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Validation of online cardiac 3-D localization using isocenter-based biplane radiography and instrumental rotational image alignment

机译:验证在线心脏3-D定位使用基于等中心点的双翼X射线照相术和仪器旋转图像对准

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The present study determined the accuracy of biplane radiographic 3-D localization using primary instrumental instead of secondary computational image correction or geomagnetic image rotation. Mechanical adjustment of the alignment coils in both TV cameras was performed to compensate for geomagnetic image rotation in the preferred RAO and LAO views. Forty-nine points of a centimeter grid imaged in 14 common biplane projections were located from image pairs without (cine images) and with (video images) instrumental image alignment. The localization error of computed 3-D coordinates relative to a reference point was calculated. Radiographic 3-D localization provided an overall absolute localization error of 1.08/spl plusmn/0.47 mm and 0.61/spl plusmn/0.32 mm without and with instrumental alignment, respectively. Instrumental rotation improves localization accuracy markedly and may obviate interactive computational correction during online 3-D localization.
机译:本研究确定了使用初级仪器代替二次计算图像校正或地磁图像旋转的双平面射线照相3-D定位的准确性。执行两个电视摄像机中的对准线圈的机械调节,以补偿优选的RAO和老挝视图中的地磁图像旋转。在14个常见的双普通突起中成像的四十九个点从图像对没有(电影图像)和(视频图像)仪器图像对齐。计算计算的3-D坐标的定位误差相对于参考点。射线照相3-D定位提供了1.08 / SPL PLUCM / 0.47 mm和0.61 / SPL PLUSMN / 0.32 mm的总体绝对定位误差,分别没有和仪器对齐。仪器旋转显着提高了本地化精度,并且可以在在线3-D本地化期间避免交互式计算校正。

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