首页> 外文期刊>BMC Medical Imaging >Radiation exposure of a mobile 3D C-arm with large flat-panel detector for intraoperative imaging and navigation - an experimental study using an anthropomorphic Alderson phantom
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Radiation exposure of a mobile 3D C-arm with large flat-panel detector for intraoperative imaging and navigation - an experimental study using an anthropomorphic Alderson phantom

机译:具有大型平板探测器的移动3D C形臂的辐射曝光,用于术内成像和导航 - 一种使用拟人的Alderson Phantom的实验研究

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Intraoperative 3-dimensional (3D) navigation is increasingly being used for pedicle screw placement. For this purpose, dedicated mobile 3D C-arms are capable of providing intraoperative fluoroscopy-based 3D image data sets. Modern 3D C-arms have a large field of view, which suggests a higher radiation exposure. In this experimental study we therefore investigate the radiation exposure of a new mobile 3D C-arm with large flat-panel detector to a previously reported device with regular flat-panel detector on an Alderson phantom. We measured the radiation exposure of the Vision RFD 3D (large 30?×?30 cm detector) while creating 3D image sets as well as standard fluoroscopic images of the cervical and lumbar spine using an Alderson phantom. The dosemeter readings were then compared with the radiation exposure of the previous model Vision FD Vario 3D (smaller 20?×?20 cm detector), which had been examined identically in advance and published elsewhere. The larger 3D C-arm induced lower radiation exposures at all dosemeter sites in cervical 3D scans as well as at the sites of eye lenses and thyroid gland in lumbar 3D scans. At ??male and especially female gonads in lumbar 3D scans, however, the larger 3D C-arm showed higher radiation exposures compared with the smaller 3D C-arm. In lumbar fluoroscopic images, the dosemeters near/in the radiation field measured a higher radiation exposure using the larger 3D C-arm. The larger 3D C-arm offers the possibility to reduce radiation exposures for specific applications despite its larger flat-panel detector with a larger field of view. However, due to the considerably higher radiation exposure of the larger 3D C-arm during lumbar 3D scans, the smaller 3D C-arm is to be recommended for short-distance instrumentations (mono- and bilevel) from a radiation protection point of view. The larger 3D C-arm with its enlarged 3D image set might be used for long instrumentations of the lumbar spine. From a radiation protection perspective, the use of the respective 3D C-arm should be based on the presented data and the respective application.
机译:术中三维(3D)导航越来越多地用于椎弓根螺钉放置。为此目的,专用的移动3D C形臂能够提供基于术中的透视基3D图像数据集。现代3D C形臂具有大视野,这表明较高的辐射曝光。在该实验研究中,我们研究了具有大型平板检测器的新移动3D C形臂的辐射暴露于先前报告的具有常规平板探测器上的先前报告的装置。我们测量了视觉RFD 3D(大30?×30cm检测器)的辐射曝光,同时使用Alderson Phantom创建3D图像集以及颈椎和腰椎的标准透视图像。然后将所述剂量表读数与先前模型视觉FD VARIO 3D(较小的20?×20cm检测器)的辐射曝光进行比较,这已经预先检查并在其他地方出版的情况。较大的3D C形臂在颈椎3D扫描中的所有剂量表位点以及腰部3D扫描中的眼镜和甲状腺遗址上诱导较低的辐射曝光。然而,与腰部3D扫描的男性和尤其是女性Gonads,与较小的3D C臂相比,较大的3D C形臂显示出更高的辐射曝光。在腰椎透视图像中,靠近/在辐射场附近的称位仪使用较大的3D C形臂测量更高的辐射曝光。较大的3D C形臂提供了减少特定应用的辐射曝光,尽管其具有较大的平板检测器,具有较大的视野。然而,由于腰部3D扫描期间较大的3D C臂的较高辐射曝光,从辐射保护的观点来看,建议较小的3D C形臂用于短距离仪器(单声道和胆纤维)。具有其放大3D图像集的较大的3D C形臂可用于腰椎的长仪表。从辐射保护的角度来看,各个3D C形臂的使用应该基于所提出的数据和各个应用。

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