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1. Automated Registration of 3D Neurovascular Territory Atlas to 2D DSA for Targeted Quantitative Angiography Analysis

2. Exploring Methods for Integrating and Augmenting Multimodal Data to Improve Prognostic Accuracy in Imbalanced Datasets for Intraoperative Aneurysm Occlusion

3. Injection Bias Reduction Techniques in Quantitative Angiography Using Patient-Specific Phantoms of Intracranial Aneurysm

4. Leveraging Convolutional Neural Networks for 3D Quantitative Angiography Reconstructions from Sparse Cone Beam CT Projections Utilizing CFD Data

5. Analysis of Quantitative Angiography using Projection Foreshortening Correction and Injection Bias Removal

6. In-Silico Analysis of Curve Fitting in Angiographic Parametric Imaging in Intracranial Aneurysms

7. Intra-operative Optimal Flow Diverter Selection for Intracranial aneurysm treatment

8. Effect of Singular Value Decomposition Algorithms on Removing Injection Variability in 2D Quantitative Angiography of Intracranial Aneurysms

9. Radiological Society of North America (RSNA) 3D Printing Special Interest Group (SIG) clinical situations for which 3D printing is considered an appropriate representation or extension of data contained in a medical imaging examination: breast conditions

12. Initial evaluation of three-dimensionally printed patient-specific coronary phantoms for CT-FFR software validation

13. Effect of singular value decomposition on removing injection variability in 2D quantitative angiography: An in silico and in vitro phantoms study.

14. Radiological Society of North America (RSNA) 3D printing Special Interest Group (SIG): guidelines for medical 3D printing and appropriateness for clinical scenarios

15. 3D printed cardiovascular patient specific phantoms used for clinical validation of a CT-derived FFR diagnostic software

22. Initial simulated FFR investigation using flow measurements in patient- specific 3D printed coronary phantoms

23. Three‐dimensional printing of MRI‐visible phantoms and MR image‐guided therapy simulation

25. Advanced 3D mesh manipulation in stereolithographic files and post-print processing for the manufacturing of patient-specific vascular flow phantoms

27. Enhancing cerebral vasculature analysis with pathlength‐corrected 2D angiographic parametric imaging: A feasibility study.

28. Enhancing cerebral vasculature analysis with pathlength‐corrected 2D angiographic parametric imaging: A feasibility study

43. Identification of infarct core and ischemic penumbra using computed tomography perfusion and deep learning

44. Additional file 1 of Radiological Society of North America (RSNA) 3D Printing Special Interest Group (SIG) clinical situations for which 3D printing is considered an appropriate representation or extension of data contained in a medical imaging examination: breast conditions

45. Radiological Society of North America (RSNA) 3D Printing Special Interest Group (SIG) clinical situations for which 3D printing is considered an appropriate representation or extension of data contained in a medical imaging examination: Breast Conditions

46. Semi-automatic co-registration of 3D CFD vascular geometry to 1000 fps high-speed angiographic (HSA) projection images for flow determination comparisons

47. Predicting hematoma expansion after spontaneous intracranial hemorrhage through a radiomics based model

48. Prognosis of ischemia recurrence in patients with moderate intracranial atherosclerotic disease using quantitative MRA measurements

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