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A Minimally Invasive Multimodality Image-Guided (MIMIG) Molecular Imaging System for Peripheral Lung Cancer Intervention and Diagnosis

机译:用于外周肺癌干预和诊断的微创多模态图像引导(MIMIG)分子成像系统

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The once-promising computed tomography (CT) lung cancer screening appears to result in high false positive rates. To tackle the common difficulties in diagnosing small lung cancer at an early stage, we developed a minimally invasive multimodality image-guided (MIMIG) interventional system for early detection and treatment of peripheral lung cancer. The system consists of new CT image segmentation for surgical planning, intervention guidance for targeting, and molecular imaging for diagnosis. Using advanced image segmentation technique the pulmonary vessels, airways, as well as nodules can be better visualized for surgical planning. These segmented results are then transformed onto the intra-procedural CT for interventional guidance using electromagnetic (EM) tracking. Diagnosis can be achieved at microscopic resolution using a fiber-optic microendoscopy. The system can also be used for fine needle aspiration biopsy to improve the accuracy and efficiency. Confirmed cancer could then be treated on-the-spot using radio-frequency ablation (RFA). The experiments on rabbits with VX2 lung cancer model show both accuracy and efficiency in localization and detecting lung cancer, as well as promising molecular imaging tumor detection.
机译:曾经有前途的计算机断层扫描(CT)肺癌筛查似乎导致高误率。为了在早期阶段诊断小肺癌的常见困难,我们开发了一种微创的多层型图像引导(MIMIG)介入系统,用于早期检测和治疗外周肺癌。该系统由新的CT图像分段组成用于外科计划,靶向干预指导以及诊断的分子成像。使用先进的图像分割技术,可以更好地可视化肺部血管,呼吸道以及结节以用于手术规划。然后使用电磁(EM)跟踪将这些分段结果转化到程序内CT上进行介入引导。可以使用光纤微型镜检查在微观分辨率下实现诊断。该系统还可用于细针穿刺活检,以提高精度和效率。然后可以使用射频消融(RFA)在现场对确诊的癌症进行处理。具有Vx2肺癌模型的兔的实验表明了本地化和检测肺癌的准确性和效率,以及有前途的分子成像肿瘤检测。

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