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首页> 外文期刊>Journal of applied clinical medical physics / >Utilization of optical tracking to assess efficacy of intracranial immobilization techniques in proton therapy
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Utilization of optical tracking to assess efficacy of intracranial immobilization techniques in proton therapy

机译:利用光学跟踪评估颅内固定技术在质子治疗中的功效

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摘要

We present a quantitative methodology to measure head interfraction movements within intracranial masks of commercial immobilization devices used for proton radiotherapy. A three-points tracking (3PtTrack) method was developed to measure the mask location for each treatment field over an average of 10 fractions for seven patients. Five patients were treated in supine with the Qfix Base-of-Skull (BoS) headframe, and two patients were treated in prone with the CIVCO Uni-frame baseplate. Patients were first localized by an in-room, image-guidance (IG) system, and then the mask location was measured using the 3PtTrack method. Measured mask displacements from initial location at the first fraction are considered equivalent to the head interfraction movement within the mask. The trends of head movements and couch displacements and rotation were analyzed in three major directions. The accuracy of 3PtTrack method was shown to be within 1.0 mm based on daily measurements of a QA device after localization by the IG system for a period of three months. For seven patients, mean values of standard deviation (SD) in anterior–posterior, lateral, and superior–inferior directions were 1.1 mm, 1.4 mm, and 1.6 mm for head movements, and were 1.4 mm, 1.8 mm, and 3.4 mm for couch displacements. The mean SD values of couch rotations were 1.1°, 0.9°, and 1.1° for yaw, pitch, and roll, respectively. The overall patterns of head movements and couch displacements were similar for patients treated in either supine or prone, with larger deviations in the superior–inferior (SI) direction. A suboptimal mask fixation to the frame of the mask to the H&N frame is likely the cause for the observed larger head movements and couch displacements in the SI direction compared to other directions. The optical-tracking methodology provided a quantitative assessment of the magnitude of head motion.PACS number: 87.55.km
机译:我们提出了一种定量的方法来测量用于质子放射治疗的商业固定设备的颅内面罩内的头间质运动。开发了一种三点跟踪(3PtTrack)方法,可以测量7位患者平均每个10级治疗区域的面罩位置。 5例患者使用Qfix颅底(BoS)头枕仰卧位治疗,2例患者使用CIVCO Uni-frame底板俯卧位治疗。首先通过室内图像引导(IG)系统对患者进行定位,然后使用3PtTrack方法测量面罩的位置。从第一位置的初始位置测量的遮罩位移被认为等同于遮罩内的头部屈光运动。从三个主要方向分析了头部运动,卧榻移位和旋转的趋势。根据IG系统定位三个月后对QA设备的每日测量结果,显示3PtTrack方法的精度在1.0毫米以内。对于7例患者,前后移动的标准偏差(SD)的平均值,头部运动分别为1.1 mm,1.4 mm和1.6 mm,头部运动分别为1.4 mm,1.8 mm和3.4 mm沙发位移。横摆,俯仰和横摇的沙发旋转的平均SD值分别为1.1°,0.9°和1.1°。仰卧位或俯卧位患者的头部运动和床位移位的总体模式均相似,上下(SI)方向偏差较大。与其他方向相比,将面罩框架固定在H&N框架上的效果不理想,可能是导致在SI方向观察到较大的头部移动和卧榻位移的原因。光学跟踪方法提供了对头部运动幅度的定量评估.PACS数:87.55.km

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