Composite cone-beam filtered backprojection algorithm based on nutating line

来源 :Optoelectronics Letters | 被引量 : 0次 | 上传用户:BalloonMan_Again
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The FDK algorithm is the most popular cone beam algorithm in the medical and industrial imaging field.Due to data insufficiency acquired from a circular trajectory,the images reconstructed by the FDK algorithm suffer from the intensity droping with increasing cone angle.To overcome the drawback,a modified FDK algorithm is presented by convert the 1D ramp filtering direction from along the horizontal lines to along the nutating lines based on the result of Turbell.Unlike Turbell’s method,there is no need for our algorithm to rebin the cone-beam data into 3D parallel-beam data before reconstructing.Moreover pre-weighting of the projection data is corrected by compensating for the cone angle effect.In addition,another correction term derived from the result of Hu is also induced into our algorithm.The simulation experiments demonstrate that the final algorithm can suppress the intensity drop associated with the FDK algorithm. The FDK algorithm is the most popular cone beam algorithm in the medical and industrial imaging field. Data to data insufficiency acquired from a circular trajectory, the images reconstructed by the FDK algorithm suffer from the intensity droping with increasing cone angle. To overcome the drawback, a modified FDK algorithm is presented by convert the 1D ramp filtering direction from along the horizontal lines to along the nutating lines based on the result of Turbell. Uniform Turbell’s method, there is no need for our algorithm to rebin the cone-beam data into 3D parallel-beam data before reconstructing. More than pre-weighting of the projection data is corrected by compensating for the cone angle effect. In addition, another correction term derived from the result of Hu is also induced into our algorithm. The simulation experiments demonstrate that the final algorithm can suppress the intensity drop associated with the FDK algorithm.
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