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首页> 外文期刊>Respiration: International Review of Thoracic Diseases >Electromagnetic navigation during flexible bronchoscopy.
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Electromagnetic navigation during flexible bronchoscopy.

机译:柔性支气管镜检查期间的电磁导航。

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BACKGROUND: Flexible bronchoscopy is routinely utilized in the diagnosis and treatment of various lung diseases. Nondiagnostic bronchoscopy leads to more invasive interventions, such as transthoracic needle aspiration, mediastinoscopy or even thoracotomy. Electromagnetic navigation is a novel technology that facilitates approaching peripheral lung lesions, which are difficult to sample by conventional means. The navigation system involves creating an electromagnetic field around the chest and localizing an endoscopic tool using a microsensor overlaid upon previously acquired CT images. OBJECTIVES: To determine the practicality, accuracy and safety of real-time electromagnetic navigation, coupled with previously acquired 3D CT images, in locating artificially created peripheral lung lesions in a swine model. METHODS: Peripheral lung lesions were created in four swine models by insertion of a metal tube (1 x 10 mm) via a transthoracic approach. An electromagnetic field was created by placing the animal on an electromagnetic location board. A position sensor incorporated into the distal tip of a dedicated tool was used to navigate to the various target lesions. Information gathered in real time during bronchoscopy was presented on a monitor simultaneously by displaying previously acquired CT images. Upon reaching the target lesion, biopsies were performed and the functionality and safety of the superDimension/Bronchus System was observed and documented. RESULTS: The registration accuracy expressed by the fiducial target registration error, expressing both the registration quality and the stability of fiducial (registration) points, was 4.5 mm on average. No adverse effects, such as pneumothorax or internal bleeding, were encountered in any of the animals in this study. CONCLUSIONS: Real-time electromagnetic positioning technology coupled with previously acquired CT images is an accurate technology added to standard bronchoscopy to assist in reaching peripheral lung lesions and performing biopsies.
机译:背景:柔性支气管镜检查通常用于各种肺部疾病的诊断和治疗。非诊断性支气管镜检查导致更具侵入性的干预,例如经胸针穿刺,纵隔镜检查甚至开胸手术。电磁导航是一种新颖的技术,有助于接近周围的肺部病变,而这些病变很难通过常规方式进行采样。导航系统包括在胸部周围产生电磁场,并使用覆盖在先前获取的CT图像上的微传感器定位内窥镜工具。目的:确定实时电磁导航与先前获取的3D CT图像相结合的可行性,准确性和安全性,以在猪模型中定位人工创建的周围肺部病变。方法:通过经胸腔入路插入一根金属管(1 x 10 mm),在四个猪模型中产生了周围肺部病变。通过将动物放在电磁定位板上创建电磁场。并入专用工具远端的位置传感器用于导航至各种目标病变。通过显示先前获取的CT图像,可以在监视器上同时显示在支气管镜检查过程中实时收集的信息。到达目标病灶后,进行活检,并观察并记录了SuperDimension / Bronchus系统的功能和安全性。结果:由基准目标配准误差表示的配准精度平均为4.5 mm,表示配准质量和基准(配准)点的稳定性。在这项研究中的任何动物中都没有遇到气胸或内出血等不良反应。结论:实时电磁定位技术与先前获取的CT图像相结合是一种精确的技术,已添加到标准支气管镜检查中,以帮助到达周围肺部病变并进行活检。

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