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Modeling the Neuroanatomic Propagation of ALS in the Spinal Cord

机译:模拟脊髓中ALS的神经杀菌繁殖

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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.
机译:肌萎缩侧索硬化症的最近假说(ALS)的进展已经假定运动神经元死亡的神经解剖学与传播一个点源原点任一连续到相邻的区域,或通过沿轴突和突触连接的网络。虽然繁殖的分子机制未知,但是一个领先的假设是“朊病毒”的衍射和聚集蛋白质的扩散,包括SOD1和TDP-43。我们开发了一种表示人体脊髓中Als细胞和分子扩散的数学模型。我们的模型基于随机反应 - 扩散母部方程方法使用四面体离散空间来捕获脊髓的复杂几何形状。通过从高分辨率磁共振(MR)图像和已知的粗糙和组织学神经膜重建人脊髓来获得结构域尺寸和形状。我们的初步结果定性地概括了临床观察到的脊髓彻底扩散模式。

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