracy of TBNA, we developed a TBNA needle with a tip position that can be electromagnetically tracked. The needle was used to estimate the bronchoscope's tip position and enable the creation of corresponding virtual bronchoscopic images from a preoperative CT scan. The TBNA needle was made with a flexible catheter embedding Wang Transbronchial Histology Needle and a sensor tracked by electromagnetic field generator. We used Aurora system for electromagnetic tracking.We also constructed an image-guided research prototype system incorporating the needle and providing a user-friendly interface to assist the pulmonologist in targeting lesions. To test the feasibility of the accuracy of the newly developed electromagnetically-tracked needle, a phantom study was conducted in the interventional suite at Georgetown University Hospital. Five TBNA simulations with a custom-made phantom with a bronchial tree were performed. The experimental results show that our device has potential to enhance the accuracy of TBNA.
机译:支气管针吸活检(TBNA)是用于收集组织用于不同胸部疾病的诊断和肺癌分期的常用方法,但该过程具有技术限制。这些限制主要涉及到的精确放置活检针进入目标质量的难度。目前,呼吸科通过检查一些计算机断层扫描(CT)在手术前扫描切片的规划滨海新区。然后,他们操纵支气管镜上下呼吸道和盲目直接活检。因此,活检成功率较低。 TBNA的诊断率约为70 percent.To提高TBNA的准确性,我们开发了具有可电磁跟踪的尖端位置的TBNA针。针被用来估计支气管镜的前端部的位置和使从术前CT扫描对应的虚拟支气管镜图像的创建。滨海新区针用软性导管嵌入王经支气管针组织学和电磁场发生器跟踪传感器制成。我们使用极光系统电磁tracking.We还建造结合了针,并提供友好的用户界面,以协助胸腔靶向病灶图像引导的研究原型系统。为了测试新开发的电磁跟踪针的精确度的可行性,一个影像学在乔治敦大学医院介入套件中进行。进行五个滨海新区的模拟与支气管树定制的幻影。实验结果表明,我们的设备有潜力,提升滨海新区的准确性。

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