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Early white matter injuries associated with dopamine transporter dysfunction in patients with acute CO intoxication: A diffusion kurtosis imaging and Tc-99m TRODAT-1 SPECT study

机译:与多巴胺转运蛋白功能障碍相关的早期白质损伤患者急性CO中毒:扩散峰度成像和TC-99M TRODAT-1 SPECT研究

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PurposePatients with CO intoxication were demonstrated to exhibit white matter (WM) injuries, changes in substantia nigra, dopamine transporter dysfunctions of striatum and Parkinsonism symptoms. We aimed to investigate the relationship between WM injuries of dopaminergic pathways and dopamine transporter dysfunctions of the striatum in patients with acute CO intoxication using both diffusion kurtosis imaging (DKI) and single photon-emission computed tomography (SPECT).Materials and methodsSeventeen patients with acute CO intoxication and 19 age- and gender-matched healthy subjects were enrolled. DKI data were acquired from all participants and Tc-99m-TRODAT-1 SPECT scan was performed on each patient. DKI datasets were fitted to obtain axial, radial and mean diffusivity, fractional anisotropy, axial, radial and mean kurtosis for voxel-based comparison. In addition, the TRODAT-1 binding ratio of the striatum was calculated using the occipital cortices as a reference. In significant regions, correlational analysis was performed to understand the relationship between DKI indices and TRODAT-1 binding ratio.ResultsThe results showed that DKI indices were significantly altered in multiple WM regions broadly involving the basal ganglia-thalamocortical circuit and nigrostriatal pathway. The correlation analysis further revealed significant correlations between DKI indices and the TRODAT-1 binding ratio in the nigrostriatal pathway (absolute correlation coefficients ranged from 0.5992 to 0.6950, p0.05), suggesting that CO-induced early WM injuries were associated with dopamine transporter dysfunctions of striatum.ConclusionWe concluded that DKI and Tc-99m-TRODAT-1 SPECT scans were helpful in early detection of global WM injuries associated with dysfunctions of dopamine transporter in patients with acute CO intoxication.Key Points center dot Voxel-based diffusion kurtosis imaging analysis was helpful in globally detecting early white matter injuries in patients with acute CO intoxication.center dot CO-induced early white matter injuries were broadly located in basal ganglia-thalamocortical circuit and nigrostriatal pathway.center dot Early white matter injuries in dopaminergic pathways were significantly correlated with dopamine transporter dysfunctions of the striatum.
机译:具有共同毒性的预防剂被证明表现出白质(WM)伤害,体积变化,体积的多巴胺转运蛋白功能障碍,纹状体和帕金森主义症状。我们的旨在探讨使用扩散峰成像(DKI)和单光子 - 发射计算断层扫描(SPECT)的急性Co中毒患者骨质脑卒中患者纹状体的多巴胺能途径和多巴胺转运蛋白的关系的关系共同举办了19名年龄和性别匹配的健康受试者。从所有参与者获取DKI数据,并在每位患者对TC-99M-Trodat-1 SPECT扫描进行。拟合DKI数据集以获得轴向,径向和平均扩散,分数各向异性,轴向,径向和平均峰值,用于基于体素的比较。另外,使用枕部皮质作为参考来计算纹状体的TRODAT-1结合比。在重要的地区中,进行相关分析以了解DKI指数和TRODAT-1结合比之间的关系。结果表明,在大众涉及基础神经节 - 脑电图和纽粒状途径的多个WM区中,DKI指数显着改变。相关性分析进一步揭示了DKI索引和纽格拉特途径中的TRODAT-1结合率之间的显着相关性(绝对相关系数范围为0.5992至0.6950,P <0.05),表明共同诱导的早期WM损伤与多巴胺转运蛋白功能障碍有关纹状体。结论我们得出结论,DKI和TC-99M-TODAT-1 SPECT扫描在早期发现与急性CO中的多巴胺转运蛋白功能障碍相关的全球WM损伤有助于急性CO中的患者.KEY点中心点体素的扩散峰影像成像分析有助于全球检测急性Co中毒患者的早期白质伤害。Center Dot共同诱导的早期白质损伤广泛地位于基底神经节 - ThalamoCortical电路和Nigrostriata途径中。多巴胺能途径的Center Dot早期白质损伤显着相关用多巴胺转运蛋白功能障碍肿瘤。

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