预防性头颅照射
传统PCI
部分各向异性
磁共振弥散成像
神经认知
白质
医学
海马结构
海马体
脑功能偏侧化
神经心理学
神经科学
神经保护
心脏病学
相关性
萎缩
核医学
认知
随机对照试验
颞叶
近颞叶癫痫
肺癌
多中心试验
病理
肿瘤科
内科学
纤维束成像
认知功能衰退
神经心理学测验
放射科
作者
Rob Colaes,Jeroen Blommaert,Maarten Lambrecht,Michiel B. de Ruiter,Pim Pullens,Dirk De Ruysscher,J. Belderbos,Stefan Sunaert,Sanne B. Schagen,Sabine Deprez
出处
期刊:Neuro-oncology
[Oxford University Press]
日期:2024-12-23
卷期号:27 (5): 1285-1296
被引量:1
标识
DOI:10.1093/neuonc/noae271
摘要
Abstract Background Hippocampal avoidance during prophylactic cranial irradiation (HA-PCI) is proposed to reduce neurocognitive decline, while preserving the benefits of PCI. We evaluated whether (HA-)PCI induces changes in white matter (WM) microstructure and whether sparing the hippocampus has an impact on preserving brain network topology. In addition, we evaluated associations between topological metrics with hippocampal volume and neuropsychological outcomes. Methods In this multicenter randomized phase 3 trial (NCT01780675), small-cell lung cancer (SCLC) patients underwent neuropsychological testing and diffusion tensor imaging (DTI) before, 4 months (33 PCI, 37 HA-PCI) and 1 year (19 PCI, 17 HA-PCI) after (HA-)PCI. Changes in WM microstructure were investigated using whole-brain voxel-based analysis of fractional anisotropy (FA) and mean diffusivity (MD). Both hippocampal and whole-brain graph measures were used to evaluate the topological organization of structural networks. Correlation analysis was performed to associate topological metrics with neuropsychological outcomes and hippocampal volume. Results Both HA-PCI and PCI were associated with decreased FA in major WM tracts, such as the corpus callosum, at 4 months and 1 year post-treatment. While these FA decreases did not differ significantly between treatment groups, only PCI demonstrated increased MD over time. In addition, PCI showed decreased global efficiency and increased characteristic path length over time when compared with HA-PCI. Significant correlations were found between whole-brain graph measures and neuropsychological outcomes. Conclusion While both techniques induce important changes in the WM microstructure, HA-PCI might better preserve the topological organization of brain networks than PCI. The neuroprotective role of hippocampal sparing still needs further investigation.
科研通智能强力驱动
Strongly Powered by AbleSci AI