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Diffusion Tensor Magnetic Resonance Imaging in the Analysis of Neurodegenerative Diseases
Published on: July 28, 2013
Wallerian Degeneration Beyond the Corticospinal Tracts: Conventional and Advanced MRI Findings
Yin Jie Chen1, Seyed Ali Nabavizadeh1, Arastoo Vossough2
1Division of Neuroradiology, Department of Radiology, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA.
Abstract:
Wallerian degeneration (WD) is defined as progressive anterograde disintegration of axons and accompanying demyelination after an injury to the proximal axon or cell body. Since the 1980s and 1990s, conventional magnetic resonance imaging (MRI) sequences have been shown to be sensitive to changes of WD in the subacute to chronic phases. More recently, advanced MRI techniques, such as diffusion-weighted imaging (DWI) and diffusion tensor imaging (DTI), have demonstrated some of earliest changes attributed to acute WD, typically on the order of days. In addition, there is increasing evidence on the value of advanced MRI techniques in providing important prognostic information related to WD. This article reviews the utility of conventional and advanced MRI techniques for assessing WD, by focusing not only on the corticospinal tract but also other neural tracts less commonly thought of, including corticopontocerebellar tract, dentate-rubro-olivary pathway, posterior column of the spinal cord, corpus callosum, limbic circuit, and optic pathway. The basic anatomy of these neural pathways will be discussed, followed by a comprehensive review of existing literature supported by instructive clinical examples. The goal of this review is for readers to become more familiar with both conventional and advanced MRI findings of WD involving important neural pathways, as well as to illustrate increasing utility of advanced MRI techniques in providing important prognostic information for various pathologies.
Insights
Wallerian degeneration (WD) is detectable with advanced MRI techniques like diffusion-weighted imaging (DWI) and diffusion tensor imaging (DTI) in acute phases. These methods also offer crucial prognostic information for various neural pathway injuries.
Area of Science:
- Neuroimaging
- Neuropathology
- Radiology
Background:
- Wallerian degeneration (WD) involves axonal and myelin disintegration following injury.
- Conventional MRI detects WD in subacute/chronic phases; advanced MRI shows earlier changes.
- Advanced MRI techniques (DWI, DTI) reveal acute WD changes within days.
Purpose of the Study:
- To review conventional and advanced MRI utility in assessing WD.
- To examine WD in various neural pathways beyond the corticospinal tract.
- To highlight the prognostic value of advanced MRI in WD.
Main Methods:
- Review of conventional MRI sequences (sensitivity in subacute/chronic WD).
- Analysis of advanced MRI techniques (DWI, DTI) for acute WD detection.
- Discussion of WD in corticospinal, corticopontocerebellar, and other neural tracts.
Main Results:
- Advanced MRI techniques detect early signs of acute Wallerian degeneration.
- MRI findings correlate with WD progression and offer prognostic insights.
- WD assessment extends to diverse neural pathways, including the optic pathway and corpus callosum.
Conclusions:
- Conventional and advanced MRI are valuable for diagnosing and monitoring WD.
- Advanced MRI techniques provide critical early detection and prognostic information for WD.
- Understanding MRI findings in various neural tracts aids in managing diverse pathologies.

