Hu Yue, Xu Jianxun, Xiong Ji, Lv Kun, Geng Daoying
Department of Radiology, Huashan Hospital, Fudan University, 12 Wulumuqi Middle Road, Shanghai, 200040, P. R. China.
Nantong University, Jiangsu, China.
BMC Med Imaging. 2025 May 14;25(1):162. doi: 10.1186/s12880-025-01716-y.
To explore the alterations of gray matter volume (GMV) and structural covariant network (SCN) in unilateral frontal lobe low-grade gliomas (FLGGs).
The three dimensional (3D) T1 structural images of 117 patients with unilateral FLGGs and 68 age- and sex-matched healthy controls (HCs) were enrolled. The voxel-based morphometry (VBM) analysis and graph theoretical analysis of SCN were conducted to investigate the impact of unilateral FLGGs on the brain structure. This represents the first structural MRI study integrating both voxel-level morphometric changes and network-level reorganization patterns in unilateral FLGGs.
Through VBM analysis, we found that unilateral FLGGs can cause increased GMV in contralesional amygdala, calcarine, and angular gyrus, ipsilesional amygdala as well as vermis_6. The SCN of contralesional cerebrum, ipsilesional unaffected regions and cerebellum in both patients and HCs have typical small-world properties (Sigma > 1, Lambda ≈ 1 and Gamma > 1). Compared to HCs, global and nodal network metrics changed significantly in patients.
The combination of VBM and SCN analysis revealed both focal GMV enlargement and topological alterations in patients with unilateral FLGGs, and provide a novel perspective of cross regional morphological collaborative changes for understanding the glioma-related neuroadaptation. These findings may suggest potential neuroimaging correlates of adaptive changes, which could inform future investigations into personalized treatment approaches.
Not applicable.
探讨单侧额叶低级别胶质瘤(FLGG)患者的灰质体积(GMV)及结构协变网络(SCN)的改变。
纳入117例单侧FLGG患者及68例年龄、性别匹配的健康对照(HC)的三维(3D)T1结构图像。采用基于体素的形态学测量(VBM)分析及SCN的图论分析,以研究单侧FLGG对脑结构的影响。这是首个整合单侧FLGG体素水平形态学变化及网络水平重组模式的结构MRI研究。
通过VBM分析,我们发现单侧FLGG可导致对侧杏仁核、距状回和角回、同侧杏仁核以及小脑蚓部6的GMV增加。患者及HC的对侧大脑、同侧未受累区域及小脑的SCN均具有典型的小世界特性(西格玛>1,拉姆达≈1,伽马>1)。与HC相比,患者的全局和节点网络指标发生了显著变化。
VBM与SCN分析相结合揭示了单侧FLGG患者既有局灶性GMV增大又有拓扑结构改变,并为理解胶质瘤相关神经适应性提供了跨区域形态学协同变化的新视角。这些发现可能提示适应性变化的潜在神经影像学关联,可为未来个性化治疗方法的研究提供参考。
不适用。