首页> 外文会议>46th annual rocky mountain bioengineering symposium amp; 46th international ISA biomedical sciences instrumentation symposium 2009 >DIFFUSION HETEROGENEITY TENSOR MRI (α-DTI): MATHEMATICS AND INITIAL APPLICATIONS IN SPINAL CORD REGENERATION AFTER TRAUMA
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DIFFUSION HETEROGENEITY TENSOR MRI (α-DTI): MATHEMATICS AND INITIAL APPLICATIONS IN SPINAL CORD REGENERATION AFTER TRAUMA

机译:扩散异质性张量MRI(α-DTI):创伤后脊髓再生的数学和初步应用

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Diffusion weighted magnetic resonance imaging (DWI) is a powerful tool for evaluation of microstructural anomalies in numerous central nervous system pathologies. Diffusion tensor imaging (DTI) allows for the magnitude and direction of water self diffusion to be estimated by sampling the apparent diffusion coefficient (ADC) in various directions. Clinical DWI and DTI performed at a single level of diffusion weighting, however, does not allow for multiple diffusion compartments to be elicited. Furthermore, assumptions made regarding the precise number of diffusion compartments intrinsic to the tissue of interest have resulted in a lack of consensus between investigations. To overcome these challenges, a stretched-exponential model of diffusion was applied to examine the diffusion coefficient and "heterogeneity index" within highly compartmentalized brain tumors. The purpose of the current study is to expand on the stretched-exponential model of diffusion to include directionality of both diffusion heterogeneity and apparent diffusion coefficient. This study develops the mathematics of this new technique along with an initial application in quantifying spinal cord regeneration following acute injection of epidermal neural crest stem cell (EPI-NCSC) grafts.
机译:弥散加权磁共振成像(DWI)是评估众多中枢神经系统病理学中微结构异常的强大工具。扩散张量成像(DTI)允许通过在各个方向上采样视在扩散系数(ADC)来估计水自扩散的幅度和方向。然而,临床DWI和DTI在单个扩散权重级别上执行,但不允许引发多个扩散区室。此外,有关目标组织固有的扩散隔室精确数量的假设导致研究之间缺乏共识。为了克服这些挑战,应用了扩展的指数扩展模型来检查高度分隔的脑肿瘤中的扩散系数和“异质性指数”。当前研究的目的是扩展扩散的拉伸指数模型,以包括扩散异质性和表观扩散系数的方向性。这项研究开发了这项新技术的数学原理,并首次应用于量化急性注射表皮神经c干细胞(EPI-NCSC)移植后的脊髓再生。

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