KOR

e-Article

Modeling the Neuroanatomic Propagation of ALS in the Spinal Cord.
Document Type
Article
Source
AIP Conference Proceedings. 2017, Vol. 1863 Issue 1, p1-4. 4p. 1 Color Photograph, 1 Diagram.
Subject
*AMYOTROPHIC lateral sclerosis
*MOTOR neurons
*MATHEMATICAL models
*SPINAL cord
*NEUROANATOMY
*MAGNETIC resonance imaging
Language
ISSN
0094-243X
Abstract
Recent hypotheses of amyotrophic lateral sclerosis (ALS) progression have posited a point-source origin of motor neuron death with neuroanatomic propagation either contiguously to adjacent regions, or along networks via axonal and synaptic connections. Although the molecular mechanisms of propagation are unknown, one leading hypothesis is a "prion-like" spread of misfolded and aggregated proteins, including SOD1 and TDP-43. We have developed a mathematical model representing cellular and molecular spread of ALS in the human spinal cord. Our model is based on the stochastic reaction-diffusion master equation approach using a tetrahedral discretized space to capture the complex geometry of the spinal cord. Domain dimension and shape was obtained by reconstructing human spinal cord from high-resolution magnetic resonance (MR) images and known gross and histological neuroanatomy. Our preliminary results qualitatively recapitulate the clinically observed pattern of spread of ALS thorough the spinal cord. [ABSTRACT FROM AUTHOR]