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Improved Turnaround Times | Median time to first decision: 12 days

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Susceptibility-Weighted MR Imaging: A Review of Clinical Applications in Children

K.A. Tong, S. Ashwal, A. Obenaus, J.P. Nickerson, D. Kido and E.M. Haacke
American Journal of Neuroradiology January 2008, 29 (1) 9-17; DOI: https://doi.org/10.3174/ajnr.A0786
K.A. Tong
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S. Ashwal
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A. Obenaus
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J.P. Nickerson
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D. Kido
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E.M. Haacke
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Abstract

SUMMARY: Susceptibility-weighted imaging (SWI) is a high-spatial-resolution 3D gradient-echo MR imaging technique with phase postprocessing that accentuates the paramagnetic properties of blood products such as deoxyhemoglobin, intracellular methemoglobin, and hemosiderin. It is particularly useful for detecting intravascular venous deoxygenated blood as well as extravascular blood products. It is also quite sensitive to the presence of other substances such as iron, some forms of calcification, and air. We have used this technique in the past several years to study a wide variety of pediatric neurologic disorders. We present a review with selected case histories to demonstrate its clinical usefulness in the improvement of the following: 1) detection of hemorrhagic lesions seen in various conditions, including traumatic brain injury and coagulopathic or other hemorrhagic disorders; 2) detection of vascular malformations such as cavernous angiomas, telangiectasias, or pial angiomas associated with Sturge-Weber syndrome; 3) demonstration of venous thrombosis and/or increased oxygen extraction in the setting of infarction, hypoxic/anoxic injury, or brain death; 4) delineation of neoplasms with hemorrhage, calcification, or increased vascularity; and 5) depiction of calcium or iron deposition in neurodegenerative disorders. SWI has provided new understanding of some of these disease processes. It is hoped that as SWI becomes more widely available, it will provide additional diagnostic and prognostic information that will improve the care and outcome of affected children.

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American Journal of Neuroradiology: 29 (1)
American Journal of Neuroradiology
Vol. 29, Issue 1
January 2008
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K.A. Tong, S. Ashwal, A. Obenaus, J.P. Nickerson, D. Kido, E.M. Haacke
Susceptibility-Weighted MR Imaging: A Review of Clinical Applications in Children
American Journal of Neuroradiology Jan 2008, 29 (1) 9-17; DOI: 10.3174/ajnr.A0786

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Susceptibility-Weighted MR Imaging: A Review of Clinical Applications in Children
K.A. Tong, S. Ashwal, A. Obenaus, J.P. Nickerson, D. Kido, E.M. Haacke
American Journal of Neuroradiology Jan 2008, 29 (1) 9-17; DOI: 10.3174/ajnr.A0786
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Cited By...

  • Frequency, Extent, and Correlates of Superficial Siderosis and Ependymal Siderosis in Premature Infants with Germinal Matrix Hemorrhage: An SWI Study
  • Endothelial depletion of murine SRF/MRTF provokes intracerebral hemorrhagic stroke
  • Improved T2* Imaging without Increase in Scan Time: SWI Processing of 2D Gradient Echo
  • Deep Medullary Vein Involvement in Neonates with Brain Damage: An MR Imaging Study
  • "Brush Sign" on Susceptibility-Weighted MR Imaging Indicates the Severity of Moyamoya Disease
  • Quantitative Diffusion-Weighted and Dynamic Susceptibility-Weighted Contrast-Enhanced Perfusion MR Imaging Analysis of T2 Hypointense Lesion Components in Pediatric Diffuse Intrinsic Pontine Glioma
  • Attenuation of Cerebral Venous Contrast in Susceptibility-Weighted Imaging of Spontaneously Breathing Pediatric Patients Sedated with Propofol
  • Demonstration of Cerebral Venous Variations in the Region of the Third Ventricle on Phase-Sensitive Imaging
  • Hypoperfusion and Ischemia in Cerebral Amyloid Angiopathy Documented by 99mTc-ECD Brain Perfusion SPECT
  • Acute Ischemic Infarction Defined by a Region of Multiple Hypointense Vessels on Gradient-Echo T2* MR Imaging at 3T
  • Imaging Cerebral Malaria with a Susceptibility-Weighted MR Sequence
  • Pneumocephalus Mimicking Cerebral Cavernous Malformations in MR Susceptibility-Weighted Imaging
  • Susceptibility-Weighted Imaging: Technical Aspects and Clinical Applications, Part 2
  • Susceptibility-Weighted Imaging: Technical Aspects and Clinical Applications, Part 1
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More in this TOC Section

  • An Atlas of Neonatal Neurovascular Imaging Anatomy as Depicted with Microvascular Imaging: The Intracranial Arteries
  • An Atlas of Neonatal Neurovascular Imaging Anatomy as Depicted with Microvascular Imaging: The Intracranial Veins
  • Clinical Translation of Hyperpolarized 13C Metabolic Probes for Glioma Imaging
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