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A comparative study of MRI contrast enhancement techniques based on Traditional Gamma Correction and Adaptive Gamma Correction: Case of multiple sclerosis pathology.

, , , , , and . ATSIP, page 1-7. IEEE, (2018)

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An accurate spinal cord partition and quantification method to monitor atrophy in multiple sclerosis., , , , , and . Signal Image Video Process., 17 (3): 799-806 (April 2023)U-NET Architecture for automatic MS lesions segmentation using MR images., , , and . ATSIP, page 1-5. IEEE, (2022)Spinal cord MRI contrast enhancement using adaptive gamma correction for patient with multiple sclerosis., , , , , , and . Signal Image Video Process., 14 (2): 377-385 (2020)Contrast-Enhanced Image Analysis for MRI Based Multiple Sclerosis Lesion Segmentation., , , , , , and . ATSIP, page 1-6. IEEE, (2020)Effect of soil roughness on backscattered P-band radar signal over bare soil., , , and . IGARSS, page 1683-1686. IEEE, (2016)A comparative study of MRI contrast enhancement techniques based on Traditional Gamma Correction and Adaptive Gamma Correction: Case of multiple sclerosis pathology., , , , , and . ATSIP, page 1-7. IEEE, (2018)CT scan contrast enhancement using singular value decomposition and adaptive gamma correction., , , and . Signal Image Video Process., 12 (5): 905-913 (2018)Comparison Study for Spinal Cord Segmentation Methods aiming to detect SC Atrophy in MRI images: case of Multiple Sclerosis., , and . ATSIP, page 1-6. IEEE, (2020)Effect of soil roughness on backscattered P-band radar signals., , , , and . ATSIP, page 571-576. IEEE, (2016)Analysis of P band radar signal potential to retrieve soil moisture profile., , , , , and . ATSIP, page 591-595. IEEE, (2016)