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首页> 外文期刊>European journal of paediatric neurology: EJPN : official journal of the European Paediatric Neurology Society >Diffusion MRI parameters of corpus callosum and corticospinal tract in neonates: Comparison between region-of-interest and whole tract averaged measurements
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Diffusion MRI parameters of corpus callosum and corticospinal tract in neonates: Comparison between region-of-interest and whole tract averaged measurements

机译:新生儿中胼callosum胼callosum和皮质螺栓的扩散MRI参数:对兴趣区域和整个道路平均测量的比较

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PurposeMeasures of white matter (WM) microstructure inferred from diffusion magnetic resonance imaging (dMRI) are useful for studying brain development. There is uncertainty about agreement between FA and MD values obtained from region-of-interest (ROI) versus whole tract approaches. We investigated agreement between dMRI measures using ROI and Probabilistic Neighbourhood Tractography (PNT) in genu of corpus callosum (gCC) and corticospinal tracts (CST). Materials and Methods81 neonates underwent 64 direction DTI at term equivalent age. FA and MD values were extracted from a 8?mm3ROI placed within the gCC, right and left posterior limbs of internal capsule. PNT was used to segment gCC and CSTs to calculate whole tract-averaged FA and MD. Agreement between values obtained by each method was compared using Bland–Altman statistics and Pearson's correlation. ResultsAcross the 3 tracts the mean difference in FA measured by PNT and ROI ranged between 0.13 and 0.17, and the 95% limits of agreement did not include the possibility of no difference. For MD, the mean difference in values obtained from PNT and ROI ranged between 0.101 and 0.184?mm2/s?×?10?3?mm2/s: the mean difference in gCC was 0.101?×?10?3?mm2/s with 95% limits of agreement that included the possibility of no difference, but there was significant disagreement in MD values measured in the CSTs. ConclusionAgreement between dMRI measures of neonatal WM microstructure calculated from ROI and whole tract averaged methods is weak. ROI approaches may not provide sufficient representation of tract microstructure at the level of neural systems in newborns.
机译:从扩散磁共振成像(DMRI)推断出白质(WM)微观结构的用途可用于研究脑发育。关于从利益区域(ROI)获得的FA和MD值之间的协议存在不确定性与整个道具方法。我们使用Roi和概率邻域牵引(PNT)在语料癌(GCC)和皮质脊髓瘤(CST)中的DMRI措施之间调查了达成协议。材料和方法81新生儿在术语等效年龄的64方向DTI。从内部胶囊的GCC,左右后肢置于GCC,左右肢体中的8μmm3roi中提取Fa和MD值。 PNT用于对GCC和CST进行分段,以计算整个截率平均的FA和MD。使用Bland-Altman统计和Pearson的相关性比较通过每种方法获得的值之间的协议。结果Aross 3龟头通过PNT和ROI测量的FA的平均差异在0.13和0.17之间,95%的协议限制不包括无差异的可能性。对于MD,从PNT和ROI获得的值的平均差异范围为0.101和0.184?mm2 / s?×10?3?mm2 / s:GCC的平均差异为0.101?×10?3?mm2 / s随着95%的协议限制,包括没有差异的可能性,但在CSTS中测量的MD值存在显着分歧。结论来自ROI和全部道平均方法计算的新生儿WM微观结构的DMRI措施弱化。 ROI方法可能无法在新生儿神经系统水平上提供足够的道微观结构。

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