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首页> 外文期刊>Magma: Magnetic resonance materials in physics, biology, and medicine >Absolute quantitation of brain metabolites with respect to heterogeneous tissue compositions in ~1H-MR spectroscopic volumes
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Absolute quantitation of brain metabolites with respect to heterogeneous tissue compositions in ~1H-MR spectroscopic volumes

机译:关于〜1H-MR光谱体积中异质组织组成的脑代谢物的绝对定量

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摘要

Object Referencing metabolite intensities to the tissue water intensity is commonly applied to determine metabolite concentrations from in vivo ~1H-MRS brain data. However, since the water concentration and relaxation properties differ between grey matter, white matter and cerebrospinal fluid (CSF), the volume fractions of these compartments have to be considered in MRS voxels. Materials and methods The impact of partial volume correction was validated by phantom measurements in voxels containing mixtures of solutions with different NAA and water concentrations as well as by analyzing in vivo ~1H-MRS brain data acquired with various voxel compositions. Results Phantom measurements indicated substantial underestimation of NAA concentrations when assuming homogeneously composed voxels, especially for voxels containing solution, which simulated CSF (error: B92%). This bias was substantially reduced by taking into account voxel composition (error: B10%). In the in vivo study, tissue correction reduced the overall variation of quantified metabolites by up to 35% and revealed the expected metabolic differences between various brain tissues. Conclusions Tissue composition affects extraction of metabolite concentrations and may cause misinterpretations when comparing measurements performed with different voxel sizes. This variation can be reduced by considering the different tissue types by means of combined analysis of spectroscopic and imaging data.
机译:对象将代谢物强度与组织水强度相关联通常用于从体内〜1H-MRS脑部数据确定代谢物浓度。但是,由于灰质,白质和脑脊液(CSF)之间的水浓度和松弛特性不同,因此在MRS体素中必须考虑这些隔室的体积分数。材料和方法通过对包含不同NAA和水浓度的溶液混合物的体素进行幻像测量,以及通过分析体内各种体素组成的〜1​​H-MRS脑数据,验证了部分体积校正的影响。结果幻影测量结果表明,当假设均匀组成的体素时,NAA浓度会大大低估,尤其是对于模拟CSF的含溶液体素(误差:B92%)。通过考虑体素成分(误差:B10%),可以大大降低这种偏差。在体内研究中,组织校正使定量代谢物的总体变化降低了35%,并揭示了各种脑组织之间预期的代谢差异。结论组织组成会影响代谢物浓度的提取,并且在比较使用不同体素大小进行的测量时可能会引起误解。通过对光谱数据和成像数据进行组合分析,可以考虑不同的组织类型,从而减少这种差异。

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