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A Preliminary Study on Development of QA System for Stereotactic Head Frame and Its Reliability and Accuracy

机译:立体定向头架质量保证系统的开发及其可靠性和准确性的初步研究

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Stereotactic radiosurgery is considered one of the precisest treatments because of its mechanical fixation of cranium using a stereotactic head frame (SHF). Several studies, however, presented the SHF could be bent and/or displaced due to jostling and/or changing of force/weight to SHF, which might cause significant inaccuracy up to 6 mm in certain circumstances. Nevertheless, to our best knowledge, no clear mechanism of SHF QA has been established. We are under development of a stereo-camera-based QA system for SHF to check its integrity of shape and placement. In this preliminary study, a prototype of camera system was developed and its reliability and accuracy were evaluated. The initial prototype of stereo camera system was developed using two CMOS cameras (with maximum resolution of 2048x1536) and a control computer. The system was designed to measure the 3D coordinates of points from left-right image pair through camera calibration and triangulation. A software program for image reconstruction and control was written using C-language. For reliability test, six image pairs of a fixed circle-pattern were obtained every 5 minutes for 25 minutes. Then, the vector of each circle's center was calculated between the first- and n-th image pair. To evaluate accuracy, sets of image pair for translation and rotation were obtained. Then, differences in translation and rotation from the reference were calculated using singular value decomposition. The camera system showed reliability of within 0.5 mm during 25 minutes. The accuracy was within 1 mm in translation and 1° in rotation. The prototype of stereo camera system developed in this study demonstrated its potential of being applied for SHF QA. The study will be continued for further evaluation and improvement.
机译:立体定向放射外科手术被认为是最精确的治疗方法之一,因为它使用立体定向头架(SHF)对颅骨进行了机械固定。但是,一些研究表明,由于碰撞和/或力/重量对SHF的改变,SHF可能会弯曲和/或移位,这在某些情况下可能会导致最大6 mm的不准确度。然而,据我们所知,尚未建立SHF质量保证的明确机制。我们正在开发用于SHF的基于立体摄像机的质量检查系统,以检查其形状和放置的完整性。在这项初步研究中,开发了相机系统的原型,并评估了其可靠性和准确性。立体摄像头系统的初始原型是使用两个CMOS摄像头(最大分辨率为2048x1536)和一台控制计算机开发的。该系统旨在通过相机校准和三角测量来测量左右图像对中点的3D坐标。使用C语言编写了用于图像重建和控制的软件程序。为了进行可靠性测试,每5分钟获取6个固定圆形图案的图像对,持续25分钟。然后,在第一个和第n个图像对之间计算每个圆心的向量。为了评估准确性,获得了用于平移和旋转的图像对集。然后,使用奇异值分解计算相对于参考的平移和旋转差异。摄像头系统在25分钟内显示出0.5毫米以内的可靠性。平移精度在1 mm以内,旋转精度在1°以内。在这项研究中开发的立体摄像机系统的原型展示了其在SHF QA中的应用潜力。该研究将继续进行,以进行进一步的评估和改进。

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