2018
DOI: 10.1109/access.2018.2859786
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Automatic Coronary Centerline Extraction Using Gradient Vector Flow Field and Fast Marching Method From CT Images

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Cited by 9 publications
(9 citation statements)
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References 26 publications
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“…The MF filter can achieve relatively good results for both datasets. Oliveira's method Frangi [14] 0.8880 0.8980 GW [7] 0.9306 0.8117 MF [20] 0.9309 0.9422 Oliveira's [4] 0.9379 0.9392 mFrangi [17] 0.9381 0.9472 MFAT [2] 0.9400 0.9500 Proposed 0.9634 0.9657 is able to improve the AUC values up to 0.9379 and 0.9392, which is found to outperform each single filter. Unfortunately, it can be seen that the improvement in the segmentation accuracy is marginal.…”
Section: Retinal Imagesmentioning
confidence: 94%
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“…The MF filter can achieve relatively good results for both datasets. Oliveira's method Frangi [14] 0.8880 0.8980 GW [7] 0.9306 0.8117 MF [20] 0.9309 0.9422 Oliveira's [4] 0.9379 0.9392 mFrangi [17] 0.9381 0.9472 MFAT [2] 0.9400 0.9500 Proposed 0.9634 0.9657 is able to improve the AUC values up to 0.9379 and 0.9392, which is found to outperform each single filter. Unfortunately, it can be seen that the improvement in the segmentation accuracy is marginal.…”
Section: Retinal Imagesmentioning
confidence: 94%
“…On the other hand, unsupervised techniques [9,[11][12][13] are normally capable of revealing patterns, correlations and clusters, which can be performed without hand-labeled ground truth images. Many tubular structure enhancement techniques have been developed based on the Hessian matrix [14][15][16][17][18]. Frangi's filter [14] is the pioneer work to capture vessel structures by exploiting the eigensystem of the Hessian matrix, which calculates the second-order Gaussian derivatives for multiple values of standard deviation.…”
Section: Introductionmentioning
confidence: 99%
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“…Unfortunately, the V F defined in ( 9) cannot be used directly in (1) because of its non-smoothness at the origin. Therefore, an enhanced vesselness function V s is developed [26]:…”
Section: Methodologies a Vesselness Enhancement Diffusionmentioning
confidence: 99%
“…Another centerline extractor starting from segmented vessels was described in [15], in which the authors compute a 3D gradient vector flow field that is then used to compute a timetable of arrival times from one point to another. Combined with a branch tracing algorithm and a measure function for vesselness, the centerlines were extracted in about 16 min of processing time.…”
Section: Rule-based Centerline Extractionmentioning
confidence: 99%