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Full-Text Articles in Medical Specialties

Diffusion Weighted Mr Imaging Of Ring Enhancing Brain Lesions, Muhammad Shahbaz Alam, Zafar Sajjad, Muhammad Azeemuddin, Zahid Anwar Khan, Fatima Mubarak, Waseem Akhtar Jul 2012

Diffusion Weighted Mr Imaging Of Ring Enhancing Brain Lesions, Muhammad Shahbaz Alam, Zafar Sajjad, Muhammad Azeemuddin, Zahid Anwar Khan, Fatima Mubarak, Waseem Akhtar

Department of Radiology

Objective: To evaluate the role of diffusion weighted imaging in differentiating the cause of ring enhancing brain lesions.

Study Design: Analytical, descriptive study.

Place and Duration of Study: Department of Radiology, The Aga Khan University Hospital, Karachi, from March 2007 to July 2011. Methodology: Diffusion weighted imaging (DWI) was performed on 37 patients having ring enhancing lesions on their post-contrast brain MRI scans. These lesions were characterized into neoplastic and abscess cavity on the basis of diffusion restriction. Correlation of all these findings was done with histopathology obtained in all these patients. Sensitivity, specificity, positive and negative predictive values and …


Structural Changes In Glaucoma: A Volumetric Mri Study, John Lackey, Alice L. Williams, Srinivas Gatla, Sheryl S. Wizov, Thomas Chia, George Spaeth, Song Lai May 2012

Structural Changes In Glaucoma: A Volumetric Mri Study, John Lackey, Alice L. Williams, Srinivas Gatla, Sheryl S. Wizov, Thomas Chia, George Spaeth, Song Lai

Department of Radiology Faculty Papers

Purpose: To investigate brain structural changes in patients with glaucoma.

Methods: High resolution 3D T1-weighted MP-RAGE MRI images were collected in 11 glaucoma patients (5 female, 6 male, 65+/-11 yrs), and 11 age- and gender-matched controls (64+/-12 yrs). The images were first analyzed using an automatic voxel-based morphometry technique which combines a fully automated spatial normalization approach, dubbed HAMMER [1], in conjunction with a tissue mass preserving framework called RAVENS [2]. Four consecutive steps were carried out: removal of non-brain voxels, tissue segmentation, spatial normalization to a standardized template, and generation of a mass-preserving tissue density map (i.e. RAVENS map) …