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Accuracy evaluation of a 3D ultrasound-based neuronavigation system

机译:基于3D超声的神经元抗动系统的准确性评估

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We have investigated the 3D navigation accuracy of an ultrasound-based neuronavigation system for surgical planning and intraoperative image guidance. In addition, we present a detailed description and review of the error sources associated with conventional MRI-based and ultrasound-based surgical neuronavigation. A phantom with 27 precisely defined points was scanned with ultrasound by various translation and tilt movements of the ultrasound probe (180 3D scans), and the 27 image points in each volume were located using an automatic detection algorithm. These locations were compared to the physically measured locations of the same 27 points. The accuracy of the neuronavigation system and the effect of varying acquisition conditions, were found through a thorough statistical analysis of the differences between the two point sets. The accuracy was found to be 1.40 +- 0.45 mm (arithmetic mean) for the system in our laboratory setting. Improper probe calibration is the major contribution to this number. Based on our extensive data set and evaluation, we expect the accuracy found in the laboratory setting to be close to the overall clinical setting in ultrasound-based neuronavigation. Our analysis indicates that the overall clinical accuracy may be as low as 2 mm when using intraoperative imaging to eliminate the brain shift.
机译:我们研究了用于外科规划和术中图像引导的超声波神经处理系统的3D导航精度。此外,我们还提供了与传统基于MRI和超声波的外科神经元vigation相关的误差源的详细描述和审查。通过超声波探测(180d 3D扫描)的各种平移和倾斜移动,通过超声波扫描具有27个精确定义点的幻像,并且每个体积中的27个图像点使用自动检测算法定位。将这些位置与相同的27分的物理测量位置进行比较。通过对两点套之间的差异进行彻底统计分析,发现了神经传播系统的准确性和不同采集条件的效果。在我们的实验室设置中,该系统的精度被发现为1.40±0.45 mm(算术平均值)。不正确的探针校准是对此数量的主要贡献。基于我们广泛的数据集和评估,我们预计实验室设定中发现的准确性将接近超声波的神经元vigation中的整体临床环境。我们的分析表明,在使用术中成像以消除脑移位时,整体临床精度可能低至2毫米。

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