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Saleem, S. N., "MR Imaging Diagnosis of Uterovaginal Anomalies: Current State of the Art1", Radiographics, vol. 23, no. 5: Radiological Society of North America, pp. e13–e13, 2003. Abstract
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Saleem, S. N., and Z. Hawass, "Ankylosing spondylitis or diffuse idiopathic skeletal hyperostosis (DISH) in Royal Egyptian mummies of 18th-20th Dynasties? CT and archaeology studies", Arthritis and Rheumatology , vol. 66, issue 12, pp. 3311-3316, 2014.
Saleem, S. N., "Fetal Magnetic Resonance Imaging (MRI): A Tool for a Better Understanding of Normal and Abnormal Brain Development.", Journal of Child Neurology , issue 13(7), pp. 889-907 , 2013. Abstractsaleem_journal_of_child_neurology_2013.pdf

Knowledge of the anatomy of the developing fetal brain is essential to detect abnormalities and understand their pathogenesis. Capability of magnetic resonance imaging (MRI) to visualize the brain in utero and to differentiate between its various tissues makes fetal MRI a potential diagnostic and research tool for the developing brain. This article provides an approach to understand the normal and abnormal brain development through schematic interpretation of fetal brain MR images. MRI is a potential screening tool in the second trimester of pregnancies in fetuses at risk for brain anomalies and helps in describing new brain syndromes with in utero presentation. Accurate interpretation of fetal MRI can provide valuable information that helps genetic counseling, facilitates management decisions, and guides therapy. Fetal MRI can help in better understanding the pathogenesis of fetal brain malformations and can support research that could lead to disease-specific interventions.

Saleem, S. N., and M. S. Zaki, "Role of MR imaging in prenatal diagnosis of pregnancies at risk for Joubert syndrome and related cerebellar disorders", American Journal of Neuroradiology, vol. 31, no. 3: Am Soc Neuroradiology, pp. 424–429, 2010. Abstract
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Saleem, S. N., Sabah Abdel Razek Sedik, and M. El-Halwagy, "A Child Mummy in a Pot: Computed Tomography Study and Insights on Child Burials in Ancient Egypt", Guardian Of Ancient Egypt: Studies in honor of Zahi Hawass. , Prague, Charles University , Faculty of Arts, 2020. child_in_a_pot_zahi_festshrift_2020.pdf
Saleem, S. N., A. H. M. Said, and D. H. Lee, "Lesions of the Hypothalamus: MR Imaging Diagnostic Features1", Radiographics, vol. 27, no. 4: Radiological Society of North America, pp. 1087–1108, 2007. Abstract
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Saleem, S. N., A. H. Said, M. Abdel-Raouf, E. A. El-Kattan, M. S. Zaki, N. Madkour, and M. Shokry, "Fetal MRI in the evaluation of fetuses referred for sonographically suspected neural tube defects (NTDs): impact on diagnosis and management decision", Neuroradiology, vol. 51, no. 11: Springer, pp. 761–772, 2009. Abstract
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Saleem, S. N., A. H. M. Said, and D. H. Lee, "Lesions of the Hypothalamus: MR Imaging Diagnostic Features1", Radiographics, vol. 27, no. 4: Radiological Society of North America, pp. 1087–1108, 2007. Abstract
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Saleem, S. N., and Z. Hawass, "Subcutaneous packing in Royal Egyptian mummies dated from 18th to 20th Dynasties", J Comput Assist Tomogr , vol. 39, issue 3, pp. 301-306, 2015.
Saleem, S. N., and Y. Y. Sabri, "Measuring Competence of Radiology Education Programs and Residents: The Egyptian Experience", Radiology Education: Springer Berlin Heidelberg, pp. 129–141, 2012. Abstract
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Saleem, S. N., "Fetal MRI: An approach to practice", Journal of Advanced Research, vol. 5, issue 5, pp. 507-523, 2014. Abstractjar_2013_article.pdf

MRI has been increasingly used for detailed visualization of the fetus in utero as well as pregnancy structures. Yet, the familiarity of radiologists and clinicians with fetal MRI is still limited. This article provides a practical approach to fetal MR imaging. Fetal MRI is an interactive scanning of the moving fetus owed to the use of fast sequences. Single-shot fast spin-echo (SSFSE) T2-weighted imaging is a standard sequence. T1-weighted sequences are primarily used to demonstrate fat, calcification and hemorrhage. Balanced steady-state freeprecession (SSFP), are beneficial in demonstrating fetal structures as the heart and vessels. Diffusion weighted imaging (DWI), MR spectroscopy (MRS), and diffusion tensor imaging (DTI) have potential applications in fetal imaging. Knowing the developing fetal MR anatomy is essential to detect abnormalities. MR evaluation of the developing fetal brain should include recognition of the multilayered-appearance of the cerebral parenchyma, knowledge of the timing of sulci appearance, myelination and changes in ventricular size. With advanced gestation, fetal organs as lungs and kidneys show significant changes in volume and T2-signal. Through a systematic approach, the normal anatomy of the developing fetus is shown to contrast with a wide spectrum of fetal disorders. The abnormalities displayed are graded in severity from simple common lesions to more complex rare cases. Complete fetal MRI is fulfilled by careful evaluation of the placenta, umbilical cord and amniotic cavity. Accurate interpretation of fetal MRI can provide valuable information that helps prenatal counseling, facilitate management decisions, guide therapy, and support research studies.

Said, A. H., E. El-Kattan, M. S. Abdel-Hakeem, and H. A. El-Khayat, "In utero MRI diagnosis of fetal malformations in oligohydramnios pregnancies", EJRNM, vol. 47, issue 4, pp. 1733-1742, 2016. oligo_ejrnm_2016.pdf
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