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Your search keyword '"Newlin NR"' showing total 21 results

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21 results on '"Newlin NR"'

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1. MICCAI-CDMRI 2023 QuantConn Challenge Findings on Achieving Robust Quantitative Connectivity through Harmonized Preprocessing of Diffusion MRI.

2. Data-driven nucleus subclassification on colon hematoxylin and eosin using style-transferred digital pathology.

3. Characterizing patterns of diffusion tensor imaging variance in aging brains.

4. MidRISH: Unbiased harmonization of rotationally invariant harmonics of the diffusion signal.

5. Harmonized connectome resampling for variance in voxel sizes.

6. Field-of-view extension for brain diffusion MRI via deep generative models.

7. Characterizing patterns of diffusion tensor imaging variance in aging brains.

8. DeepN4: Learning N4ITK Bias Field Correction for T1-weighted Images.

9. Empirical assessment of the assumptions of ComBat with diffusion tensor imaging.

10. Predicting Age from White Matter Diffusivity with Residual Learning.

11. Evaluation of Mean Shift, ComBat, and CycleGAN for Harmonizing Brain Connectivity Matrices Across Sites.

12. Learning site-invariant features of connectomes to harmonize complex network measures.

13. Nonlinear Gradient Field Estimation in Diffusion MRI Tensor Simulation.

14. Evaluation of Mean Shift, ComBat, and CycleGAN for Harmonizing Brain Connectivity Matrices Across Sites.

15. Predicting Age from White Matter Diffusivity with Residual Learning.

16. DeepN4: Learning N4ITK Bias Field Correction for T1-weighted Images.

17. Characterizing Streamline Count Invariant Graph Measures of Structural Connectomes.

18. MidRISH: Unbiased harmonization of rotationally invariant harmonics of the diffusion signal.

19. Implementation considerations for deep learning with diffusion MRI streamline tractography.

20. Convolutional-recurrent neural networks approximate diffusion tractography from T1-weighted MRI and associated anatomical context.

21. Comparing voxel- and feature-wise harmonization of complex graph measures from multiple sites for structural brain network investigation of aging.

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