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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Effect of fiducial marker defects on stereotactic target localization in the Leksell stereotactic system.
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Effect of fiducial marker defects on stereotactic target localization in the Leksell stereotactic system.

机译:基准标记缺陷对Leksell立体定位系统中的立体定位目标定位的影响。

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摘要

The stereotactic procedure in neurosurgery is a minimally invasive technique used to treat intracranial lesions. The fiducial markers of a frame-based stereotactic procedure are important for defining the stereotactic coordinate system and in locating the target. These markers are often defective in stereotactic images owing to the presence of air bubbles in the imaging indicator. We have assessed the effect of these defects on the registration of an image and on the localization of a target. The virtual phantom method was employed to simulate various types of defect. The virtual images were registered using the Leksell GammaPlan(R) (LGP) radiosurgery planning system, and the image definition and the target localization errors were assessed. As a result, the effect of the defects was most severe when the majority of the marker disappeared, but not all, especially in the posterior region. The mean and maximum image definition errors were 0.1 and 1.4 mm, which caused the mean target localization error to be 0.2 and 0.0 mm in LGP version 5.34 and 8.3.1, respectively. It is recommended to exclude images with defective fiducial markers during the image definition procedure to minimize subsequent errors, though the newest version of LGP (version 8.3.1) corrects localization errors.
机译:神经外科手术中的立体定向手术是用于治疗颅内病变的微创技术。基于帧的立体定向过程的基准标记对于定义立体定向坐标系和定位目标非常重要。由于成像指示器中存在气泡,因此这些标记在立体定向图像中通常是有缺陷的。我们已经评估了这些缺陷对图像配准和目标定位的影响。虚拟幻影方法被用来模拟各种类型的缺陷。使用Leksell GammaPlan?(LGP)放射外科计划系统注册虚拟图像,并评估图像定义和目标定位误差。结果,当大多数标记物消失而不是全部消失时,缺陷的影响最为严重,尤其是在后部区域。平均和最大图像清晰度误差为0.1和1.4毫米,这导致LGP版本5.34和8.3.1中的平均目标定位误差分别为0.2和0.0毫米。尽管在最新版本的LGP(版本8.3.1)中纠正了定位错误,但建议在图像定义过程中排除基准标记有缺陷的图像,以最大程度地减少后续错误。

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